Difference between revisions of "Team:BGIC China/Description"

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The plasmids formed a genetic circuit which contains an sensor unit (inducible promoters), a logical processing unit (genetic logic gates) and an output unit (reporter genes like genes coding for GFP, LacZ, Renilla luciferase, etc. Fig.5), which together act as a micro-computer.\u003c/p\u003e\u003cp\u003eWe then mixed these plamids with S30 Cell-Free expression system which can be bought from Promega, and immobilized the plasmids with cell-free system onto nuclease-free filter paper.\u003c/p\u003e\u003cp\u003eFreeze-drying technology is used to dry the filter paper[2] while keeping structures of polypeptides and polynucleotides intact.\u003c/p\u003e\u003cp\u003eFreeze-dried BioChip can be then be stored in dry condition for a long time.\u003c/p\u003e","backupValue":"简介你的项目或成员。夏天的飞鸟,飞到我的窗前唱歌,又飞去了。秋天的黄叶,它们没有什么可唱,只叹息一声,飞落在那里。","version":1}}},{"type":"RichText","id":"f_f34b7e21-0791-4f81-b874-8c0412980b0c","defaultValue":false,"value":"\u003cp style=\"font-size: 80%; text-align: right;\"\u003e\u003cem\u003e\u003cstrong\u003eFig.5 Genetic micro-computer\u003c/strong\u003e\u003c/em\u003e\u003c/p\u003e","backupValue":"在此处添加文本段落。","version":1},{"type":"RichText","id":"f_1fef63b5-b4bb-4132-94b2-56381207ae96","defaultValue":false,"value":"\u003cp style=\"font-size: 130%;\"\u003eThe use of the BioChip\u003c/p\u003e","backupValue":"在此处添加文本段落。","version":1},{"type":"BlockComponentItem","id":"f_f2a48f07-eca8-4cb8-a46a-7bd7893eea17","defaultValue":null,"name":"smallFeatureLeft","components":{"media1":{"type":"Media","id":"f_73156593-69f7-43c7-974d-41c1bfd80b70","defaultValue":true,"video":{"type":"Video","id":"f_7fa69204-9245-4699-8b73-e3c42da845df","defaultValue":null,"html":"","url":"","thumbnail_url":null,"maxwidth":700,"description":null},"image":{"type":"Image","id":"f_3bffcda9-c1d3-4b78-b47e-dd75daf4f275","defaultValue":false,"link_url":"","thumb_url":"!","url":"!","caption":"","description":"","storageKey":"791914/A_BioChip_reaction_unit_dfonnq","storage":"c","format":"png","h":661,"w":667,"s":7897,"new_target":true},"current":"image"},"text1":{"type":"RichText","id":"f_2aa7a9f0-66b3-47e2-b925-93843c7b6740","defaultValue":false,"value":"","backupValue":"标题文本","version":1},"text2":{"type":"RichText","id":"f_a10fb50c-acf5-4665-ac01-973aa470ed78","defaultValue":false,"value":"","backupValue":"小标语","version":1},"text3":{"type":"RichText","id":"f_51137506-575e-4b7c-9e38-3ea88dd4ff49","defaultValue":false,"value":"\u003cp\u003eIn order to make the BioChip more user-friendly, we design a three-component reaction unit (Fig.6) which contains a loading area for clinical and laboritory substances, a microfluidics conductor that controls the quantity of target molecules and filters unwanted substances that might influence the result, a reaction center which contains the freeze-dried immobilized genetic circuits and substances in S30 system.\u003c/p\u003e\u003cp\u003e \u003c/p\u003e\u003cp\u003eBlack area surrounds the reaction unit is composed of wax which restricts the flow of liquid.\u003c/p\u003e\u003cp\u003e \u003c/p\u003e\u003cp\u003eThe BioChip will be placed in vacuum box at low temperature for storage.\u003c/p\u003e","backupValue":"简介你的项目或成员。夏天的飞鸟,飞到我的窗前唱歌,又飞去了。秋天的黄叶,它们没有什么可唱,只叹息一声,飞落在那里。","version":1}}},{"type":"RichText","id":"f_f637960c-c4e7-4f01-998d-ecfe0ce9d540","defaultValue":false,"value":"\u003cp style=\"text-align: left; font-size: 80%;\"\u003e\u003cem\u003e\u003cstrong\u003eFig.6 Three-component reaction unit\u003c/strong\u003e\u003c/em\u003e\u003c/p\u003e","backupValue":"在此处添加文本段落。","version":1},{"type":"RichText","id":"f_5b34e86c-c707-48e9-94d3-53eabef2451e","defaultValue":false,"value":"\u003cp style=\"text-align: left;\"\u003eWhen you need to use the BioChip, you just need to take it out from the vacuum box and load the liquid substances onto the loading area. 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With the aids of inducible promoters such pCpxP and pFadR it is possible to express target genes by using boolean logic. 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The plasmids formed a genetic circuit which contains an sensor unit (inducible promoters), a logical processing unit (genetic logic gates) and an output unit (reporter genes like genes coding for GFP, LacZ, Renilla luciferase, etc. Fig.5), which together act as a micro-computer.\u003c/p\u003e\u003cp\u003eWe then mixed these plamids with S30 Cell-Free expression system which can be bought from Promega, and immobilized the plasmids with cell-free system onto nuclease-free filter paper.\u003c/p\u003e\u003cp\u003eFreeze-drying technology is used to dry the filter paper[2] while keeping structures of polypeptides and polynucleotides intact.\u003c/p\u003e\u003cp\u003eFreeze-dried BioChip can be then be stored in dry condition for a long time.\u003c/p\u003e","backupValue":"简介你的项目或成员。夏天的飞鸟,飞到我的窗前唱歌,又飞去了。秋天的黄叶,它们没有什么可唱,只叹息一声,飞落在那里。","version":1}}},{"type":"RichText","id":"f_f34b7e21-0791-4f81-b874-8c0412980b0c","defaultValue":false,"value":"\u003cp style=\"font-size: 80%; text-align: right;\"\u003e\u003cem\u003e\u003cstrong\u003eFig.5 Genetic micro-computer\u003c/strong\u003e\u003c/em\u003e\u003c/p\u003e","backupValue":"在此处添加文本段落。","version":1},{"type":"RichText","id":"f_1fef63b5-b4bb-4132-94b2-56381207ae96","defaultValue":false,"value":"\u003cp style=\"font-size: 130%;\"\u003eThe use of the BioChip\u003c/p\u003e","backupValue":"在此处添加文本段落。","version":1},{"type":"BlockComponentItem","id":"f_f2a48f07-eca8-4cb8-a46a-7bd7893eea17","defaultValue":null,"name":"smallFeatureLeft","components":{"media1":{"type":"Media","id":"f_73156593-69f7-43c7-974d-41c1bfd80b70","defaultValue":true,"video":{"type":"Video","id":"f_7fa69204-9245-4699-8b73-e3c42da845df","defaultValue":null,"html":"","url":"","thumbnail_url":null,"maxwidth":700,"description":null},"image":{"type":"Image","id":"f_3bffcda9-c1d3-4b78-b47e-dd75daf4f275","defaultValue":false,"link_url":"","thumb_url":"!","url":"!","caption":"","description":"","storageKey":"791914/A_BioChip_reaction_unit_dfonnq","storage":"c","format":"png","h":661,"w":667,"s":7897,"new_target":true},"current":"image"},"text1":{"type":"RichText","id":"f_2aa7a9f0-66b3-47e2-b925-93843c7b6740","defaultValue":false,"value":"","backupValue":"标题文本","version":1},"text2":{"type":"RichText","id":"f_a10fb50c-acf5-4665-ac01-973aa470ed78","defaultValue":false,"value":"","backupValue":"小标语","version":1},"text3":{"type":"RichText","id":"f_51137506-575e-4b7c-9e38-3ea88dd4ff49","defaultValue":false,"value":"\u003cp\u003eIn order to make the BioChip more user-friendly, we design a three-component reaction unit (Fig.6) which contains a loading area for clinical and laboritory substances, a microfluidics conductor that controls the quantity of target molecules and filters unwanted substances that might influence the result, a reaction center which contains the freeze-dried immobilized genetic circuits and substances in S30 system.\u003c/p\u003e\u003cp\u003e \u003c/p\u003e\u003cp\u003eBlack area surrounds the reaction unit is composed of wax which restricts the flow of liquid.\u003c/p\u003e\u003cp\u003e \u003c/p\u003e\u003cp\u003eThe BioChip will be placed in vacuum box at low temperature for storage.\u003c/p\u003e","backupValue":"简介你的项目或成员。夏天的飞鸟,飞到我的窗前唱歌,又飞去了。秋天的黄叶,它们没有什么可唱,只叹息一声,飞落在那里。","version":1}}},{"type":"RichText","id":"f_f637960c-c4e7-4f01-998d-ecfe0ce9d540","defaultValue":false,"value":"\u003cp style=\"text-align: left; font-size: 80%;\"\u003e\u003cem\u003e\u003cstrong\u003eFig.6 Three-component reaction unit\u003c/strong\u003e\u003c/em\u003e\u003c/p\u003e","backupValue":"在此处添加文本段落。","version":1},{"type":"RichText","id":"f_5b34e86c-c707-48e9-94d3-53eabef2451e","defaultValue":false,"value":"\u003cp style=\"text-align: left;\"\u003eWhen you need to use the BioChip, you just need to take it out from the vacuum box and load the liquid substances onto the loading area. 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</style><!-- react-empty: 12 --><!-- react-empty: 13 --><ul class="slides s-page-1" data-reactid="14"><li class="slide s-section-1" id="section-f_c5a8caab-4d5c-4f52-a22e-2b682329d76a" data-reactid="15"><div class="waypoint" data-reactid="16"></div><a class="section-anchor" data-reactid="17"></a><div class="s-bg-image s-bg-light-text s-section s-title-section" style="background-repeat:no-repeat;background-size:cover;background-color:transparent;background-position:50% 50%;background-image:url(//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_1500,w_2000,f_auto,q_90/v1/791914/204868339367206564_qsgkwh.jpg);" data-reactid="18"><div class="container" data-reactid="19"><div class="columns sixteen" data-reactid="20"><div class="s-title-group " data-reactid="21"><div class="s-title " data-reactid="22"><div class="s-component s-text" data-reactid="23"><h1 class="s-component-content s-font-title" data-reactid="24"><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"><strong>Project Description</strong></p></h1></div></div><div class="s-subtitle" data-reactid="25"><div class="s-component s-text" data-reactid="26"><h4 class="s-component-content s-font-heading" data-reactid="27"><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"><strong><a href="#2">⇩</a></strong></p></h4></div></div></div></div></div></div></li><li class="slide s-section-2" id="section-f_7bd02e7d-b47f-4b7d-bd7a-31b4cf39ca5e" data-reactid="28"><div class="waypoint" data-reactid="29"></div><a class="section-anchor" data-reactid="30"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="31"><div class="container" data-reactid="32"><div class="columns sixteen" data-reactid="33"><!-- react-empty: 34 --></div><div class="alignment-container " data-reactid="35"><div class="s-repeatable s-block s-component s-mh " data-reactid="36"><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="37"><span data-reactid="38"><div data-reactid="39"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="40"><div class=" columns sixteen" data-reactid="41"><div class="s-component s-text" data-reactid="42"><div class="s-component-content s-font-body" data-reactid="43"><p style="font-size: 160%;"><strong>Overturn the traditions</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="44"><span data-reactid="45"><div data-reactid="46"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="47"><div class=" columns sixteen" data-reactid="48"><div class="s-component s-text" data-reactid="49"><div class="s-component-content s-font-body" data-reactid="50"><p><strong>The first programmable BioChip ever</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="51"><span data-reactid="52"><div data-reactid="53"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="54"><div class=" columns sixteen" data-reactid="55"><div class="s-component s-text" data-reactid="56"><div class="s-component-content s-font-body" data-reactid="57"><p style="text-align:left">You might have experience of coding on a computer to make a new program, but have you ever thought about to accutually pragram a BioChip to let it fulfill any biochemical tasks you can imagined?</p><p style="text-align:left">Since the NGBC is completely constructed by genetic circuits, you can just use molecular cloning techniques to edit the genetic circuits and <a href="#3">genetic boolean logic gates</a> to construct logical networks and algorithms.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="58"><span data-reactid="59"><div data-reactid="60"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="61"><div class=" columns sixteen" data-reactid="62"><div class="s-component s-text" data-reactid="63"><div class="s-component-content s-font-body" data-reactid="64"><p> </p><p><strong>Cell Free</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="65"><span data-reactid="66"><div data-reactid="67"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="68"><div class=" columns sixteen" data-reactid="69"><div class="s-component s-text" data-reactid="70"><div class="s-component-content s-font-body" data-reactid="71"><p style="text-align:left">This is one of the most important feature of our BioChip. S30 Cell-free system eliminates biochemical reactions inside the cell that may influence the result and makes the expression of special proteins, which are toxic to the living-cells, becomes possible.</p><p style="text-align:left">More importantly, it tremendously increased the bio-safety of our BioChip since there is no worries about the mutations of living-cells and the escaping of harmful organisms.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="72"><span data-reactid="73"><div data-reactid="74"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="75"><div class=" columns sixteen" data-reactid="76"><div class="s-component s-text" data-reactid="77"><div class="s-component-content s-font-body" data-reactid="78"><p> </p><p><strong>Open-source</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="79"><span data-reactid="80"><div data-reactid="81"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="82"><div class=" columns sixteen" data-reactid="83"><div class="s-component s-text" data-reactid="84"><div class="s-component-content s-font-body" data-reactid="85"><p style="text-align: left;">We will develop an NGBC kit that could be distributed to the labs around the world, so everyone could re-program our biochips and produce their own one. By sending their genetic circuits to a special gene bank and uploading results onto NGBC database, thousands or even millions of biochips with different functionalities that resolve problems in different fields could be created and stored.