Difference between revisions of "Team:Munich"

 
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<style>
 
<style>
 
body {line-height: initial;}
 
body {line-height: initial;}
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h1, h2,h3 {
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color: #51a7f9 !important;
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text-align: center !important;
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}
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* {margin: 0; padding: 0;}
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.slider{
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width: 900px; /*Same as width of the large image*/
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position: relative;
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/*Instead of height we will use padding*/
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padding-top: 600px; /*That helps bring the labels down*/
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/*Lets add a shadow*/
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}
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/*Last thing remaining is to add transitions*/
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.slider>img{
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position: absolute;
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left: 0; top: 0;
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transition: all 0.5s;
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}
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display: none;
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margin: 30px 0 0 18px;
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float: left;
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transition: all 0.5s;
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display: block;
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border-color: #666;
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opacity: 1;
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}
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/*Clicking any thumbnail now should change its opacity(style)*/
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/*Time to work on the main images*/
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.slider input[name='slide_switch'] ~ img {
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opacity: 0;
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transform: scale(1.1);
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}
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/*That hides all main images at a 110% size
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On click the images will be displayed at normal size to complete the effect
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*/
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.slider input[name='slide_switch']:checked+label+img {
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opacity: 1;
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transform: scale(1);
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}
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/*Clicking on any thumbnail now should activate the image related to it*/
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/*We are done :)*/
 
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</head></html>
 
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</video>
 
</video>
 
<table width="900" border=0 cellspacing=0 cellpadding=10>
 
<table width="900" border=0 cellspacing=0 cellpadding=10>
<tr><td colspan=2 align=left valign=center>
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<tr>
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<td width=160></td>
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<td width=160></td>
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<td width=160></td>
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<td width=160></td>
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<td width=160></td>
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<td width=160></td>
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</tr>
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<tr><td colspan=6 align=left valign=center>
 
<font size=7 ><b style="color: #51a7f9">Abstract</b></font>
 
<font size=7 ><b style="color: #51a7f9">Abstract</b></font>
 
</td></tr>
 
</td></tr>
<tr><td align=center valign=center>
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<tr><td align=center valign=center colspan=6>
 
<p style="text-align:justify">
 
<p style="text-align:justify">
 
<font size=3 color=#444444>
 
<font size=3 color=#444444>
The ongoing crisis of increasing antibiotic resistance demands innovative preventive strategies. Recently, the RNA-targeting protein CRISPR-Cas13a has been used for highly sensitive DNA and RNA detection, promising diverse applications in point-of-care diagnostics. We integrated Cas13a in the detection unit of CascAID, our GMO-free diagnostic platform. CascAID combines an automated microfluidic device for rapid lysis and extraction of nucleic acids with a paper-based readout system. We demonstrated the performance of our device by targeting the 16S RNA from E. coli. We improved the detection limit of our platform, using simulations to optimize our amplification scheme and the final readout.  
+
The ongoing crisis of increasing antibiotic resistance demands innovative preventive strategies. Recently, the RNA-targeting protein CRISPR-Cas13a has been used for highly sensitive DNA and RNA detection, promising diverse applications in point-of-care diagnostics. We integrated Cas13a in the detection unit of CascAID, our GMO-free diagnostic platform. CascAID combines an automated microfluidic device for rapid lysis and extraction of nucleic acids with a paper-based readout system. We demonstrated the performance of our device by targeting the 16S rRNA from <i>E. coli</i>. We improved the detection limit of our platform, using simulations to optimize our amplification scheme and the final readout.  
 
</font>
 
</font>
 
</p>
 
</p>
</font>
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<p style="text-align:justify; margin-bottom: 50px">
</td><td align=center valign=center>
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<img src="https://static.igem.org/mediawiki/2017/a/af/T--Munich--Logo_Final.svg" width="420">
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</td></tr>
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<tr><td align=center valign=center>
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<p style="text-align:justify">
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<font size=3 color=#444444>
 
<font size=3 color=#444444>
 
Conceived as a distributable platform for rapid point-of-care diagnostics, CascAID can be used to distinguish between bacterial and viral infections, thus minimizing the widespread use of antibiotics.
 
