Difference between revisions of "Team:Warwick"

 
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             <a href="https://2016.igem.org/Team:Warwick">Home</a>
 
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             <article>
 
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                 <h3>CRISPR/Cas9<br /> biosensor.</h3>
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                 <h3>CRISPR/Cas9<br /> Biosensor.</h3>
 
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               <p>Using a dCas9 protein and an RNA-binding protein (RBP) fused to an effector, transcription of a fluorescent reporter gene can be regulated, with a significant colour change indicating the presence of targeted RNA.</p>
 
               <p>Using a dCas9 protein and an RNA-binding protein (RBP) fused to an effector, transcription of a fluorescent reporter gene can be regulated, with a significant colour change indicating the presence of targeted RNA.</p>
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                 <h3>Leptospirosis impact and diagnosis.</h3>
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                 <h3>Leptospirosis Impact and Diagnosis.</h3>
 
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               <p>Our project will enable diagnosis of the disease at an early stage, increasing the likelihood of successful treatment and reducing the risk of irreversible bodily damage.</p>
 
               <p>Our project will enable diagnosis of the disease at an early stage, increasing the likelihood of successful treatment and reducing the risk of irreversible bodily damage.</p>
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               <p>Our team has developed a system capable of detecting these ions in water sources, potentially improving the quality of human life on a global scale, in an inexpensive easily accessible manner.</p>
 
               <p>Our team has developed a system capable of detecting these ions in water sources, potentially improving the quality of human life on a global scale, in an inexpensive easily accessible manner.</p>
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                   &copy; Warwick iGem 2016.
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                   &copy; Warwick iGEM 2016.
 
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                <p>We thankfully acknowledge generous funding support from our sponsors below.</p>
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Latest revision as of 02:26, 20 October 2016

iGEM Warwick 2016 - Home

CRISPR/Cas9
Biosensor.

Using a dCas9 protein and an RNA-binding protein (RBP) fused to an effector, transcription of a fluorescent reporter gene can be regulated, with a significant colour change indicating the presence of targeted RNA.

Leptospirosis Impact and Diagnosis.

Our project will enable diagnosis of the disease at an early stage, increasing the likelihood of successful treatment and reducing the risk of irreversible bodily damage.

Pollutant Detection: Heavy Metal Ions.

Our team has developed a system capable of detecting these ions in water sources, potentially improving the quality of human life on a global scale, in an inexpensive easily accessible manner.