Difference between revisions of "Team:ShanghaitechChina/Biofilm"

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<strong>However, we view it through different lenses to transform this ill impact into merits.</strong>  We envision to establish the Solar Hunter system on E.<em>E.coli</em>’s biofilm. Biofilm can substantially increase the resistance of bacteria to adverse conditions like acid or oxidative stress and form a stable and balanced system. These traits make them<strong> easily grow with low cost and elevate bacteria’s adaptability.</strong> So it will be a good practice to applied to industry environment.  
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<strong>However, we view it through different lenses to transform this ill impact into merits.</strong>  We envision to establish the Solar Hunter system on <em>E.coli</em>’s biofilm. Biofilm can substantially increase the resistance of bacteria to adverse conditions like acid or oxidative stress and form a stable and balanced system. These traits make them<strong> easily grow with low cost and elevate bacteria’s adaptability.</strong> So it will be a good practice to applied to industry environment.  
 
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<p style="text-align:center"><b>Fig 10.</b> Quantum Dots Templating Assay on His-CsgA-SpyCatcher-Histag Biofilm.</p>
 
<p style="text-align:center"><b>Fig 10.</b> Quantum Dots Templating Assay on His-CsgA-SpyCatcher-Histag Biofilm.</p>
 
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After applying the same steps as introduced above, the bottom of left well show a large area of bright fluorescence, manifesting His-CsgA-SpyCatcher-Histag mutant secreted biofilms under the control of inducer and Histags on it is not blocked by SpyCatcher protein. What is more, it is firmly attached with inorganic materials (i.e.quantum dots) through the ligand. From this assay, we assure that the SpyCatcher will not impose negative effect on the binding between nanomaterial and biofilm. The picture was snapped by ChemiDoc MP, BioRad, false colored.</p><p></p></div> </div>
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After applying the same steps as introduced above, the bottom of left well show a large area of bright fluorescence, manifesting His-CsgA-SpyCatcher-Histag mutant secreted biofilms under the control of inducer and Histags on it is not blocked by SpyCatcher protein. What is more, it is firmly attached with inorganic materials (i.e.quantum dots) through the ligand. From this assay, we assure that the SpyCatcher will not impose negative effect on the binding between nanomaterial and biofilm. The picture was snapped by ChemiDoc MP, BioRad, false colored.</p><p></p></div>  
<div class="col-lg-12"><b  class="tc">His-CsgA-SpyCatcher</b><p></p><div class="col-lg-7">
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<div class="col-lg-12"><b  class="tc">His-CsgA-SpyCatcher</b><p></p></div><div class="col-lg-7">
 
Using the same approach, we also conducted binding assay of His-CsgA-SpyCatcher with QDs to characterize the expression of biofilm and  the visual result shows vividly that His-CsgA-SpyCatcher can bind successfully with the QDs with the existence of inducer aTc, which shows the functional similarity in CsgA-Histag. The picture was snapped by BioRad ChemiDoc MP, false colored.<p></p></div>
 
Using the same approach, we also conducted binding assay of His-CsgA-SpyCatcher with QDs to characterize the expression of biofilm and  the visual result shows vividly that His-CsgA-SpyCatcher can bind successfully with the QDs with the existence of inducer aTc, which shows the functional similarity in CsgA-Histag. The picture was snapped by BioRad ChemiDoc MP, false colored.<p></p></div>
 
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Revision as of 22:02, 19 October 2016

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