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="86"><span data-reactid="87"><div data-reactid="88"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="89"><div class=" columns sixteen" data-reactid="90"><div class="s-component s-text" data-reactid="91"><div class="s-component-content s-font-body" data-reactid="92"><p> </p><p><strong>Short prototyping time</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="93"><span data-reactid="94"><div data-reactid="95"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="96"><div class=" columns sixteen" data-reactid="97"><div class="s-component s-text" data-reactid="98"><div class="s-component-content s-font-body" data-reactid="99"><p style="text-align: left;">By using our NGBC kit, it is possible to construct a new biochip just within a week!</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="100"><span data-reactid="101"><div data-reactid="102"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="103"><div class=" columns sixteen" data-reactid="104"><div class="s-component s-text" data-reactid="105"><div class="s-component-content s-font-body" data-reactid="106"><p> </p><p><strong>One-step and high-throughput</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="107"><span data-reactid="108"><div data-reactid="109"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="110"><div class=" columns sixteen" data-reactid="111"><div class="s-component s-text" data-reactid="112"><div class="s-component-content s-font-body" data-reactid="113"><p style="text-align:left">Multiple obstacles in clinical testing procedures could be resolved by using our biochips. Forget about complex and time-consuming sample testing experimental procedures, what you need to do is just adding samples onto a properly programmed NGBC and all the biochemical reactions could be done automatically. Densely packed reactions units on the biochip ensures that large amount of samples could be tested together.</p><p style="text-align:left"> </p><p style="text-align:left">The high-throughput of the bio-chip and the small duration of the testing process of clinical samples, should the bio-chip be successfully manufactured, shall relieve millions of patients of comprehensive time-consuming and perhaps agonising medical inspections—these could be carried out at home! The bio-chip system, presumably, transcends mainstream medical inspections of clinical samples in means of efficiency and convenience.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="114"><span data-reactid="115"><div data-reactid="116"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="117"><div class=" columns sixteen" data-reactid="118"><div class="s-component s-text" data-reactid="119"><div class="s-component-content s-font-body" data-reactid="120"><p> </p><p><strong>Ultra-high expression</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="121"><span data-reactid="122"><div data-reactid="123"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="124"><div class=" columns sixteen" data-reactid="125"><div class="s-component s-text" data-reactid="126"><div class="s-component-content s-font-body" data-reactid="127"><p style="text-align:left">We introduced an Utra-High Expression Cassette(U-HEC) into our standard NGBC kit which enables controllable high protein expressions.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="128"><span data-reactid="129"><div data-reactid="130"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="131"><div class=" columns sixteen" data-reactid="132"><div class="s-component s-text" data-reactid="133"><div class="s-component-content s-font-body" data-reactid="134"><p> </p><p><strong>Unlimited potentials</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="135"><span data-reactid="136"><div data-reactid="137"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="138"><div class=" columns sixteen" data-reactid="139"><div class="s-component s-text" data-reactid="140"><div class="s-component-content s-font-body" data-reactid="141"><p style="text-align: left;">Our BioChip enables users to fulfill any of their fantastic and creative idea by using standard molecular cloning techniques.</p><p> </p><p>Read more about our future projects with NGBC by clicking <u><strong>here</strong></u></p></div></div></div></div></div></span></div></div></div></div></div></li><li class="slide s-section-3" id="section-f_ad11b140-2d05-4221-803e-4698be2f3cff" data-reactid="142"><div class="waypoint" data-reactid="143"></div><a class="section-anchor" data-reactid="144"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="145"><div class="container" data-reactid="146"><div class="columns sixteen" data-reactid="147"><!-- react-empty: 148 --></div><div class="alignment-container " data-reactid="149"><div class="s-repeatable s-block s-component s-mh " data-reactid="150"><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-title " data-reactid="151"><span data-reactid="152"><div data-reactid="153"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="154"><div class=" columns sixteen" data-reactid="155"><div class="s-item-title" data-reactid="156"><div class="s-component s-text" data-reactid="157"><h3 class="s-component-content s-font-heading" data-reactid="158"><p>Genetic Boolean Logic Gates</p></h3></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="159"><span data-reactid="160"><div data-reactid="161"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="162"><div class=" columns sixteen" data-reactid="163"><div class="s-component s-text" data-reactid="164"><div class="s-component-content s-font-body" data-reactid="165"><p style="text-align: left;">Our BioChip involves the de novo application of DNA recombination which enables the genetic modules to mimic the functions of boolean logic gates in eletricity.</p><p style="text-align: left;"> </p><p style="text-align: left;">Recombinase like Bxb1 and PhiC31 are able to invert or excise DNA based on the orientation of recognition sites which flank the target gene [1]. With the aids of inducible promoters such pCpxP and pFadR it is possible to express target genes by using boolean logic. It is demonstrated by Piro's team that recombinase based genetic logic gates are capable to mimic all the 16 types of logic gates (Fig.1).</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="166"><span data-reactid="167"><div data-reactid="168"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="169"><div class=" columns sixteen" data-reactid="170"><div class="s-component s-image" data-reactid="171"><span data-reactid="172"><div class="s-component-content" data-reactid="173"><div data-reactid="174"><!-- react-text: 175 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:974px;max-height:1489px;" data-reactid="176"><div class="s-ratio-fill" style="padding-bottom:152.87%;" data-reactid="177"></div><div data-reactid="178"><img alt="" title="" data-description="" width="974" height="1489" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/Genetic_logic_gate_pxqvnx.png" data-sizes="auto" data-reactid="179"/><noscript data-reactid="180"><img alt="" title="" data-description="" width="974" height="1489" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/Genetic_logic_gate_pxqvnx.png" class="" data-reactid="181"/></noscript></div></div><!-- react-text: 182 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="183"><span data-reactid="184"><div data-reactid="185"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="186"><div class=" columns sixteen" data-reactid="187"><div class="s-component s-text" data-reactid="188"><div class="s-component-content s-font-body" data-reactid="189"><p style="text-align: left; font-size: 80%;"><strong><em>Fig.1 16 different types of synthetic genetic boolean logic gates</em></strong></p><p style="text-align: left; font-size: 80%;"><em>Picture from </em>Siuti, Piro, John Yazbek, and Timothy K. Lu. "Synthetic circuits integrating logic and memory in living cells." <em>Nature biotechnology</em> 31.5 (2013): 448-452.​</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="190"><span data-reactid="191"><div data-reactid="192"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="193"><div class=" columns sixteen" data-reactid="194"><div class="s-component s-text" data-reactid="195"><div class="s-component-content s-font-body" data-reactid="196"><p style="text-align: left;">In order to further explain and demonstrate the application of genetic logic gates, we design a simple genetic circuit involves three plasmids which can achieve following algorithm (Fig.2):</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="197"><span data-reactid="198"><div data-reactid="199"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="200"><div class=" columns sixteen" data-reactid="201"><div class="s-component s-image" data-reactid="202"><span data-reactid="203"><div class="s-component-content" data-reactid="204"><div data-reactid="205"><!-- react-text: 206 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:175px;max-height:166px;" data-reactid="207"><div class="s-ratio-fill" style="padding-bottom:94.86%;" data-reactid="208"></div><div data-reactid="209"><img alt="" title="" data-description="" width="175" height="166" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/%E6%9C%AA%E5%91%BD%E5%90%8D_%E5%89%AF%E6%9C%AC_f6qre7.png" data-sizes="auto" data-reactid="210"/><noscript data-reactid="211"><img alt="" title="" data-description="" width="175" height="166" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/%E6%9C%AA%E5%91%BD%E5%90%8D_%E5%89%AF%E6%9C%AC_f6qre7.png" class="" data-reactid="212"/></noscript></div></div><!-- react-text: 213 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="214"><span data-reactid="215"><div data-reactid="216"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="217"><div class=" columns sixteen" data-reactid="218"><div class="s-component s-text" data-reactid="219"><div class="s-component-content s-font-body" data-reactid="220"><p style="font-size: 80%;"><em><strong>Fig.2 A three states logic algorithm; </strong>3 different colored fluorescence proteins will be expressed based on 3 different situations</em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="221"><span data-reactid="222"><div data-reactid="223"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="224"><div class=" columns sixteen" data-reactid="225"><div class="s-component s-image" data-reactid="226"><span data-reactid="227"><div class="s-component-content" data-reactid="228"><div data-reactid="229"><!-- react-text: 230 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:790px;max-height:596px;" data-reactid="231"><div class="s-ratio-fill" style="padding-bottom:75.44%;" data-reactid="232"></div><div data-reactid="233"><img alt="" title="" data-description="" width="790" height="596" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/Genetic_logic_gate_fw4cqb.png" data-sizes="auto" data-reactid="234"/><noscript data-reactid="235"><img alt="" title="" data-description="" width="790" height="596" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/Genetic_logic_gate_fw4cqb.png" class="" data-reactid="236"/></noscript></div></div><!-- react-text: 237 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="238"><span data-reactid="239"><div data-reactid="240"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="241"><div class=" columns sixteen" data-reactid="242"><div class="s-component s-text" data-reactid="243"><div class="s-component-content s-font-body" data-reactid="244"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.3 Genetic circuit which achieve a three states algorithm</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="245"><span data-reactid="246"><div data-reactid="247"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="248"><div class=" columns sixteen" data-reactid="249"><div class="s-component s-text" data-reactid="250"><div class="s-component-content s-font-body" data-reactid="251"><p style="text-align: left;">When there is only molecule A present, Bxb1 recombinase will be expressed (Fig.3). Bxb1 attached to it's recognition sites and inverts the genes. RFP gene is flanked by two recognition sites of Bxb1 (Fig.3) so the gene will be inverted and be expressed.</p><p style="text-align: left;">When there is only molecule B present, phiC31 recombinase will be expressed (Fig.3) which resulting the expression of CFP.</p><p style="text-align: left;">When molecules A and B are both present, phiC31 and Bxb1 will be expressed. Promoter and CFP gene on Plasmid 1 (Fig.3) will both be inverted so there will be no expression of CFP. Same situation happened with promoter and RFP on Plasmid 2 (Fig.3) so RFP will not be expressed as well.</p><p style="text-align: left;">However, when both promoter and GFP on Plasmid 3 (Fig.3) are inverted, the expression of GFP will start.</p></div></div></div></div></div></span></div></div></div></div></div></li><li class="slide s-section-4" id="section-f_13eedbee-62c8-4e66-9dd9-174df870a2dc" data-reactid="252"><div class="waypoint" data-reactid="253"></div><a class="section-anchor" data-reactid="254"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="255"><div class="container" data-reactid="256"><div class="columns sixteen" data-reactid="257"><!-- react-empty: 258 --></div><div class="alignment-container " data-reactid="259"><div class="s-repeatable s-block s-component s-mh " data-reactid="260"><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-title " data-reactid="261"><span data-reactid="262"><div data-reactid="263"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="264"><div class=" columns sixteen" data-reactid="265"><div class="s-item-title" data-reactid="266"><div class="s-component s-text" data-reactid="267"><h3 class="s-component-content s-font-heading" data-reactid="268"><p><strong>Paper based cell-free BioChip</strong></p></h3></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="269"><span data-reactid="270"><div data-reactid="271"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="272"><div class=" columns sixteen" data-reactid="273"><div class="s-component s-image" data-reactid="274"><span data-reactid="275"><div class="s-component-content" data-reactid="276"><div data-reactid="277"><!