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| + | <a href="https://static.igem.org/mediawiki/2010/d/dc/Fromabove.JPG" class="thickbox" title="The team. Not pictured, Crystal McKenzie, Arvind Thiagarajan, Lauren McGough, Jason Stevens."><img src="https://static.igem.org/mediawiki/2010/d/dc/Fromabove.JPG" width=100%></a>The 2010 MIT iGEM team. We are biological engineers, physicists, electrical engineers, chemical engineers, mathematicians, and computer scientists. |
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| + | <table width=650px style="background-color: white; height: 700 px; margin-top:5px; padding: 10px;"><tr><td><div class="bodybaby">Programmable, Self-constructing Biomaterials</div></td> |
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| + | <tr><td><br>The 2010 MIT iGEM team focused on the control and production of self-constructing and self-repairing living biomaterials through both bacterial and mammalian engineering. We ventured to set up the framework for material formation in both types of cells, for future applications in living, self-repairing materials and in vitro organogenesis respectively. |
| + | <div style="display:inline;"<a href="https://static.igem.org/mediawiki/2010/0/0b/Screen_shot_2010-10-24_at_10.25.02_AM.png" class="thickbox" title="Pretty materials. Ours are programmable."><img style="float: right; padding: 10px" src="https://static.igem.org/mediawiki/2010/0/0b/Screen_shot_2010-10-24_at_10.25.02_AM.png" height=147px></a></div> |
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| + | We have accomplished far beyond what we expected of ourselves! In addition to our project, we have created a new Mammalian Biobrick standard, contributed original parts for mammalian cells and bacteriophage, and we have biobricked two working toggles for the registry. |
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![](https://static.igem.org/mediawiki/2010/d/dc/Fromabove.JPG)
The 2010 MIT iGEM team. We are biological engineers, physicists, electrical engineers, chemical engineers, mathematicians, and computer scientists.
Programmable, Self-constructing Biomaterials |
The 2010 MIT iGEM team focused on the control and production of self-constructing and self-repairing living biomaterials through both bacterial and mammalian engineering. We ventured to set up the framework for material formation in both types of cells, for future applications in living, self-repairing materials and in vitro organogenesis respectively.
We have accomplished far beyond what we expected of ourselves! In addition to our project, we have created a new Mammalian Biobrick standard, contributed original parts for mammalian cells and bacteriophage, and we have biobricked two working toggles for the registry.
|