Conceived as a distributable platform for rapid point-of-care diagnostics, CascAID can be used to distinguish between bacterial and viral infections, thus minimizing the widespread use of antibiotics.
</font>
 
</p>
 
</td><td align=center valign=center>
 
<p style="text-align:justify">
 
<font size=3 color=#444444>
 
 
Furthermore, Cas13a allows the fast design of target sequences, making our system adaptive to the emergence of new viral outbreaks or fast mutating pathogens.
 
Furthermore, Cas13a allows the fast design of target sequences, making our system adaptive to the emergence of new viral outbreaks or fast mutating pathogens.
 
</font>
 
</font>
 
</p>
 
</p>
 
</td></tr>
 
</td></tr>
<tr><td class="no-padding" colspan=2 align=right valign=center height=10>
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<tr><td colspan=6 align=middle valign=center>
<font size=2>| The iGEM Munich 2017 Team | 2017.07.13 |</font><br><br><br><center><hr></center>
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<font size=10 ><b style="color: #51a7f9; font-size: 60px; margin-top: 20px">Awards & Achievements</b></font>
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</td></tr>
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<tr>
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<td colspan=6>
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<img src="https://static.igem.org/mediawiki/2017/e/e5/T--Munich--Banner_Awards.jpg" width=900>
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</td>
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</tr>
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<tr>
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<td align=center valign=center colspan=3>
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<div class="captionPicture">
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<h1>First Runner-up</h1>
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</div>
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</td>
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<td align=center valign=center colspan=3>
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<div class="captionPicture">
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<h1>Best Diagnostics Project</h1>
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</div>
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</td>
 +
</tr>
 +
 
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<tr>
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<td align=center valign=center colspan=3>
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<div class="captionPicture">
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<h2>Best Model</h2>
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</div>
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</td>
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<td align=center valign=center colspan=3>
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<div class="captionPicture">
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<h2>Best Applied Design</h2>
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</div>
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</td>
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</tr>
 +
 
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<tr>
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<td align=center valign=center colspan=3>
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<div class="captionPicture">
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<h2>Best Hardware</h2>
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</div>
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</td>
 +
<td align=center valign=center colspan=3>
 +
<div class="captionPicture">
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<h2>Best Software</h2>
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</div>
 +
</td>
 +
</tr>
 +
 
 +
 
 +
<tr>
 +
<td align=center valign=center colspan=2>
 +
<h3>Nominated for Best Wiki</h3>
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</td>
 +
<td align=center valign=center colspan=2>
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<h3>Nominated for Best Presentation</h3>
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</td>
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<td align=center valign=center colspan=2>
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<h3>Nominated for Best Poster</h3>
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</td>
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</tr>
 +
 
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<tr>
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<td align=center valign=center colspan=2>
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<h3>Nominated for Best Integrated Human Practices</h3>
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</td>
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<td align=center valign=center colspan=2>
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<h3>Nominated for Best Education & Public Engagement</h3>
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</td>
 +
<td align=center valign=center colspan=2>
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<h3>Nominated for Best Measurement</h3>
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</td>
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</tr>
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<tr>
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<td align=center valign=center colspan=1></td>
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<td align=center valign=center colspan=2>
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<h3 style="margin-bottom: 50px">Nominated for Best Composite Part</h3>
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</td>
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<td align=center valign=center colspan=2>
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<h3 style="margin-bottom: 50px">Nominated for Best Part Collection</h3>
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</td>
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<td align=center valign=center colspan=1></td>
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</tr>
 +
 