-- react-text: 278 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:1000px;max-height:448px;" data-reactid="279"><div class="s-ratio-fill" style="padding-bottom:44.80%;" data-reactid="280"></div><div data-reactid="281"><img alt="" title="" data-description="" width="1000" height="448" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/Paper_based_cell-free_aabjzr.png" data-sizes="auto" data-reactid="282"/><noscript data-reactid="283"><img alt="" title="" data-description="" width="1000" height="448" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/Paper_based_cell-free_aabjzr.png" class="" data-reactid="284"/></noscript></div></div><!-- react-text: 285 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="286"><span data-reactid="287"><div data-reactid="288"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="289"><div class=" columns sixteen" data-reactid="290"><div class="s-component s-text" data-reactid="291"><div class="s-component-content s-font-body" data-reactid="292"><p style="font-size: 80%; text-align: left;"><em><strong>Fig.4 Schematic procedure to make paper based cell-free BioChip </strong></em></p><p style="font-size: 80%; text-align: left;"><em>Picture modified from internet</em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-smallFeatureRight " data-reactid="293"><span data-reactid="294"><div data-reactid="295"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="296"><div class="" data-reactid="297"><div class="s-block-feature " data-reactid="298"><div class="six columns right" data-reactid="299"><div class="s-item-media-group" data-reactid="300"><div class="s-component s-media " data-reactid="301"><span data-reactid="302"><div class="s-component-content" data-reactid="303"><div data-reactid="304"><!-- react-text: 305 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:556px;max-height:616px;" data-reactid="306"><div class="s-ratio-fill" style="padding-bottom:110.79%;" data-reactid="307"></div><div data-reactid="308"><img alt="" title="" data-description="" width="556" height="616" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/Sensor-processing-output_iawoho.png" data-sizes="auto" data-reactid="309"/><noscript data-reactid="310"><img alt="" title="" data-description="" width="556" height="616" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/Sensor-processing-output_iawoho.png" class="" data-reactid="311"/></noscript></div></div><!-- react-text: 312 --> <!-- /react-text --></div></div></span></div></div></div><div class="ten columns right" data-reactid="313"><div class="s-item-text-group half-offset-right" data-reactid="314"><div class="s-item-title" data-reactid="315"><div class="s-component s-text" data-reactid="316"></div></div><div class="s-item-subtitle" data-reactid="317"><div class="s-component s-text" data-reactid="318"></div></div><div class="s-item-text" data-reactid="319"><div class="s-component s-text" data-reactid="320"><div class="s-component-content s-font-body" data-reactid="321"><p>Fig.4 demonstrated a schematic procedure of how the paper based cell-free BioChip is made. We genetically engineered the plasmids by using standard cloning methods (MCS, MoClo, Gibson, Golden Gate, etc.). The plasmids formed a genetic circuit which contains an sensor unit (inducible promoters), a logical processing unit (genetic logic gates) and an output unit (reporter genes like genes coding for GFP, LacZ, Renilla luciferase, etc. Fig.5), which together act as a micro-computer.</p><p>We then mixed these plamids with S30 Cell-Free expression system which can be bought from Promega, and immobilized the plasmids with cell-free system onto nuclease-free filter paper.</p><p>Freeze-drying technology is used to dry the filter paper[2] while keeping structures of polypeptides and polynucleotides intact.</p><p>Freeze-dried BioChip can be then be stored in dry condition for a long time.</p></div></div></div></div></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="322"><span data-reactid="323"><div data-reactid="324"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="325"><div class=" columns sixteen" data-reactid="326"><div class="s-component s-text" data-reactid="327"><div class="s-component-content s-font-body" data-reactid="328"><p style="font-size: 80%; text-align: right;"><em><strong>Fig.5 Genetic micro-computer</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="329"><span data-reactid="330"><div data-reactid="331"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="332"><div class=" columns sixteen" data-reactid="333"><div class="s-component s-text" data-reactid="334"><div class="s-component-content s-font-body" data-reactid="335"><p style="font-size: 130%;">The use of the BioChip</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-smallFeatureLeft " data-reactid="336"><span data-reactid="337"><div data-reactid="338"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="339"><div class="" data-reactid="340"><div class="s-block-feature " data-reactid="341"><div class="six columns" data-reactid="342"><div class="s-item-media-group" data-reactid="343"><div class="s-component s-media " data-reactid="344"><span data-reactid="345"><div class="s-component-content" data-reactid="346"><div data-reactid="347"><!-- react-text: 348 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:667px;max-height:661px;" data-reactid="349"><div class="s-ratio-fill" style="padding-bottom:99.10%;" data-reactid="350"></div><div data-reactid="351"><img alt="" title="" data-description="" width="667" height="661" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/A_BioChip_reaction_unit_dfonnq.png" data-sizes="auto" data-reactid="352"/><noscript data-reactid="353"><img alt="" title="" data-description="" width="667" height="661" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/A_BioChip_reaction_unit_dfonnq.png" class="" data-reactid="354"/></noscript></div></div><!-- react-text: 355 --> <!-- /react-text --></div></div></span></div></div></div><div class="ten columns" data-reactid="356"><div class="s-item-text-group half-offset-left" data-reactid="357"><div class="s-item-title" data-reactid="358"><div class="s-component s-text" data-reactid="359"></div></div><div class="s-item-subtitle" data-reactid="360"><div class="s-component s-text" data-reactid="361"></div></div><div class="s-item-text" data-reactid="362"><div class="s-component s-text" data-reactid="363"><div class="s-component-content s-font-body" data-reactid="364"><p>In order to make the BioChip more user-friendly, we design a three-component reaction unit (Fig.6) which contains a loading area for clinical and laboritory substances, a microfluidics conductor that controls the quantity of target molecules and filters unwanted substances that might influence the result, a reaction center which contains the freeze-dried immobilized genetic circuits and substances in S30 system.</p><p> </p><p>Black area surrounds the reaction unit is composed of wax which restricts the flow of liquid.</p><p> </p><p>The BioChip will be placed in vacuum box at low temperature for storage.</p></div></div></div></div></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="365"><span data-reactid="366"><div data-reactid="367"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="368"><div class=" columns sixteen" data-reactid="369"><div class="s-component s-text" data-reactid="370"><div class="s-component-content s-font-body" data-reactid="371"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.6 Three-component reaction unit</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="372"><span data-reactid="373"><div data-reactid="374"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="375"><div class=" columns sixteen" data-reactid="376"><div class="s-component s-text" data-reactid="377"><div class="s-component-content s-font-body" data-reactid="378"><p style="text-align: left;">When you need to use the BioChip, you just need to take it out from the vacuum box and load the liquid substances onto the loading area. The liquid will flow through the microfluidics conductor and finally get to the reaction center where all the genetic and logical processing reactions take place.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="379"><span data-reactid="380"><div data-reactid="381"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="382"><div class=" columns sixteen" data-reactid="383"><div class="s-component s-image" data-reactid="384"><span data-reactid="385"><div class="s-component-content" data-reactid="386"><div data-reactid="387"><!-- react-text: 388 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:712px;max-height:470px;" data-reactid="389"><div class="s-ratio-fill" style="padding-bottom:66.01%;" data-reactid="390"></div><div data-reactid="391"><img alt="" title="" data-description="" width="712" height="470" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/BioChip_demonstration_xzmrn9.png" data-sizes="auto" data-reactid="392"/><noscript data-reactid="393"><img alt="" title="" data-description="" width="712" height="470" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/BioChip_demonstration_xzmrn9.png" class="" data-reactid="394"/></noscript></div></div><!-- react-text: 395 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="396"><span data-reactid="397"><div data-reactid="398"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="399"><div class=" columns sixteen" data-reactid="400"><div class="s-component s-text" data-reactid="401"><div class="s-component-content s-font-body" data-reactid="402"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.7 Signal output for detection of different molecules</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="403"><span data-reactid="404"><div data-reactid="405"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="406"><div class=" columns sixteen" data-reactid="407"><div class="s-component s-text" data-reactid="408"><div class="s-component-content s-font-body" data-reactid="409"><p style="text-align: left;">Fig.7 is a demonstration of the use of the BioChip with specifically design genetic circuit in the reaction center. When clinical substances contains only glucose is loaded, CFP protein will be expressed. When only fatty acids present, GFP protein will be produced. When glucose and fatty acids are both present in the clinical substances, neither CFP nor GFP protein will be expressed but there will be RFP protein produced.</p><p style="text-align: left;">Therefore, by looking at the color of the fluorescence protein produced in the reaction center, we can easily deduced the biological molecules present in the clinical substances.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="410"><span data-reactid="411"><div data-reactid="412"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="413"><div class=" columns sixteen" data-reactid="414"><div class="s-component s-text" data-reactid="415"><div class="s-component-content s-font-body" data-reactid="416"><p style="text-align: left;">In order to increase the throughput of reaction, the BioChips are made into assays which contain serials of reaction units (Fig.8).</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="417"><span data-reactid="418"><div data-reactid="419"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="420"><div class=" columns sixteen" data-reactid="421"><div class="s-component s-image" data-reactid="422"><span data-reactid="423"><div class="s-component-content" data-reactid="424"><div data-reactid="425"><!-- react-text: 426 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:1266px;max-height:930px;" data-reactid="427"><div class="s-ratio-fill" style="padding-bottom:73.46%;" data-reactid="428"></div><div data-reactid="429"><img alt="" title="" data-description="" width="1266" height="930" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/227175720606342730_s2th9r.png" data-sizes="auto" data-reactid="430"/><noscript data-reactid="431"><img alt="" title="" data-description="" width="1266" height="930" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/227175720606342730_s2th9r.png" class="" data-reactid="432"/></noscript></div></div><!-- react-text: 433 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="434"><span data-reactid="435"><div data-reactid="436"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="437"><div class=" columns sixteen" data-reactid="438"><div class="s-component s-text" data-reactid="439"><div class="s-component-content s-font-body" data-reactid="440"><p style="font-size: 80%; text-align: left;"><em><strong>Fig.8 Synthetic picture of BioChip assays</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="441"><span data-reactid="442"><div data-reactid="443"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="444"><div class=" columns sixteen" data-reactid="445"><div class="s-component s-image" data-reactid="446"><span data-reactid="447"><div class="s-component-content" data-reactid="448"><div data-reactid="449"><!