Team:USTC CHINA/Project/Overview
From 2013.igem.org
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<div class="atfigure" align="center" style="width:400px;font-size:14px;">Fig2. block-based design </div></div> | <div class="atfigure" align="center" style="width:400px;font-size:14px;">Fig2. block-based design </div></div> | ||
<p>With an excellent transdermal peptide TD1, three of the engineering B.subtilis could express a series of fusion proteins (the antigen and 2 kinds of adjuvants) which could penetrate the skin and work as traditional vaccine molecules. The fourth bacteria are our “reporter” which would notify users when the band-aid is working well and the patch can be pasted or tore off. Moreover, we designed a reliable suicide system in Bacillus subtilis to prevent it from spreading for the very first time in iGEM.</p> | <p>With an excellent transdermal peptide TD1, three of the engineering B.subtilis could express a series of fusion proteins (the antigen and 2 kinds of adjuvants) which could penetrate the skin and work as traditional vaccine molecules. The fourth bacteria are our “reporter” which would notify users when the band-aid is working well and the patch can be pasted or tore off. Moreover, we designed a reliable suicide system in Bacillus subtilis to prevent it from spreading for the very first time in iGEM.</p> | ||
- | <p>T-vaccine | + | <p>T-vaccine has great advantages in transportation which can be stored from minus 20 to 60 Celsius. With T-vaccine, we can reach every remote corner of the world and help eliminate contagions from our world. Also it is proven that transdermal vaccine is an efficient and effective way for a variety of pathogens such as: tuberculosis, anthrax, hepatitis B and so on. Last but not least, we have created a world free from needles. Given all these advantages, T-vaccine is expected to be a promising vaccine research and development direction.</p> |
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Revision as of 14:49, 27 September 2013