Team:USTC CHINA/Project/Background
From 2013.igem.org
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<img src="https://static.igem.org/mediawiki/2013/3/31/USTC_CHINA_advantages_T-vaccine.png" width="600" height="600" /> | <img src="https://static.igem.org/mediawiki/2013/3/31/USTC_CHINA_advantages_T-vaccine.png" width="600" height="600" /> | ||
- | <p align="justify"> | + | <p align="justify">The key to the problems is to make a change in drug delivery methods and create an in situ expression system based on synthetic biology.<p> |
<h2>Design of project<h2> | <h2>Design of project<h2> | ||
<p align="justify"> This year, our project focused on a revolutionary vaccine delivery. We chose bacillus subtilis as chassis to establish a transdermal vaccine fresh secreting band-aid which consists of four engineering b.subtilis, each of them carries a gene circuit independently. By using an excellent transdermal peptide TD1, three of them could express a serious of fusion proteins(antigen, 2 kinds of adjuvants) which could penetrating the skin and work as traditional vaccine molecule. The fourth type of them is our “reporter” which could notify users whether the band-aid works well and when they could stick or tear off the patch. Moreover we designed a reliable suicide system in bacillus subtilis for the very first time in iGEM. Innovative and incredible, we plan to create a world without needle.<p> | <p align="justify"> This year, our project focused on a revolutionary vaccine delivery. We chose bacillus subtilis as chassis to establish a transdermal vaccine fresh secreting band-aid which consists of four engineering b.subtilis, each of them carries a gene circuit independently. By using an excellent transdermal peptide TD1, three of them could express a serious of fusion proteins(antigen, 2 kinds of adjuvants) which could penetrating the skin and work as traditional vaccine molecule. The fourth type of them is our “reporter” which could notify users whether the band-aid works well and when they could stick or tear off the patch. Moreover we designed a reliable suicide system in bacillus subtilis for the very first time in iGEM. Innovative and incredible, we plan to create a world without needle.<p> | ||
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Filamentous Phage <br> | Filamentous Phage <br> | ||
<img src="https://static.igem.org/mediawiki/2013/8/81/%E4%B8%9D%E7%8A%B6%E5%99%AC%E8%8F%8C%E4%BD%93.png" width="580" height="500" /> | <img src="https://static.igem.org/mediawiki/2013/8/81/%E4%B8%9D%E7%8A%B6%E5%99%AC%E8%8F%8C%E4%BD%93.png" width="580" height="500" /> | ||
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eGFP Transdermal<br> | eGFP Transdermal<br> | ||
<img src="https://static.igem.org/mediawiki/2013/f/f6/Time_-GFP.png" width="580" height="500" /> | <img src="https://static.igem.org/mediawiki/2013/f/f6/Time_-GFP.png" width="580" height="500" /> |
Revision as of 20:31, 27 September 2013