-- react-text: 450 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:800px;max-height:594px;" data-reactid="451"><div class="s-ratio-fill" style="padding-bottom:74.25%;" data-reactid="452"></div><div data-reactid="453"><img alt="" title="" data-description="" width="800" height="594" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/19674369596626584_bhuzrk.jpg" data-sizes="auto" data-reactid="454"/><noscript data-reactid="455"><img alt="" title="" data-description="" width="800" height="594" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/19674369596626584_bhuzrk.jpg" class="" data-reactid="456"/></noscript></div></div><!-- react-text: 457 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="458"><span data-reactid="459"><div data-reactid="460"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="461"><div class=" columns sixteen" data-reactid="462"><div class="s-component s-text" data-reactid="463"><div class="s-component-content s-font-body" data-reactid="464"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.10 3D model of new design of the BioChip</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="465"><span data-reactid="466"><div data-reactid="467"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="468"><div class=" columns sixteen" data-reactid="469"><div class="s-component s-image" data-reactid="470"><span data-reactid="471"><div class="s-component-content" data-reactid="472"><div data-reactid="473"><!-- react-text: 474 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:1623px;max-height:1201px;" data-reactid="475"><div class="s-ratio-fill" style="padding-bottom:74.00%;" data-reactid="476"></div><div data-reactid="477"><img alt="" title="" data-description="" width="1623" height="1201" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/648950326505340116_tillna.png" data-sizes="auto" data-reactid="478"/><noscript data-reactid="479"><img alt="" title="" data-description="" width="1623" height="1201" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/648950326505340116_tillna.png" class="" data-reactid="480"/></noscript></div></div><!-- react-text: 481 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="482"><span data-reactid="483"><div data-reactid="484"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="485"><div class=" columns sixteen" data-reactid="486"><div class="s-component s-text" data-reactid="487"><div class="s-component-content s-font-body" data-reactid="488"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.11 3D model of new design of the BioChip</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="489"><span data-reactid="490"><div data-reactid="491"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="492"><div class=" columns sixteen" data-reactid="493"><div class="s-component s-text" data-reactid="494"><div class="s-component-content s-font-body" data-reactid="495"><p style="text-align: left;">In the future, we will made our BioChip thicker to contain higher volume of liquid for persistent reactions. Glass cover will be included to lower the evaporation of liquid and contamination of nuclease in the atmosphere (Fig.10 &amp; Fig.11).</p></div></div></div></div></div></span></div></div></div></div></div></li><li class="slide s-section-5" id="section-f_6c0c670b-1083-4c67-ac87-cb5936a71ccd" data-reactid="496"><div class="waypoint" data-reactid="497"></div><a class="section-anchor" data-reactid="498"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="499"><div class="container" data-reactid="500"><div class="columns sixteen" data-reactid="501"><!-- react-empty: 502 --></div><div class="alignment-container " data-reactid="503"><div class="s-repeatable s-block s-component s-mh " data-reactid="504"><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-title " data-reactid="505"><span data-reactid="506"><div data-reactid="507"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="508"><div class=" columns sixteen" data-reactid="509"><div class="s-item-title" data-reactid="510"><div class="s-component s-text" data-reactid="511"><h3 class="s-component-content s-font-heading" data-reactid="512"><p>Open sourced NGBC kit</p></h3></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="513"><span data-reactid="514"><div data-reactid="515"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="516"><div class=" columns sixteen" data-reactid="517"><div class="s-component s-text" data-reactid="518"><div class="s-component-content s-font-body" data-reactid="519"><p style="text-align:left">We are going make a kit called NGBC kit which contains all the things for you to make a new NGBC. The kit is completely open sourced, you can know the design and the nucleotide sequences of all the plamids and genetic circuits inside it.</p><p style="text-align:left">We will distribute our NGBC kit to the laboritories all around the world. NGBC database will be made to record all the new genetic logic processing units, genetic sequences and the design of all the new units. We also strongly suggest the iGEM committe to take this as a new trial in iGEM.</p><p style="text-align:left"> </p><p style="text-align:left">Here we made a list of things in our beta version of NGBC kit:</p><ol><li style="text-align: left;">AHL</li><li style="text-align: left;">aTc</li><li style="text-align: left;">AHL inducible promoter flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">aTc inducible promoter flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">Bxb1 recombinase coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">phiC31 recombinase coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">Cre recombinase coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">Bxb1 recombinase recognition sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">phiC31 recombinase recognition sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">LoxP sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">16 different types of genetic logic gates with EGFP as output in pSB1C3 backbone</li><li style="text-align: left;">pCpxP promoter flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">EGFP coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">RFP coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">CFP coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">Renilla luciferase coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">LacZ coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">X-gal in powder form</li><li style="text-align: left;">DMSO</li><li style="text-align: left;">J23119 promoter flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">B0015 terminator flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">pSB1C3 linear plasmid backbone</li></ol></div></div></div></div></div></span></div></div></div></div></div></li><li class="slide s-section-6 s-last-section-no-footer" id="section-f_6b98eb80-2935-4578-b06e-c5ffc30d10bd" data-reactid="520"><div class="waypoint" data-reactid="521"></div><a class="section-anchor" data-reactid="522"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="523"><div class="container" data-reactid="524"><div class="columns sixteen" data-reactid="525"><!-- react-empty: 526 --></div><div class="alignment-container " data-reactid="527"><div class="s-repeatable s-block s-component s-mh " data-reactid="528"><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="529"><span data-reactid="530"><div data-reactid="531"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="532"><div class=" columns sixteen" data-reactid="533"><div class="s-component s-text" data-reactid="534"><div class="s-component-content s-font-body" data-reactid="535"><p style="text-align: left;"><strong>References</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="536"><span data-reactid="537"><div data-reactid="538"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="539"><div class=" columns sixteen" data-reactid="540"><div class="s-component s-text" data-reactid="541"><div class="s-component-content s-font-body" data-reactid="542"><p style="font-size:80%; text-align:left"><em>1. Siuti, Piro, John Yazbek, and Timothy K. Lu. "Synthetic circuits integrating logic and memory in living cells." Nature biotechnology 31.5 (2013): 448-452.</em></p><p style="font-size:80%; text-align:left"><em>2. </em>Pardee, Keith, et al. "Paper-based synthetic gene networks." <em>Cell</em> 159.4 (2014): 940-954.​</p></div></div></div></div></div></span></div></div></div></div></div><div class="waypoint" data-reactid="543"></div></li></ul><!-- react-empty: 544 --><div id="strikingly-tooltip-container" data-reactid="545"> </div><!-- react-empty: 546 --><!-- react-empty: 547 --><div class="s-floated-components" data-reactid="548"><div class="ecommerce-buy-dialog s-edit-modal extend" id="ecommerce-buy-dialog" data-reactid="549"><div class="s-async-wrapper s-component" data-reactid="550"><div class="s-loading" data-reactid="551"></div></div></div><div id="s-ecommerce-shopping-cart-wrapper" class="s-ecommerce-shopping-cart-wrapper" data-reactid="552"></div></div></div></div></div> <div id='fb-root'></div> <div id='app-script-root'></div> <div id='app-view-root'></div> <script id='blog-collection-tmpl' type='text/html'> <div class='s-blog-col-head'></div> <div class='s-blog-col-body'> {{ _.each(blogPosts, function(blog) { }} <div class='s-blog-entry'> <div class='s-blog-entry-inner'> {{ if ($S && $S.conf && $S.conf.preview_mode) { }} <a class='s-blog-overlay-link' href='{{=blog.publicUrl}}'>&nbsp;</a> {{ } else { }} <a class='s-blog-overlay-link' href='{{=blog.relativeUrl}}'>&nbsp;</a> {{ } }} {{ if (blog.iconUrl) { }} <div class='s-blog-entry-left'> {{ if (UrlHelper.imageHasContent(blog.iconUrl)) { }} <div class='s-blog-avatar' style='background-image:url({{=blog.iconUrl}});'></div> {{ } else { }} <div class='s-blog-default-avatar'> <div class='entypo-bookmark'></div> </div> {{ } }} </div> {{ } }} <div class='s-blog-entry-right'> <div class='s-blog-details'> <div class='s-blog-details-head s-blog-row'> <div class='s-blog-title s-font-heading'> {{=blog.title}} </div> <div class='s-blog-date'> {{=blog.publishedAt}} </div> </div> {{ if (blogSettings.previewLayout == 1) { }} <div class='s-blog-details-blurb s-blog-row'> {{=blog.blurb}} </div> {{ } }} </div> </div> </div> </div> {{ }) }} {{ if (blogPosts.length == 0) { }} <div class='s-blog-entry'> <div class='s-common-status no-posts-error'> 没有博文。 </div> </div> {{ } }} </div> {{ if (blogPosts.length > 0) { }} <div class='s-blog-col-foot'> <a class='s-blog-link s-blog-next-link' href='javascript:void(0);'> &laquo; 更新 </a> &nbsp; <ul class='s-blog-pagination' style='display:none;'> <li> <a class='s-blog-link s-blog-pagination-page' href='javascript:void(0);'></a> </li> </ul> &nbsp; <a class='s-blog-link s-blog-prev-link' href='javascript:void(0);'> 其它 &raquo; </a> </div> {{ } }} </script> <script src="//cdn.bootcss.com/jquery/1.10.0/jquery.min.js"></script> <script>
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</style><!-- react-empty: 12 --><!-- react-empty: 13 --><ul class="slides s-page-1" data-reactid="14"><li class="slide s-section-1" id="section-f_c5a8caab-4d5c-4f52-a22e-2b682329d76a" data-reactid="15"><div class="waypoint" data-reactid="16"></div><a class="section-anchor" data-reactid="17"></a><div class="s-bg-image s-bg-light-text s-section s-title-section" style="background-repeat:no-repeat;background-size:cover;background-color:transparent;background-position:50% 50%;background-image:url(//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_1500,w_2000,f_auto,q_90/v1/791914/204868339367206564_qsgkwh.jpg);" data-reactid="18"><div class="container" data-reactid="19"><div class="columns sixteen" data-reactid="20"><div class="s-title-group " data-reactid="21"><div class="s-title " data-reactid="22"><div class="s-component s-text" data-reactid="23"><h1 class="s-component-content s-font-title" data-reactid="24"><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"><strong>Project Description</strong></p></h1></div></div><div class="s-subtitle" data-reactid="25"><div class="s-component s-text" data-reactid="26"><h4 class="s-component-content s-font-heading" data-reactid="27"><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"> </p><p style="font-size:160%" class="s-text-color-custom2"><strong><a href="#2">⇩</a></strong></p></h4></div></div></div></div></div></div></li><li class="slide s-section-2" id="section-f_7bd02e7d-b47f-4b7d-bd7a-31b4cf39ca5e" data-reactid="28"><div class="waypoint" data-reactid="29"></div><a class="section-anchor" data-reactid="30"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="31"><div class="container" data-reactid="32"><div class="columns sixteen" data-reactid="33"><!-- react-empty: 34 --></div><div class="alignment-container " data-reactid="35"><div class="s-repeatable s-block s-component s-mh " data-reactid="36"><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="37"><span data-reactid="38"><div data-reactid="39"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="40"><div class=" columns sixteen" data-reactid="41"><div class="s-component s-text" data-reactid="42"><div class="s-component-content s-font-body" data-reactid="43"><p style="font-size: 160%;"><strong>Overturn the traditions</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="44"><span data-reactid="45"><div data-reactid="46"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="47"><div class=" columns sixteen" data-reactid="48"><div class="s-component s-text" data-reactid="49"><div class="s-component-content s-font-body" data-reactid="50"><p><strong>The first programmable BioChip ever</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="51"><span data-reactid="52"><div data-reactid="53"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="54"><div class=" columns sixteen" data-reactid="55"><div class="s-component s-text" data-reactid="56"><div class="s-component-content s-font-body" data-reactid="57"><p style="text-align:left">You might have experience of coding on a computer to make a new program, but have you ever thought about to accutually pragram a BioChip to let it fulfill any biochemical tasks you can imagined?