Difference between revisions of "Team:IISER-Pune-India"

 
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{{IISER-Pune-India}}
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<div class="title">Introduction</div>
<a href="http://www.iiserpune.ac.in/"><img src="https://static.igem.org/mediawiki/2017/6/66/IISER_PUNE_IISER_logo.png" width=150px alt="IISER Pune" align="left"></a>
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<p class="style1">So in case you were wondering what this is all about . . .</p>
<a href="https://2015.igem.org/wiki/index.php?title=Team:IISER_Pune"><img src="https://static.igem.org/mediawiki/2017/6/60/T--IISER-Pune-India--Old_Team_Logo.gif" width=200px alt="2015 Team Wiki" align="right"></a>
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TB, or not TB?
<h2>  Welcome to iGEM 2017 IISER Pune India Wiki </h2>
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<br class="mobile-hide" />
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is a project by team IISER Pune India
<h1> TB or not TB</h1>
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<p class="style3">The project we wish to present at iGEM 2017, called
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<strong>'TB, or not TB?'</strong> addresses the growing need for
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<strong>faster</strong> and
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<strong>cost-friendly</strong> detection of the tuberculosis bacteria,
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<i>
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<strong>Mycobacterium tuberculosis</strong>
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</i>. It aims at developing a novel technique for TB diagnosis, which we hope will be
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<strong>faster</strong>,
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<strong>cheaper</strong> and
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<strong>more reliable</strong> than the methods that are currently in use. We plan to do so with the help of the following three modules:
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<strong>Hijack module</strong>,
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<strong>Detection module</strong> and
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<strong>Termination module</strong>. The idea is to make the above modules function in E.coli as a proof of principle and replicate the same in
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<i>M. Tuberculosis</i> later.
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</p>
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<video poster="https://static.igem.org/mediawiki/2017/1/15/T--IISER-Pune-India--vid_poster.png" controls>
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<a href="https://2017.igem.org/Team:IISER-Pune-India/Description" class="button style3 big">Know More!</a>
<h3>Check this page for more updates regarding IISER-Pune 2017 iGEM Team.</h3>
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<div class="title">Features</div>
<h4>Follow us on:<h4>
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<a href="https://www.facebook.com/igemiiserpune?fref=ts"><img src="https://static.igem.org/mediawiki/2017/8/84/T--IISER-Pune-India--fb.png" width=25px align = "center"></a>
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<a href="https://twitter.com/Iiserpune_igem"><img src="https://static.igem.org/mediawiki/2017/b/b9/T--IISER-Pune-India--tw.png" width=25px align = "center"></a>
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<h3 class="icon fa-inr">Cheap</h3>
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<p>This genetically engineered diagnostic tool uses a bacterial plamid and a phage delivery system which can be easily produced in large numbers. The prototype is made out of plastic.  </p>
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<div class="6u 12u(mobile)">
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<h3 class="icon fa-fighter-jet">Fast</h3>
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<p>Hijack module ensures faster growth of  <i>Mycobacterium tuberculosis</i> which indeed would result in quick diagnosis. This is done with the help of a synthetic genetic oscillator.</p>
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</section>
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<h3 class="icon fa-chain">Reliable</h3>
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<p>Delivery of constructs through phage ensures accurate detection</p> </section>
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<section>
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<h3 class="icon fa-lock">Safe</h3>
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<p> Safety module is incorporated into the design which would ensure that the superbug does not escape into the wild.
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</p>
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</section>
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<ul class="actions actions-centered">
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<a href="https://2017.igem.org/Team:IISER-Pune-India/Description" class="button style2 big">Know More!</a>
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{{IISER-Pune-India/footer}}

Latest revision as of 01:18, 16 December 2017

Introduction

So in case you were wondering what this is all about . . .

TB, or not TB?
is a project by team IISER Pune India

The project we wish to present at iGEM 2017, called 'TB, or not TB?' addresses the growing need for faster and cost-friendly detection of the tuberculosis bacteria, Mycobacterium tuberculosis . It aims at developing a novel technique for TB diagnosis, which we hope will be faster, cheaper and more reliable than the methods that are currently in use. We plan to do so with the help of the following three modules: Hijack module, Detection module and Termination module. The idea is to make the above modules function in E.coli as a proof of principle and replicate the same in M. Tuberculosis later.

Features

Cheap

This genetically engineered diagnostic tool uses a bacterial plamid and a phage delivery system which can be easily produced in large numbers. The prototype is made out of plastic.

Fast

Hijack module ensures faster growth of Mycobacterium tuberculosis which indeed would result in quick diagnosis. This is done with the help of a synthetic genetic oscillator.

Reliable

Delivery of constructs through phage ensures accurate detection

Safe

Safety module is incorporated into the design which would ensure that the superbug does not escape into the wild.