Team:London BioHackspace/Project

From 2014.igem.org

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<h2>Overview</h2>
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<p>The London Biohackspace is a non-profit community biology lab where a diverse group of experts and newcomers alike create inventive projects. Our 2014 iGEM project is JuicyPrint, a 3D printer that is fed with fruit juice to print on demand 3D structures of bacterial cellulose. JuicyPrint has diverse uses across fields ranging from tissue engineering to textile design and experimental arts.</p>
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<p>JuicyPrint relies on a strain of the extra-cellular cellulose producing bacteria, Gluconacetobacter hansenii. The engineered strain is light sensitive, and grows on easily obtainable fruit juice. Our project uses Cph8 to insert a light dependent transcription regulation pathway into G.hansenii to control the transcription of dgc1, a gene necessary for the production of extracellular cellulose in <em>G. Hansenii</em>.</p>  
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<h1 >WELCOME TO iGEM 2014! </h1>
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<p>Your team has been approved and you are ready to start the iGEM season!
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<br>On this page you can document your project, introduce your team members, document your progress <br> and share your iGEM experience with the rest of the world! </p>
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<p style="color:#E7E7E7"> <a href="https://2014.igem.org/wiki/index.php?title=Team:London_BioHackspace/Project&action=edit"style="color:#FFFFFF"> Click here  to edit this page!</a> </p>
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<a href="https://2014.igem.org/Team:London_BioHackspace"style="color:#000000">Home </a> </td>
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<a href="https://2014.igem.org/Team:London_BioHackspace/Team"style="color:#000000"> Team </a> </td>
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<a href="https://igem.org/Team.cgi?year=2014&team_name=London_BioHackspace"style="color:#000000"> Official Team Profile </a></td>
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<a href="https://2014.igem.org/Team:London_BioHackspace/Project"style="color:#000000"> Project</a></td>
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<a href="https://2014.igem.org/Team:London_BioHackspace/Modeling"style="color:#000000"> Modeling</a></td>
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<a href="https://2014.igem.org/Team:London_BioHackspace/Attributions"style="color:#000000"> Attributions </a></td>
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<td align ="center"> <a href="https://2014.igem.org/Main_Page"> <img src="https://static.igem.org/mediawiki/igem.org/6/60/Igemlogo_300px.png" width="55px"></a> </td>
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<p>Tell us more about your project.  Give us background.  Use this as the abstract of your project.  Be descriptive but concise (1-2 paragraphs) </p>
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<h3>References </h3>
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iGEM teams are encouraged to record references you use during the course of your research. They should be posted somewhere on your wiki so that judges and other visitors can see how you though about your project and what works inspired you. </p>
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<p> You can use these subtopics to further explain your project</p>
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<h2><a href="https://2014.igem.org/Team:London_BioHackspace/Project_Background">Background</a></h2>
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<li>Overall project summary</li>
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<li>Project Details</li>
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<li>Materials and Methods</li>
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<li>The Experiments</li>
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<li>Conclusions</li>
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<h2><a href="https://2014.igem.org/Team:London_BioHackspace/Printer_Hardware">Printer Hardware</a></h2>
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It's important for teams to describe all the creativity that goes into an iGEM project, along with all the great ideas your team will come up with over the course of your work.  
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<h2><a href="https://2014.igem.org/Team:London_BioHackspace/Culturing_G_Hansenii">Culturing <em>G. Hansenii</em></a></h2>
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It's also important to clearly describe your achievements so that judges will know what you tried to do and where you succeeded. Please write your project page such that what you achieved is easy to distinguish from what you attempted.  
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<h2><a href="https://2014.igem.org/Team:London_BioHackspace/Parts">Parts</a></h2>
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<h2><a href="https://2014.igem.org/Team:London_BioHackspace/Applications_scaffolds">Applications: 3D Printed Culture Scaffolds</a></h2>
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<h2><a href="https://2014.igem.org/Team:London_BioHackspace/Art_and_Design">Applications: Art & Design</a></h2>
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Latest revision as of 03:04, 18 October 2014


Home Project Team Policy & Practice Protocols Safety

Overview

The London Biohackspace is a non-profit community biology lab where a diverse group of experts and newcomers alike create inventive projects. Our 2014 iGEM project is JuicyPrint, a 3D printer that is fed with fruit juice to print on demand 3D structures of bacterial cellulose. JuicyPrint has diverse uses across fields ranging from tissue engineering to textile design and experimental arts.

JuicyPrint relies on a strain of the extra-cellular cellulose producing bacteria, Gluconacetobacter hansenii. The engineered strain is light sensitive, and grows on easily obtainable fruit juice. Our project uses Cph8 to insert a light dependent transcription regulation pathway into G.hansenii to control the transcription of dgc1, a gene necessary for the production of extracellular cellulose in G. Hansenii.

Background

Printer Hardware

Culturing G. Hansenii

Parts

Applications: 3D Printed Culture Scaffolds

Applications: Art & Design