</p><p style="text-align:left">Since the NGBC is completely constructed by genetic circuits, you can just use subcloning techniques to edit the genetic circuits and <a href="#3">genetic boolean logic gates</a> to construct logical networks and algorithms.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="58"><span data-reactid="59"><div data-reactid="60"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="61"><div class=" columns sixteen" data-reactid="62"><div class="s-component s-text" data-reactid="63"><div class="s-component-content s-font-body" data-reactid="64"><p> </p><p><strong>Cell Free</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="65"><span data-reactid="66"><div data-reactid="67"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="68"><div class=" columns sixteen" data-reactid="69"><div class="s-component s-text" data-reactid="70"><div class="s-component-content s-font-body" data-reactid="71"><p style="text-align:left">This is one of the most important feature of our BioChip. S30 Cell-free system eliminates biochemical reactions inside the cell that may influence the result and makes the expression of special proteins, which are toxic to the living-cells, becomes possible.</p><p style="text-align:left">More importantly, it tremendously increased the bio-safety of our BioChip since there is no worries about the mutations of living-cells and the escaping of harmful organisms.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="72"><span data-reactid="73"><div data-reactid="74"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="75"><div class=" columns sixteen" data-reactid="76"><div class="s-component s-text" data-reactid="77"><div class="s-component-content s-font-body" data-reactid="78"><p> </p><p><strong>Open-source</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="79"><span data-reactid="80"><div data-reactid="81"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="82"><div class=" columns sixteen" data-reactid="83"><div class="s-component s-text" data-reactid="84"><div class="s-component-content s-font-body" data-reactid="85"><p style="text-align: left;">We will develop an NGBC kit that could be distributed to the labs around the world, so everyone could re-program our biochips and produce their own one. By sending their genetic circuits to a special gene bank and uploading results onto NGBC database, thousands or even millions of biochips with different functionalities that resolve problems in different fields could be created and stored.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="86"><span data-reactid="87"><div data-reactid="88"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="89"><div class=" columns sixteen" data-reactid="90"><div class="s-component s-text" data-reactid="91"><div class="s-component-content s-font-body" data-reactid="92"><p> </p><p><strong>Short prototyping time</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="93"><span data-reactid="94"><div data-reactid="95"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="96"><div class=" columns sixteen" data-reactid="97"><div class="s-component s-text" data-reactid="98"><div class="s-component-content s-font-body" data-reactid="99"><p style="text-align: left;">By using our NGBC kit, it is possible to construct a new biochip just within a week!</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="100"><span data-reactid="101"><div data-reactid="102"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="103"><div class=" columns sixteen" data-reactid="104"><div class="s-component s-text" data-reactid="105"><div class="s-component-content s-font-body" data-reactid="106"><p> </p><p><strong>One-step and high-throughput</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="107"><span data-reactid="108"><div data-reactid="109"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="110"><div class=" columns sixteen" data-reactid="111"><div class="s-component s-text" data-reactid="112"><div class="s-component-content s-font-body" data-reactid="113"><p style="text-align:left">Multiple obstacles in clinical testing procedures could be resolved by using our biochips. Forget about complex and time-consuming sample testing experimental procedures, what you need to do is just adding samples onto a properly programmed NGBC and all the biochemical reactions could be done automatically. Densely packed reactions units on the biochip ensures that large amount of samples could be tested together.</p><p style="text-align:left"> </p><p style="text-align:left">The high-throughput of the bio-chip and the small duration of the testing process of clinical samples, should the bio-chip be successfully manufactured, shall relieve millions of patients of comprehensive time-consuming and perhaps agonising medical inspections—these could be carried out at home! The bio-chip system, presumably, transcends mainstream medical inspections of clinical samples in means of efficiency and convenience.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="114"><span data-reactid="115"><div data-reactid="116"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="117"><div class=" columns sixteen" data-reactid="118"><div class="s-component s-text" data-reactid="119"><div class="s-component-content s-font-body" data-reactid="120"><p> </p><p><strong>Ultra-high expression</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="121"><span data-reactid="122"><div data-reactid="123"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="124"><div class=" columns sixteen" data-reactid="125"><div class="s-component s-text" data-reactid="126"><div class="s-component-content s-font-body" data-reactid="127"><p style="text-align:left">We introduced an Utra-High Expression Cassette(U-HEC) into our standard NGBC kit which enables controllable high protein expressions.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="128"><span data-reactid="129"><div data-reactid="130"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="131"><div class=" columns sixteen" data-reactid="132"><div class="s-component s-text" data-reactid="133"><div class="s-component-content s-font-body" data-reactid="134"><p> </p><p><strong>Unlimited potentials</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="135"><span data-reactid="136"><div data-reactid="137"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="138"><div class=" columns sixteen" data-reactid="139"><div class="s-component s-text" data-reactid="140"><div class="s-component-content s-font-body" data-reactid="141"><p style="text-align:left">Our BioChip enables users to fulfill any of their fantastic and creative idea by using standard subcloning techniques.</p><p> </p><p>Read more about our future projects with NGBC by clicking <u><strong>here</strong></u></p></div></div></div></div></div></span></div></div></div></div></div></li><li class="slide s-section-3" id="section-f_ad11b140-2d05-4221-803e-4698be2f3cff" data-reactid="142"><div class="waypoint" data-reactid="143"></div><a class="section-anchor" data-reactid="144"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="145"><div class="container" data-reactid="146"><div class="columns sixteen" data-reactid="147"><!-- react-empty: 148 --></div><div class="alignment-container " data-reactid="149"><div class="s-repeatable s-block s-component s-mh " data-reactid="150"><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-title " data-reactid="151"><span data-reactid="152"><div data-reactid="153"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="154"><div class=" columns sixteen" data-reactid="155"><div class="s-item-title" data-reactid="156"><div class="s-component s-text" data-reactid="157"><h3 class="s-component-content s-font-heading" data-reactid="158"><p>Genetic Boolean Logic Gates</p></h3></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="159"><span data-reactid="160"><div data-reactid="161"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="162"><div class=" columns sixteen" data-reactid="163"><div class="s-component s-text" data-reactid="164"><div class="s-component-content s-font-body" data-reactid="165"><p style="text-align: left;">Our BioChip involves the de novo application of DNA recombination which enables the genetic modules to mimic the functions of boolean logic gates in eletricity.</p><p style="text-align: left;"> </p><p style="text-align: left;">Recombinase like Bxb1 and PhiC31 are able to invert or excise DNA based on the orientation of recognition sites which flank the target gene [1]. With the aids of inducible promoters such pCpxP and pFadR it is possible to express target genes by using boolean logic. It is demonstrated by Piro's team that recombinase based genetic logic gates are capable to mimic all the 16 types of logic gates (Fig.1).</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="166"><span data-reactid="167"><div data-reactid="168"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="169"><div class=" columns sixteen" data-reactid="170"><div class="s-component s-image" data-reactid="171"><span data-reactid="172"><div class="s-component-content" data-reactid="173"><div data-reactid="174"><!-- react-text: 175 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:974px;max-height:1489px;" data-reactid="176"><div class="s-ratio-fill" style="padding-bottom:152.87%;" data-reactid="177"></div><div data-reactid="178"><img alt="" title="" data-description="" width="974" height="1489" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/Genetic_logic_gate_pxqvnx.png" data-sizes="auto" data-reactid="179"/><noscript data-reactid="180"><img alt="" title="" data-description="" width="974" height="1489" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/Genetic_logic_gate_pxqvnx.png" class="" data-reactid="181"/></noscript></div></div><!-- react-text: 182 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="183"><span data-reactid="184"><div data-reactid="185"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="186"><div class=" columns sixteen" data-reactid="187"><div class="s-component s-text" data-reactid="188"><div class="s-component-content s-font-body" data-reactid="189"><p style="text-align: left; font-size: 80%;"><strong><em>Fig.1 16 different types of synthetic genetic boolean logic gates</em></strong></p><p style="text-align: left; font-size: 80%;"><em>Picture from </em>Siuti, Piro, John Yazbek, and Timothy K. Lu. "Synthetic circuits integrating logic and memory in living cells." <em>Nature biotechnology</em> 31.5 (2013): 448-452.​</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="190"><span data-reactid="191"><div data-reactid="192"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="193"><div class=" columns sixteen" data-reactid="194"><div class="s-component s-text" data-reactid="195"><div class="s-component-content s-font-body" data-reactid="196"><p style="text-align: left;">In order to further explain and demonstrate the application of genetic logic gates, we design a simple genetic circuit involves three plasmids which can achieve following algorithm (Fig.2):</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="197"><span data-reactid="198"><div data-reactid="199"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="200"><div class=" columns sixteen" data-reactid="201"><div class="s-component s-image" data-reactid="202"><span data-reactid="203"><div class="s-component-content" data-reactid="204"><div data-reactid="205"><!-- react-text: 206 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:175px;max-height:166px;" data-reactid="207"><div class="s-ratio-fill" style="padding-bottom:94.86%;" data-reactid="208"></div><div data-reactid="209"><img alt="" title="" data-description="" width="175" height="166" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/%E6%9C%AA%E5%91%BD%E5%90%8D_%E5%89%AF%E6%9C%AC_f6qre7.png" data-sizes="auto" data-reactid="210"/><noscript data-reactid="211"><img alt="" title="" data-description="" width="175" height="166" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/%E6%9C%AA%E5%91%BD%E5%90%8D_%E5%89%AF%E6%9C%AC_f6qre7.png" class="" data-reactid="212"/></noscript></div></div><!-- react-text: 213 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="214"><span data-reactid="215"><div data-reactid="216"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="217"><div class=" columns sixteen" data-reactid="218"><div class="s-component s-text" data-reactid="219"><div class="s-component-content s-font-body" data-reactid="220"><p style="font-size: 80%;"><em><strong>Fig.2 A three states logic algorithm; </strong>3 different colored fluorescence proteins will be expressed based on 3 different situations</em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="221"><span data-reactid="222"><div data-reactid="223"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="224"><div class=" columns sixteen" data-reactid="225"><div class="s-component s-image" data-reactid="226"><span data-reactid="227"><div class="s-component-content" data-reactid="228"><div data-reactid="229"><!-- react-text: 230 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:790px;max-height:596px;" data-reactid="231"><div class="s-ratio-fill" style="padding-bottom:75.44%;" data-reactid="232"></div><div data-reactid="233"><img alt="" title="" data-description="" width="790" height="596" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/Genetic_logic_gate_fw4cqb.png" data-sizes="auto" data-reactid="234"/><noscript data-reactid="235"><img alt="" title="" data-description="" width="790" height="596" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/Genetic_logic_gate_fw4cqb.png" class="" data-reactid="236"/></noscript></div></div><!