Team:Harvard BioDesign

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<h1> Harvard BioDesign presents ….  </h1>
 
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<a href="https://2014.igem.org/Team:Harvard_BioDesign"style="color:#000000">Home </a> </td>
<a href="https://2014.igem.org/Team:Harvard_BioDesign"style="color:#000000">Home </a> </td>
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<a href="https://2014.igem.org/Team:Harvard_BioDesign/Team"style="color:#000000"> Team </a> </td>
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<a href="https://igem.org/Team.cgi?year=2014&team_name=Harvard_BioDesign"style="color:#000000"> Official Team Profile </a></td>
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<a href="https://2014.igem.org/Team:Harvard_BioDesign/Project"style="color:#000000"> Project</a></td>
<a href="https://2014.igem.org/Team:Harvard_BioDesign/Project"style="color:#000000"> Project</a></td>
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<a href="https://2014.igem.org/Team:Harvard_BioDesign/Parts"style="color:#000000"> Parts</a></td>
<a href="https://2014.igem.org/Team:Harvard_BioDesign/Parts"style="color:#000000"> Parts</a></td>
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<a href="https://2014.igem.org/Team:Harvard_BioDesign/Modeling"style="color:#000000"> Modeling</a></td>
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<a href="https://2014.igem.org/Team:Harvard_BioDesign/Notebook"style="color:#000000"> Notebook</a></td>
<a href="https://2014.igem.org/Team:Harvard_BioDesign/Notebook"style="color:#000000"> Notebook</a></td>
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<a href="https://2014.igem.org/Team:Harvard_BioDesign/Safety"style=" color:#000000"> Safety </a></td>
<a href="https://2014.igem.org/Team:Harvard_BioDesign/Safety"style=" color:#000000"> Safety </a></td>
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<a href="https://2014.igem.org/Team:Harvard_BioDesign/Attributions"style="color:#000000"> Attributions </a></td>
<a href="https://2014.igem.org/Team:Harvard_BioDesign/Attributions"style="color:#000000"> Attributions </a></td>
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<tr><td colspan="3" width = "30%"> <h3> Currently </h3></td><td colspan="3" width = "30%"> <h3> Our System </h3></td><td colspan="3" width = "30%"> <h3> Our Vision </h3></td></tr>
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Natural cellular mechanisms are co-opted by synthetic biologists for use in biological sensors. Typical reporters such as GFP are only detectable inside living cells and used to gather information in the laboratory environment.  
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<p> Please be sure to keep these links, your audience will want to find your: </p>
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<li><a href="https://2014.igem.org/Team:Harvard_BioDesign">Home</a> </li>
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<li><a href="https://2014.igem.org/Team:Harvard_BioDesign/Team">Team</a> </li>
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Our system encodes sensing information into the amyloid protein curli within bacterial biofilms. Unlike common reporter proteins, curli fibers are highly resistant to degradation and can survive extreme pH and temperature changes extracellularly. Applying chromoproteins engineered to bind specifically to corresponding curli units, information is easily displayed.
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Biological sensing can be applied outside of the laboratory settings with information that is robust and can be easily read in a biomaterial with functional potential.  
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<p>We are currently working on providing teams with some easy to use design templates.
 
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<br> In the meantime you can also view other team wikis for inspiration! Here are some very good examples</p>
 
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<li> <a href="https://2013.igem.org/Team:SDU-Denmark/"> 2013 SDU Denmark </a> </li>
 
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<li> <a href="https://2013.igem.org/Team:SYSU-China">2013 SYSU China</a> </li>
 
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<li> <a href="https://2013.igem.org/Team:Colombia_Uniandes">2013 Colombia Unianades </a></li>
 
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<a href="https://2014.igem.org/wiki/index.php?title=Team:Harvard_BioDesign&action=edit"style="color:#C610F4"> Click here  to edit this page!</a>
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Latest revision as of 01:43, 18 October 2014


Home Team Project Parts Notebook Safety Attributions

Currently

Our System

Our Vision

Natural cellular mechanisms are co-opted by synthetic biologists for use in biological sensors. Typical reporters such as GFP are only detectable inside living cells and used to gather information in the laboratory environment.



Our system encodes sensing information into the amyloid protein curli within bacterial biofilms. Unlike common reporter proteins, curli fibers are highly resistant to degradation and can survive extreme pH and temperature changes extracellularly. Applying chromoproteins engineered to bind specifically to corresponding curli units, information is easily displayed.

Biological sensing can be applied outside of the laboratory settings with information that is robust and can be easily read in a biomaterial with functional potential.