Difference between revisions of "Team:Newcastle/Results"

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         <div id="framework">
 
         <div id="framework">
 
          
 
          
           <h2  style="font-size: 1em"> BioBricks used: BBa_0123456 (New), BBa_7890123 (Team_Name 20XX) </h2>
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           <h2  style="font-size: 1em"> BioBricks used: BBa_K2205009(New)+ BBa_K2205012(New),BBa_K2205015(New).
 
          
 
          
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Rationale and Aim </h2>
 
           <h2 style="font-family: Rubik; text-align: left; margin-top: 1%"> Rationale and Aim </h2>
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<p>
 
<p>
  <b>Figure 6: The reporter part test shows a significant fluorescence increase after induction with the connecting molecule 2 C12-RHL. </b>  
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  <b>Figure 6: The reporter part (BBa_K2205015)test shows a significant fluorescence increase after induction with the connecting molecule 2 C12-RHL. </b>  
 
   
 
   
 
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<p>
<b> Processor test.</b> The connector 1 (C4-HSL) was added to the co-culture consisting of processor + reporter in ratio 1:1. The plot shows the successful communication via quorum sensing in the Sensynova device. It is clear that the presence of 1mM C4-HSL is detected by the processor cells which produce the connector 2 (C12-RHL) for the reporter cells to detect. This induction in the reporter cells leads to the expression of sfGFP (Figure 7).</p>
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<b> Processor test.</b> The connector 1 (C4-HSL) was added to the co-culture consisting of processor (K2205012)+ reporter(BBa_K2205015) in ratio 1:1. The plot shows the successful communication via quorum sensing in the Sensynova device. It is clear that the presence of 1mM C4-HSL is detected by the processor cells which produce the connector 2 (C12-RHL) for the reporter cells to detect. This induction in the reporter cells leads to the expression of sfGFP (Figure 7).</p>
 
<p>
 
<p>
 
<img src="https://static.igem.org/mediawiki/2017/f/f0/Hsl_proc_rep.jpg" class="img-fluid rounded mx-auto d-block" style="max-width: 60%" alt="">
 
<img src="https://static.igem.org/mediawiki/2017/f/f0/Hsl_proc_rep.jpg" class="img-fluid rounded mx-auto d-block" style="max-width: 60%" alt="">
  
<p>
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<p> <b>Figure 7:</b> The processor (BBa_K2205012) and reporter (BBa_K2205015) co-culture test shows increasing fluorescence/time after specific induction with the connecting molecule C12-RHL.
<h3> <b>Figure 7:</b>  
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</p> </br>
<b> Such and such  </b>
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</p> </h3> </br>
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<p>
  
Lastly, the entire framework has been tested. The co-culture of the 3 cell types was inoculated at ratio 1:1:1, growth and fluorescence were monitored after induction with IPTG 1mM. The plot shows no significant increasing fluorescence in the induced samples (Figure 8).</p>
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<b> Framework test.</b> The co-culture of the 3 cell types was inoculated at ratio 1:1:1, growth and fluorescence were monitored after induction with IPTG 1mM. The plot shows no significant increasing fluorescence in the induced samples (Figure 8).</p>
 
<p>
 
<p>
 
<img src="https://static.igem.org/mediawiki/2017/1/10/Framework_test_111.jpg" class="img-fluid rounded mx-auto d-block" style="max-width: 60%" alt="">
 
<img src="https://static.igem.org/mediawiki/2017/1/10/Framework_test_111.jpg" class="img-fluid rounded mx-auto d-block" style="max-width: 60%" alt="">
  
<p>
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<p> <b>Figure 8:</b> Framework (BBa_K2205009, BBa_K2205012, BBa_K2205015) test with a co-culture in ratio 1:1:1 in response of IPTG induction.
<h3> <b>Figure 8:</b>  
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</p> </br>
<b> Such and such  </b>
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<p>
 
Results from the modelling predicted that the 1:1:1 ratio is not the optimal combination for the Sensynova device to work. It is infact suggested to adopt a higher concentration of the reporter culture compare with the detector and processor. Thus, the framework test was repeated with the 1:1:13 cultures combination. The experiment results, shown in the picture below, confirm the modelling data. There is a consistent discrepancy between IPTG induced and non-induced samples in the 1:1:13 co-cultures, in comparison with the 1:1:1 co-cultures which don't show any difference in presence or absence of IPTG (figure9).</p>
 
Results from the modelling predicted that the 1:1:1 ratio is not the optimal combination for the Sensynova device to work. It is infact suggested to adopt a higher concentration of the reporter culture compare with the detector and processor. Thus, the framework test was repeated with the 1:1:13 cultures combination. The experiment results, shown in the picture below, confirm the modelling data. There is a consistent discrepancy between IPTG induced and non-induced samples in the 1:1:13 co-cultures, in comparison with the 1:1:1 co-cultures which don't show any difference in presence or absence of IPTG (figure9).</p>
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<p>
 
<p>
<h3> <b>Figure 9:</b>  
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<b>Figure 9:</b> Framework (BBa_K2205009, BBa_K2205012, BBa_K2205015) test with a co-culture in ration 1:1:13 in response of IPTG induction.
<b> Such and such  </b>  
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</p> </br>
</p> </h3> </br>
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</p> </br>
  
  

Revision as of 15:39, 29 October 2017

spacefill

Our Experimental Results

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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