-- react-text: 237 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="238"><span data-reactid="239"><div data-reactid="240"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="241"><div class=" columns sixteen" data-reactid="242"><div class="s-component s-text" data-reactid="243"><div class="s-component-content s-font-body" data-reactid="244"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.3 Genetic circuit which achieve a three states algorithm</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="245"><span data-reactid="246"><div data-reactid="247"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="248"><div class=" columns sixteen" data-reactid="249"><div class="s-component s-text" data-reactid="250"><div class="s-component-content s-font-body" data-reactid="251"><p style="text-align: left;">When there is only molecule A present, Bxb1 recombinase will be expressed (Fig.3). Bxb1 attached to it's recognition sites and inverts the genes. RFP gene is flanked by two recognition sites of Bxb1 (Fig.3) so the gene will be inverted and be expressed.</p><p style="text-align: left;">When there is only molecule B present, phiC31 recombinase will be expressed (Fig.3) which resulting the expression of CFP.</p><p style="text-align: left;">When molecules A and B are both present, phiC31 and Bxb1 will be expressed. Promoter and CFP gene on Plasmid 1 (Fig.3) will both be inverted so there will be no expression of CFP. Same situation happened with promoter and RFP on Plasmid 2 (Fig.3) so RFP will not be expressed as well.</p><p style="text-align: left;">However, when both promoter and GFP on Plasmid 3 (Fig.3) are inverted, the expression of GFP will start.</p></div></div></div></div></div></span></div></div></div></div></div></li><li class="slide s-section-4" id="section-f_13eedbee-62c8-4e66-9dd9-174df870a2dc" data-reactid="252"><div class="waypoint" data-reactid="253"></div><a class="section-anchor" data-reactid="254"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="255"><div class="container" data-reactid="256"><div class="columns sixteen" data-reactid="257"><!-- react-empty: 258 --></div><div class="alignment-container " data-reactid="259"><div class="s-repeatable s-block s-component s-mh " data-reactid="260"><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-title " data-reactid="261"><span data-reactid="262"><div data-reactid="263"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="264"><div class=" columns sixteen" data-reactid="265"><div class="s-item-title" data-reactid="266"><div class="s-component s-text" data-reactid="267"><h3 class="s-component-content s-font-heading" data-reactid="268"><p><strong>Paper based cell-free BioChip</strong></p></h3></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="269"><span data-reactid="270"><div data-reactid="271"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="272"><div class=" columns sixteen" data-reactid="273"><div class="s-component s-image" data-reactid="274"><span data-reactid="275"><div class="s-component-content" data-reactid="276"><div data-reactid="277"><!-- react-text: 278 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:1000px;max-height:448px;" data-reactid="279"><div class="s-ratio-fill" style="padding-bottom:44.80%;" data-reactid="280"></div><div data-reactid="281"><img alt="" title="" data-description="" width="1000" height="448" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/Paper_based_cell-free_aabjzr.png" data-sizes="auto" data-reactid="282"/><noscript data-reactid="283"><img alt="" title="" data-description="" width="1000" height="448" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/Paper_based_cell-free_aabjzr.png" class="" data-reactid="284"/></noscript></div></div><!-- react-text: 285 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="286"><span data-reactid="287"><div data-reactid="288"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="289"><div class=" columns sixteen" data-reactid="290"><div class="s-component s-text" data-reactid="291"><div class="s-component-content s-font-body" data-reactid="292"><p style="font-size: 80%; text-align: left;"><em><strong>Fig.4 Schematic procedure to make paper based cell-free BioChip </strong></em></p><p style="font-size: 80%; text-align: left;"><em>Picture modified from internet</em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-smallFeatureRight " data-reactid="293"><span data-reactid="294"><div data-reactid="295"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="296"><div class="" data-reactid="297"><div class="s-block-feature " data-reactid="298"><div class="six columns right" data-reactid="299"><div class="s-item-media-group" data-reactid="300"><div class="s-component s-media " data-reactid="301"><span data-reactid="302"><div class="s-component-content" data-reactid="303"><div data-reactid="304"><!-- react-text: 305 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:556px;max-height:616px;" data-reactid="306"><div class="s-ratio-fill" style="padding-bottom:110.79%;" data-reactid="307"></div><div data-reactid="308"><img alt="" title="" data-description="" width="556" height="616" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/Sensor-processing-output_iawoho.png" data-sizes="auto" data-reactid="309"/><noscript data-reactid="310"><img alt="" title="" data-description="" width="556" height="616" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/Sensor-processing-output_iawoho.png" class="" data-reactid="311"/></noscript></div></div><!-- react-text: 312 --> <!-- /react-text --></div></div></span></div></div></div><div class="ten columns right" data-reactid="313"><div class="s-item-text-group half-offset-right" data-reactid="314"><div class="s-item-title" data-reactid="315"><div class="s-component s-text" data-reactid="316"></div></div><div class="s-item-subtitle" data-reactid="317"><div class="s-component s-text" data-reactid="318"></div></div><div class="s-item-text" data-reactid="319"><div class="s-component s-text" data-reactid="320"><div class="s-component-content s-font-body" data-reactid="321"><p>Fig.4 demonstrated a schematic procedure of how the paper based cell-free BioChip is made. We genetically engineered the plasmids by using standard cloning methods (MCS, MoClo, Gibson, Golden Gate, etc.). The plasmids formed a genetic circuit which contains an sensor unit (inducible promoters), a logical processing unit (genetic logic gates) and an output unit (reporter genes like genes coding for GFP, LacZ, Renilla luciferase, etc. Fig.5), which together act as a micro-computer.</p><p>We then mixed these plamids with S30 Cell-Free expression system which can be bought from Promega, and immobilized the plasmids with cell-free system onto nuclease-free filter paper.</p><p>Freeze-drying technology is used to dry the filter paper[2] while keeping structures of polypeptides and polynucleotides intact.</p><p>Freeze-dried BioChip can be then be stored in dry condition for a long time.</p></div></div></div></div></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="322"><span data-reactid="323"><div data-reactid="324"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="325"><div class=" columns sixteen" data-reactid="326"><div class="s-component s-text" data-reactid="327"><div class="s-component-content s-font-body" data-reactid="328"><p style="font-size: 80%; text-align: right;"><em><strong>Fig.5 Genetic micro-computer</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="329"><span data-reactid="330"><div data-reactid="331"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="332"><div class=" columns sixteen" data-reactid="333"><div class="s-component s-text" data-reactid="334"><div class="s-component-content s-font-body" data-reactid="335"><p style="font-size: 130%;">The use of the BioChip</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-smallFeatureLeft " data-reactid="336"><span data-reactid="337"><div data-reactid="338"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="339"><div class="" data-reactid="340"><div class="s-block-feature " data-reactid="341"><div class="six columns" data-reactid="342"><div class="s-item-media-group" data-reactid="343"><div class="s-component s-media " data-reactid="344"><span data-reactid="345"><div class="s-component-content" data-reactid="346"><div data-reactid="347"><!-- react-text: 348 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:667px;max-height:661px;" data-reactid="349"><div class="s-ratio-fill" style="padding-bottom:99.10%;" data-reactid="350"></div><div data-reactid="351"><img alt="" title="" data-description="" width="667" height="661" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/A_BioChip_reaction_unit_dfonnq.png" data-sizes="auto" data-reactid="352"/><noscript data-reactid="353"><img alt="" title="" data-description="" width="667" height="661" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/A_BioChip_reaction_unit_dfonnq.png" class="" data-reactid="354"/></noscript></div></div><!-- react-text: 355 --> <!-- /react-text --></div></div></span></div></div></div><div class="ten columns" data-reactid="356"><div class="s-item-text-group half-offset-left" data-reactid="357"><div class="s-item-title" data-reactid="358"><div class="s-component s-text" data-reactid="359"></div></div><div class="s-item-subtitle" data-reactid="360"><div class="s-component s-text" data-reactid="361"></div></div><div class="s-item-text" data-reactid="362"><div class="s-component s-text" data-reactid="363"><div class="s-component-content s-font-body" data-reactid="364"><p>In order to make the BioChip more user-friendly, we design a three-component reaction unit (Fig.6) which contains a loading area for clinical and laboritory substances, a microfluidics conductor that controls the quantity of target molecules and filters unwanted substances that might influence the result, a reaction center which contains the freeze-dried immobilized genetic circuits and substances in S30 system.</p><p> </p><p>Black area surrounds the reaction unit is composed of wax which restricts the flow of liquid.</p><p> </p><p>The BioChip will be placed in vacuum box at low temperature for storage.</p></div></div></div></div></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="365"><span data-reactid="366"><div data-reactid="367"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="368"><div class=" columns sixteen" data-reactid="369"><div class="s-component s-text" data-reactid="370"><div class="s-component-content s-font-body" data-reactid="371"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.6 Three-component reaction unit</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="372"><span data-reactid="373"><div data-reactid="374"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="375"><div class=" columns sixteen" data-reactid="376"><div class="s-component s-text" data-reactid="377"><div class="s-component-content s-font-body" data-reactid="378"><p style="text-align: left;">When you need to use the BioChip, you just need to take it out from the vacuum box and load the liquid substances onto the loading area. The liquid will flow through the microfluidics conductor and finally get to the reaction center where all the genetic and logical processing reactions take place.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="379"><span data-reactid="380"><div data-reactid="381"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="382"><div class=" columns sixteen" data-reactid="383"><div class="s-component s-image" data-reactid="384"><span data-reactid="385"><div class="s-component-content" data-reactid="386"><div data-reactid="387"><!-- react-text: 388 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:712px;max-height:470px;" data-reactid="389"><div class="s-ratio-fill" style="padding-bottom:66.01%;" data-reactid="390"></div><div data-reactid="391"><img alt="" title="" data-description="" width="712" height="470" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/BioChip_demonstration_xzmrn9.png" data-sizes="auto" data-reactid="392"/><noscript data-reactid="393"><img alt="" title="" data-description="" width="712" height="470" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/BioChip_demonstration_xzmrn9.png" class="" data-reactid="394"/></noscript></div></div><!-- react-text: 395 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="396"><span data-reactid="397"><div data-reactid="398"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="399"><div class=" columns sixteen" data-reactid="400"><div class="s-component s-text" data-reactid="401"><div class="s-component-content s-font-body" data-reactid="402"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.7 Signal output for detection of different molecules</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="403"><span data-reactid="404"><div data-reactid="405"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="406"><div class=" columns sixteen" data-reactid="407"><div class="s-component s-text" data-reactid="408"><div class="s-component-content s-font-body" data-reactid="409"><p style="text-align: left;">Fig.7 is a demonstration of the use of the BioChip with specifically design genetic circuit in the reaction center. When clinical substances contains only glucose is loaded, CFP protein will be expressed. When only fatty acids present, GFP protein will be produced. When glucose and fatty acids are both present in the clinical substances, neither CFP nor GFP protein will be expressed but there will be RFP protein produced.</p><p style="text-align: left;">Therefore, by looking at the color of the fluorescence protein produced in the reaction center, we can easily deduced the biological molecules present in the clinical substances.