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<tr><td colspan=6 align=middle valign=center>
 +
<font size=10 ><b style="color: #51a7f9; font-size: 60px; margin-top: 20px">Gallery</b></font>
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</td></tr>
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<tr> <td colspan=6 align=middle valing=center>
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<!--
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We will make a slider with stylized thumbnails using CSS3
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The markup is very simple:
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Radio Inputs
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Labels with thumbnails to detect click event
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Main Image
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-->
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<div class="slider">
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<input type="radio" name="slide_switch" id="id3" checked="checked"/>
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<label for="id3">
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<img src="https://static.igem.org/mediawiki/2017/9/99/T--Munich--Review2017_77.jpeg" width="100"/>
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</label>
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<img src="https://static.igem.org/mediawiki/2017/9/99/T--Munich--Review2017_77.jpeg" width=900/>
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<!--Lets show the second image by default on page load-->
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<input type="radio" name="slide_switch" id="id2" />
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<label for="id2">
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<img src="https://static.igem.org/mediawiki/2017/d/dd/T--Munich--Review2017_14.jpeg" width="100"/>
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</label>
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<img src="https://static.igem.org/mediawiki/2017/d/dd/T--Munich--Review2017_14.jpeg" width=900/>
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<input type="radio" name="slide_switch" id="id1"/>
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<label for="id1">
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<img src="https://static.igem.org/mediawiki/2017/b/b8/T--Munich--Review2017_5.jpeg" width="100"/>
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</label>
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<img src="https://static.igem.org/mediawiki/2017/b/b8/T--Munich--Review2017_5.jpeg" width= 900/>
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<input type="radio" name="slide_switch" id="id4"/>
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<label for="id4">
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<img src="https://static.igem.org/mediawiki/2017/f/f0/T--Munich--Review2017_21.jpeg" width="100"/>
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<img src="https://static.igem.org/mediawiki/2017/f/f0/T--Munich--Review2017_21.jpeg" width=900/>
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<input type="radio" name="slide_switch" id="id5"/>
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<label for="id5">
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<img src="https://static.igem.org/mediawiki/2017/0/09/T--Munich--Review2017_4.jpeg" width="100"/>
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</label>
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<img src="https://static.igem.org/mediawiki/2017/0/09/T--Munich--Review2017_4.jpeg" width=900/>
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<input type="radio" name="slide_switch" id="id6"/>
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<label for="id6">
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<img src="https://static.igem.org/mediawiki/2017/f/f9/T--Munich--Review2017_13.jpeg" width="100"/>
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</label>
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<img src="https://static.igem.org/mediawiki/2017/f/f9/T--Munich--Review2017_13.jpeg" width=900/>
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<input type="radio" name="slide_switch" id="id7"/>
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<label for="id7">
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<img src="https://static.igem.org/mediawiki/2017/6/60/T--Munich--Review2017_17.jpeg" width="100"/>
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</label>
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<img src="https://static.igem.org/mediawiki/2017/6/60/T--Munich--Review2017_17.jpeg" width=900/>
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</div>
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</td>
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</tr>
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<tr>
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<td colspan=6>
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<h3> <a style="color: #51a7f9 !important" href="/Team:Munich/Gallery">See the rest of our gallery...</a></h3>
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</td>
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</tr>
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<tr><td class="no-padding" colspan=6 align=right valign=center height=10>
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<br><br><br><center><hr></center>
 
</td></tr>
 
</td></tr>
 
</table>
 
</table>

Latest revision as of 20:49, 15 December 2017


Abstract

The ongoing crisis of increasing antibiotic resistance demands innovative preventive strategies. Recently, the RNA-targeting protein CRISPR-Cas13a has been used for highly sensitive DNA and RNA detection, promising diverse applications in point-of-care diagnostics. We integrated Cas13a in the detection unit of CascAID, our GMO-free diagnostic platform. CascAID combines an automated microfluidic device for rapid lysis and extraction of nucleic acids with a paper-based readout system. We demonstrated the performance of our device by targeting the 16S rRNA from E. coli. We improved the detection limit of our platform, using simulations to optimize our amplification scheme and the final readout.

Conceived as a distributable platform for rapid point-of-care diagnostics, CascAID can be used to distinguish between bacterial and viral infections, thus minimizing the widespread use of antibiotics. Furthermore, Cas13a allows the fast design of target sequences, making our system adaptive to the emergence of new viral outbreaks or fast mutating pathogens.

Awards & Achievements

First Runner-up

Best Diagnostics Project

Best Model

Best Applied Design

Best Hardware

Best Software

Nominated for Best Wiki

Nominated for Best Presentation

Nominated for Best Poster

Nominated for Best Integrated Human Practices

Nominated for Best Education & Public Engagement

Nominated for Best Measurement

Nominated for Best Composite Part

Nominated for Best Part Collection

Gallery

See the rest of our gallery...