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− | <div class="contentDiv" id="text40"><p class="segment2"><br>A tool to detect potentially harmful encrypted sequences</p> | + | <div class="contentDiv" id="text40"><p class="segment2"><br>A <a href"https://2017.igem.org/Team:Lethbridge/Software" >tool</a> to detect potentially harmful encrypted sequences</p> |
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− | <div class="contentDiv" id="text40"><p class="segment2">A safe synthetic biology teaching tool<br><br>Simplified protocols<br><br>Curriculum aligned lesson plans</p> | + | <div class="contentDiv" id="text40"><p class="segment2">A safe synthetic biology <a href="https://2017.igem.org/Team:Lethbridge/HP/Gold_Integrated" >teaching</a> tool<br><br>Simplified protocols<br><br>Curriculum aligned lesson plans</p> |
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Revision as of 23:35, 28 October 2017
Cell-free Synthetic Biology
for the Masses
Why Cell-free?
Cell-free systems include all the necessary biomachinery to produce proteins outside of a living cell
Due to their inherent safety and simplicity, cell-free systems provide a powerful tool to synthetic biologists for engineering novel systems without the constraints of cellular life
Motivation
A lack of standardization, simplification and flexibility has limited the application of cell-free systems, including its use within the education system and Do-It-Yourself (DIY) community
Design
Lowering the barrier to synthetic biology, our project aims to create a STANDARD, SAFE, MODULAR and USER-FRIENDLY cell-free system
Our System
A collection of standard parts for essential TX-TL components
Streamline and novel purification techniques
A tool to create an orthogonal system
A tool to detect potentially harmful encrypted sequences
A safe synthetic biology teaching tool
Simplified protocols
Curriculum aligned lesson plans