</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="410"><span data-reactid="411"><div data-reactid="412"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="413"><div class=" columns sixteen" data-reactid="414"><div class="s-component s-text" data-reactid="415"><div class="s-component-content s-font-body" data-reactid="416"><p style="text-align: left;">In order to increase the throughput of reaction, the BioChips are made into assays which contain serials of reaction units (Fig.8).</p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="417"><span data-reactid="418"><div data-reactid="419"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="420"><div class=" columns sixteen" data-reactid="421"><div class="s-component s-image" data-reactid="422"><span data-reactid="423"><div class="s-component-content" data-reactid="424"><div data-reactid="425"><!-- react-text: 426 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:1266px;max-height:930px;" data-reactid="427"><div class="s-ratio-fill" style="padding-bottom:73.46%;" data-reactid="428"></div><div data-reactid="429"><img alt="" title="" data-description="" width="1266" height="930" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/227175720606342730_s2th9r.png" data-sizes="auto" data-reactid="430"/><noscript data-reactid="431"><img alt="" title="" data-description="" width="1266" height="930" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/227175720606342730_s2th9r.png" class="" data-reactid="432"/></noscript></div></div><!-- react-text: 433 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="434"><span data-reactid="435"><div data-reactid="436"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="437"><div class=" columns sixteen" data-reactid="438"><div class="s-component s-text" data-reactid="439"><div class="s-component-content s-font-body" data-reactid="440"><p style="font-size: 80%; text-align: left;"><em><strong>Fig.8 Synthetic picture of BioChip assays</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="441"><span data-reactid="442"><div data-reactid="443"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="444"><div class=" columns sixteen" data-reactid="445"><div class="s-component s-image" data-reactid="446"><span data-reactid="447"><div class="s-component-content" data-reactid="448"><div data-reactid="449"><!-- react-text: 450 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:800px;max-height:594px;" data-reactid="451"><div class="s-ratio-fill" style="padding-bottom:74.25%;" data-reactid="452"></div><div data-reactid="453"><img alt="" title="" data-description="" width="800" height="594" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/19674369596626584_bhuzrk.jpg" data-sizes="auto" data-reactid="454"/><noscript data-reactid="455"><img alt="" title="" data-description="" width="800" height="594" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto/v1/791914/19674369596626584_bhuzrk.jpg" class="" data-reactid="456"/></noscript></div></div><!-- react-text: 457 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="458"><span data-reactid="459"><div data-reactid="460"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="461"><div class=" columns sixteen" data-reactid="462"><div class="s-component s-text" data-reactid="463"><div class="s-component-content s-font-body" data-reactid="464"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.10 3D model of new design of the BioChip</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="465"><span data-reactid="466"><div data-reactid="467"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="468"><div class=" columns sixteen" data-reactid="469"><div class="s-component s-image" data-reactid="470"><span data-reactid="471"><div class="s-component-content" data-reactid="472"><div data-reactid="473"><!-- react-text: 474 --> <!-- /react-text --><div class="s-ratio-box" style="max-width:1623px;max-height:1201px;" data-reactid="475"><div class="s-ratio-fill" style="padding-bottom:74.00%;" data-reactid="476"></div><div data-reactid="477"><img alt="" title="" data-description="" width="1623" height="1201" src="data:image/gif;base64,R0lGODlhAQABAAAAACH5BAEKAAEALAAAAAABAAEAAAICTAEAOw==" class="lazyload " data-src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/648950326505340116_tillna.png" data-sizes="auto" data-reactid="478"/><noscript data-reactid="479"><img alt="" title="" data-description="" width="1623" height="1201" src="//res.cloudinary.com/hrscywv4p/image/upload/c_limit,h_9000,w_1200,f_auto,q_90/v1/791914/648950326505340116_tillna.png" class="" data-reactid="480"/></noscript></div></div><!-- react-text: 481 --> <!-- /react-text --></div></div></span></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="482"><span data-reactid="483"><div data-reactid="484"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="485"><div class=" columns sixteen" data-reactid="486"><div class="s-component s-text" data-reactid="487"><div class="s-component-content s-font-body" data-reactid="488"><p style="text-align: left; font-size: 80%;"><em><strong>Fig.11 3D model of new design of the BioChip</strong></em></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="489"><span data-reactid="490"><div data-reactid="491"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="492"><div class=" columns sixteen" data-reactid="493"><div class="s-component s-text" data-reactid="494"><div class="s-component-content s-font-body" data-reactid="495"><p style="text-align: left;">In the future, we will made our BioChip thicker to contain higher volume of liquid for persistent reactions. Glass cover will be included to lower the evaporation of liquid and contamination of nuclease in the atmosphere (Fig.10 &amp; Fig.11).</p></div></div></div></div></div></span></div></div></div></div></div></li><li class="slide s-section-5" id="section-f_6c0c670b-1083-4c67-ac87-cb5936a71ccd" data-reactid="496"><div class="waypoint" data-reactid="497"></div><a class="section-anchor" data-reactid="498"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="499"><div class="container" data-reactid="500"><div class="columns sixteen" data-reactid="501"><!-- react-empty: 502 --></div><div class="alignment-container " data-reactid="503"><div class="s-repeatable s-block s-component s-mh " data-reactid="504"><div class="s-block-item s-repeatable-item s-block-sortable-item s-block-title " data-reactid="505"><span data-reactid="506"><div data-reactid="507"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="508"><div class=" columns sixteen" data-reactid="509"><div class="s-item-title" data-reactid="510"><div class="s-component s-text" data-reactid="511"><h3 class="s-component-content s-font-heading" data-reactid="512"><p>Open sourced NGBC kit</p></h3></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="513"><span data-reactid="514"><div data-reactid="515"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="516"><div class=" columns sixteen" data-reactid="517"><div class="s-component s-text" data-reactid="518"><div class="s-component-content s-font-body" data-reactid="519"><p style="text-align:left">We are going make a kit called NGBC kit which contains all the things for you to make a new NGBC. The kit is completely open sourced, you can know the design and the nucleotide sequences of all the plamids and genetic circuits inside it.</p><p style="text-align:left">We will distribute our NGBC kit to the laboritories all around the world. NGBC database will be made to record all the new genetic logic processing units, genetic sequences and the design of all the new units. We also strongly suggest the iGEM committe to take this as a new trial in iGEM.</p><p style="text-align:left"> </p><p style="text-align:left">Here we made a list of things in our beta version of NGBC kit:</p><ol><li style="text-align: left;">AHL</li><li style="text-align: left;">aTc</li><li style="text-align: left;">AHL inducible promoter flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">aTc inducible promoter flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">Bxb1 recombinase coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">phiC31 recombinase coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">Cre recombinase coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">Bxb1 recombinase recognition sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">phiC31 recombinase recognition sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">LoxP sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">16 different types of genetic logic gates with EGFP as output in pSB1C3 backbone</li><li style="text-align: left;">pCpxP promoter flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">EGFP coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">RFP coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">CFP coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">Renilla luciferase coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">LacZ coding sequence flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">X-gal in powder form</li><li style="text-align: left;">DMSO</li><li style="text-align: left;">J23119 promoter flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">B0015 terminator flanked by MCS in pSB1C3 backbone</li><li style="text-align: left;">pSB1C3 linear plasmid backbone</li></ol></div></div></div></div></div></span></div></div></div></div></div></li><li class="slide s-section-6 s-last-section-no-footer" id="section-f_6b98eb80-2935-4578-b06e-c5ffc30d10bd" data-reactid="520"><div class="waypoint" data-reactid="521"></div><a class="section-anchor" data-reactid="522"></a><div class="lazyload s-no-bg s-block-section s-section" data-reactid="523"><div class="container" data-reactid="524"><div class="columns sixteen" data-reactid="525"><!-- react-empty: 526 --></div><div class="alignment-container " data-reactid="527"><div class="s-repeatable s-block s-component s-mh " data-reactid="528"><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="529"><span data-reactid="530"><div data-reactid="531"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="532"><div class=" columns sixteen" data-reactid="533"><div class="s-component s-text" data-reactid="534"><div class="s-component-content s-font-body" data-reactid="535"><p style="text-align: left;"><strong>References</strong></p></div></div></div></div></div></span></div><div class="s-block-item s-repeatable-item s-block-sortable-item " data-reactid="536"><span data-reactid="537"><div data-reactid="538"><div class="s-block-item-inner clearfix" style="position:relative;" data-reactid="539"><div class=" columns sixteen" data-reactid="540"><div class="s-component s-text" data-reactid="541"><div class="s-component-content s-font-body" data-reactid="542"><p style="font-size:80%; text-align:left"><em>1. Siuti, Piro, John Yazbek, and Timothy K. Lu. "Synthetic circuits integrating logic and memory in living cells." Nature biotechnology 31.5 (2013): 448-452.</em></p><p style="font-size:80%; text-align:left"><em>2. </em>Pardee, Keith, et al. "Paper-based synthetic gene networks." <em>Cell</em> 159.4 (2014): 940-954.​</p></div></div></div></div></div></span></div></div></div></div></div><div class="waypoint" data-reactid="543"></div></li></ul><!-- react-empty: 544 --><div id="strikingly-tooltip-container" data-reactid="545"> </div><!-- react-empty: 546 --><!-- react-empty: 547 --><div class="s-floated-components" data-reactid="548"><div class="ecommerce-buy-dialog s-edit-modal extend" id="ecommerce-buy-dialog" data-reactid="549"><div class="s-async-wrapper s-component" data-reactid="550"><div class="s-loading" data-reactid="551"></div></div></div><div id="s-ecommerce-shopping-cart-wrapper" class="s-ecommerce-shopping-cart-wrapper" data-reactid="552"></div></div></div></div></div> <div id='fb-root'></div> <div id='app-script-root'></div> <div id='app-view-root'></div> <script id='blog-collection-tmpl' type='text/html'> <div class='s-blog-col-head'></div> <div class='s-blog-col-body'> {{ _.each(blogPosts, function(blog) { }} <div class='s-blog-entry'> <div class='s-blog-entry-inner'> {{ if ($S && $S.conf && $S.conf.preview_mode) { }} <a class='s-blog-overlay-link' href='{{=blog.publicUrl}}'>&nbsp;</a> {{ } else { }} <a class='s-blog-overlay-link' href='{{=blog.relativeUrl}}'>&nbsp;</a> {{ } }} {{ if (blog.iconUrl) { }} <div class='s-blog-entry-left'> {{ if (UrlHelper.imageHasContent(blog.iconUrl)) { }} <div class='s-blog-avatar' style='background-image:url({{=blog.iconUrl}});'></div> {{ } else { }} <div class='s-blog-default-avatar'> <div class='entypo-bookmark'></div> </div> {{ } }} </div> {{ } }} <div class='s-blog-entry-right'> <div class='s-blog-details'> <div class='s-blog-details-head s-blog-row'> <div class='s-blog-title s-font-heading'> {{=blog.title}} </div> <div class='s-blog-date'> {{=blog.publishedAt}} </div> </div> {{ if (blogSettings.previewLayout == 1) { }} <div class='s-blog-details-blurb s-blog-row'> {{=blog.blurb}} </div> {{ } }} </div> </div> </div> </div> {{ }) }} {{ if (blogPosts.length == 0) { }} <div class='s-blog-entry'> <div class='s-common-status no-posts-error'> 没有博文。 </div> </div> {{ } }} </div> {{ if (blogPosts.length > 0) { }} <div class='s-blog-col-foot'> <a class='s-blog-link s-blog-next-link' href='javascript:void(0);'> &laquo; 更新 </a> &nbsp; <ul class='s-blog-pagination' style='display:none;'> <li> <a class='s-blog-link s-blog-pagination-page' href='javascript:void(0);'></a> </li> </ul> &nbsp; <a class='s-blog-link s-blog-prev-link' href='javascript:void(0);'> 其它 &raquo; </a> </div> {{ } }} </script> <script src="//cdn.bootcss.com/jquery/1.10.0/jquery.min.js"></script> <script>
 
