Difference between revisions of "Team:Newcastle/Results Jack"

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     <h1 style="font-weight:normal; font-family: Rubik; margin: 0">Our Experimental Results</h1>
 
     <h1 style="font-weight:normal; font-family: Rubik; margin: 0">Our Experimental Results</h1>
  
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       <h1 class="display-3">Key Achievements</h1>
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       <h1 class="display-3" style="color: #e8e8e8">Key Achievements</h1>
       <p class="lead">A condensed list of our most notable results</p>
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       <p class="lead" style="color: #e8e8e8">A condensed list of our most notable results</p>
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         <li>Designed a novel framework for biosensor development</li>
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         <li style="font-family: Rubik">Designed a novel framework for biosensor development</li>
         <li>Proved that multicellular biosensors are able to co-ordinate responses to input molecules through a proof-of-concept IPTG responsive biosensor</li>
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         <li style="font-family: Rubik">Proved that multicellular biosensors are able to co-ordinate responses to input molecules through a proof-of-concept IPTG responsive biosensor</li>
         <li>Successful characterisation of a transpose-based “stand-by switch” capable of producing eforRed in the “OFF” state, and C4 AHL in the “ON” state</li>
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         <li style="font-family: Rubik">Successful characterisation of a transpose-based “stand-by switch” capable of producing eforRed in the “OFF” state, and C4 AHL in the “ON” state</li>
         <li>Used a Design of Experiments approach to successfully optimise a cell-free system</li>
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         <li style="font-family: Rubik">Used a Design of Experiments approach to successfully optimise a cell-free system</li>
         <li>Improved the BLANK plasmid for promoter screening</li>
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         <li style="font-family: Rubik">Improved the BLANK plasmid for promoter screening</li>
         <li>Expressed and characterised Sarcosine Oxidase, showing successful degradation of sarcosine to formaldehyde</li>
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         <li style="font-family: Rubik">Expressed and characterised Sarcosine Oxidase, showing successful degradation of sarcosine to formaldehyde</li>
         <li>Designed, and began to construct, a variety of framework compatible systems, including a synthetic promoter library</li>
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         <li style="font-family: Rubik">Designed, and began to construct, a variety of framework compatible systems, including a synthetic promoter library</li>
 
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Revision as of 19:40, 1 November 2017

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Our Experimental Results

Key Achievements

A condensed list of our most notable results


  • Designed a novel framework for biosensor development
  • Proved that multicellular biosensors are able to co-ordinate responses to input molecules through a proof-of-concept IPTG responsive biosensor
  • Successful characterisation of a transpose-based “stand-by switch” capable of producing eforRed in the “OFF” state, and C4 AHL in the “ON” state
  • Used a Design of Experiments approach to successfully optimise a cell-free system
  • Improved the BLANK plasmid for promoter screening
  • Expressed and characterised Sarcosine Oxidase, showing successful degradation of sarcosine to formaldehyde
  • Designed, and began to construct, a variety of framework compatible systems, including a synthetic promoter library

Below is a diagram of our Sensynova Framework. Clicking on each part of the framework (e.g. detector modules) links to the relevant results.

Alternatively, at the bottom of this page are tabs which will show you results for every part of the project



Framework

Framework Chassis

Biochemical Adaptor

Target

Detector Modules

Multicellular Framework Testing

C12 HSL: Connector 1

Processor Modules

Framework in Cell Free Protein Synthesis Systems

C4 HSL: Connector 2

Reporter Modules



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