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Revision as of 22:39, 9 October 2016

Ellz's Site

  • Project Description

  • Overturn the traditions

    The first programmable BioChip ever

    You might have experience of coding on a computer to make a new program, but have you ever thought about to accutually pragram a BioChip to let it fulfill any biochemical tasks you can imagined?

    Since the NGBC is completely constructed by genetic circuits, you can just use subcloning techniques to edit the genetic circuits and genetic boolean logic gates to construct logical networks and algorithms.

    Cell Free

    This is one of the most important feature of our BioChip. S30 Cell-free system eliminates biochemical reactions inside the cell that may influence the result and makes the expression of special proteins, which are toxic to the living-cells, becomes possible.

    More importantly, it tremendously increased the bio-safety of our BioChip since there is no worries about the mutations of living-cells and the escaping of harmful organisms.

    Open-source

    We will develop an NGBC kit that could be distributed to the labs around the world, so everyone could re-program our biochips and produce their own one. By sending their genetic circuits to a special gene bank and uploading results onto NGBC database, thousands or even millions of biochips with different functionalities that resolve problems in different fields could be created and stored.

    Short prototyping time

    By using our NGBC kit, it is possible to construct a new biochip just within a week!

    One-step and high-throughput

    Multiple obstacles in clinical testing procedures could be resolved by using our biochips. Forget about complex and time-consuming sample testing experimental procedures, what you need to do is just adding samples onto a properly programmed NGBC and all the biochemical reactions could be done automatically. Densely packed reactions units on the biochip ensures that large amount of samples could be tested together.

    The high-throughput of the bio-chip and the small duration of the testing process of clinical samples, should the bio-chip be successfully manufactured, shall relieve millions of patients of comprehensive time-consuming and perhaps agonising medical inspections—these could be carried out at home! The bio-chip system, presumably, transcends mainstream medical inspections of clinical samples in means of efficiency and convenience.

    Ultra-high expression

    We introduced an Utra-High Expression Cassette(U-HEC) into our standard NGBC kit which enables controllable high protein expressions.

    Unlimited potentials

    Our BioChip enables users to fulfill any of their fantastic and creative idea by using standard subcloning techniques.

    Read more about our future projects with NGBC by clicking here

  • Genetic Boolean Logic Gates

    Our BioChip involves the de novo application of DNA recombination which enables the genetic modules to mimic the functions of boolean logic gates in eletricity.

    Recombinase like Bxb1 and PhiC31 are able to invert or excise DNA based on the orientation of recognition sites which flank the target gene [1]. With the aids of inducible promoters such pCpxP and pFadR it is possible to express target genes by using boolean logic. It is demonstrated by Piro's team that recombinase based genetic logic gates are capable to mimic all the 16 types of logic gates (Fig.1).

    Fig.1 16 different types of synthetic genetic boolean logic gates

    Picture from Siuti, Piro, John Yazbek, and Timothy K. Lu. "Synthetic circuits integrating logic and memory in living cells." Nature biotechnology 31.5 (2013): 448-452.​

    In order to further explain and demonstrate the application of genetic logic gates, we design a simple genetic circuit involves three plasmids which can achieve following algorithm (Fig.2):

    Fig.2 A three states logic algorithm; 3 different colored fluorescence proteins will be expressed based on 3 different situations

    Fig.3 Genetic circuit which achieve a three states algorithm

    When there is only molecule A present, Bxb1 recombinase will be expressed (Fig.3). Bxb1 attached to it's recognition sites and inverts the genes. RFP gene is flanked by two recognition sites of Bxb1 (Fig.3) so the gene will be inverted and be expressed.

    When there is only molecule B present, phiC31 recombinase will be expressed (Fig.3) which resulting the expression of CFP.

    When molecules A and B are both present, phiC31 and Bxb1 will be expressed. Promoter and CFP gene on Plasmid 1 (Fig.3) will both be inverted so there will be no expression of CFP. Same situation happened with promoter and RFP on Plasmid 2 (Fig.3) so RFP will not be expressed as well.

    However, when both promoter and GFP on Plasmid 3 (Fig.3) are inverted, the expression of GFP will start.

  • Paper based cell-free BioChip

    Fig.4 Schematic procedure to make paper based cell-free BioChip

    Picture modified from internet

    Fig.4 demonstrated a schematic procedure of how the paper based cell-free BioChip is made. We genetically engineered the plasmids by using standard cloning methods (MCS, MoClo, Gibson, Golden Gate, etc.). The plasmids formed a genetic circuit which contains an sensor unit (inducible promoters), a logical processing unit (genetic logic gates) and an output unit (reporter genes like genes coding for GFP, LacZ, Renilla luciferase, etc. Fig.5), which together act as a micro-computer.

    We then mixed these plamids with S30 Cell-Free expression system which can be bought from Promega, and immobilized the plasmids with cell-free system onto nuclease-free filter paper.

    Freeze-drying technology is used to dry the filter paper[2] while keeping structures of polypeptides and polynucleotides intact.

    Freeze-dried BioChip can be then be stored in dry condition for a long time.

    Fig.5 Genetic micro-computer

    The use of the BioChip

    In order to make the BioChip more user-friendly, we design a three-component reaction unit (Fig.6) which contains a loading area for clinical and laboritory substances, a microfluidics conductor that controls the quantity of target molecules and filters unwanted substances that might influence the result, a reaction center which contains the freeze-dried immobilized genetic circuits and substances in S30 system.

    Black area surrounds the reaction unit is composed of wax which restricts the flow of liquid.

    The BioChip will be placed in vacuum box at low temperature for storage.

    Fig.6 Three-component reaction unit

    When you need to use the BioChip, you just need to take it out from the vacuum box and load the liquid substances onto the loading area. The liquid will flow through the microfluidics conductor and finally get to the reaction center where all the genetic and logical processing reactions take place.

    Fig.7 Signal output for detection of different molecules

    Fig.7 is a demonstration of the use of the BioChip with specifically design genetic circuit in the reaction center. When clinical substances contains only glucose is loaded, CFP protein will be expressed. When only fatty acids present, GFP protein will be produced. When glucose and fatty acids are both present in the clinical substances, neither CFP nor GFP protein will be expressed but there will be RFP protein produced.

    Therefore, by looking at the color of the fluorescence protein produced in the reaction center, we can easily deduced the biological molecules present in the clinical substances.

    In order to increase the throughput of reaction, the BioChips are made into assays which contain serials of reaction units (Fig.8).

    Fig.8 Synthetic picture of BioChip assays

    Fig.10 3D model of new design of the BioChip

    Fig.11 3D model of new design of the BioChip

    In the future, we will made our BioChip thicker to contain higher volume of liquid for persistent reactions. Glass cover will be included to lower the evaporation of liquid and contamination of nuclease in the atmosphere (Fig.10 & Fig.11).

  • Open sourced NGBC kit

    We are going make a kit called NGBC kit which contains all the things for you to make a new NGBC. The kit is completely open sourced, you can know the design and the nucleotide sequences of all the plamids and genetic circuits inside it.

    We will distribute our NGBC kit to the laboritories all around the world. NGBC database will be made to record all the new genetic logic processing units, genetic sequences and the design of all the new units. We also strongly suggest the iGEM committe to take this as a new trial in iGEM.

    Here we made a list of things in our beta version of NGBC kit:

    1. AHL
    2. aTc
    3. AHL inducible promoter flanked by MCS in pSB1C3 backbone
    4. aTc inducible promoter flanked by MCS in pSB1C3 backbone
    5. Bxb1 recombinase coding sequence flanked by MCS in pSB1C3 backbone
    6. phiC31 recombinase coding sequence flanked by MCS in pSB1C3 backbone
    7. Cre recombinase coding sequence flanked by MCS in pSB1C3 backbone
    8. Bxb1 recombinase recognition sequence flanked by MCS in pSB1C3 backbone
    9. phiC31 recombinase recognition sequence flanked by MCS in pSB1C3 backbone
    10. LoxP sequence flanked by MCS in pSB1C3 backbone
    11. 16 different types of genetic logic gates with EGFP as output in pSB1C3 backbone
    12. pCpxP promoter flanked by MCS in pSB1C3 backbone
    13. EGFP coding sequence flanked by MCS in pSB1C3 backbone
    14. RFP coding sequence flanked by MCS in pSB1C3 backbone
    15. CFP coding sequence flanked by MCS in pSB1C3 backbone
    16. Renilla luciferase coding sequence flanked by MCS in pSB1C3 backbone
    17. LacZ coding sequence flanked by MCS in pSB1C3 backbone
    18. X-gal in powder form
    19. DMSO
    20. J23119 promoter flanked by MCS in pSB1C3 backbone
    21. B0015 terminator flanked by MCS in pSB1C3 backbone
    22. pSB1C3 linear plasmid backbone