Difference between revisions of "Team:UParis BME/Results"

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<p class="textContent">Specific miRNAs signatures are correlated with cancer initiation and spreading. The aberrant expression profile of certain miRNAs indicates cancer setup and progression. This means that these expression profiles can hold a diagnostic and prognostic value<sup>1</sup>.<br>
 
<p class="textContent">Specific miRNAs signatures are correlated with cancer initiation and spreading. The aberrant expression profile of certain miRNAs indicates cancer setup and progression. This means that these expression profiles can hold a diagnostic and prognostic value<sup>1</sup>.<br>
For our proof-of-concept, we first modeled a bank of toehold switches targeting specific miRNAs using SwitchMi Designer (a software we have designed). We then decided to focus on the detection of two miRNAs, miR-21-5p and miR-141-5p.  The miR-141-5p is overexpressed in cancer patients such as in the case of breast or prostate cancer<sup>2</sup>. The miR-21-5p is commonly found in abnormal quantities in patients suffering from cancer and it is overexpressed in cervix and breast cancer cell lines’ exosomes, such as HeLa and MCF-7<sup>3-5</sup>. We tried to produce the banks of toehold switches targeting these two miRNAs in order to characterize them (phase 1 of our proof-of-concept).<br>
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For our proof-of-concept, we first modeled a bank of toehold switches targeting specific miRNAs using <a href="https://github.com/igemsoftware2021/UParis_BME_2021">SwitchMi Designer</a> (a software we have designed). We then decided to focus on the detection of two miRNAs, miR-21-5p and miR-141-5p.  The miR-141-5p is overexpressed in cancer patients such as in the case of breast or prostate cancer<sup>2</sup>. The miR-21-5p is commonly found in abnormal quantities in patients suffering from cancer and it is overexpressed in cervix and breast cancer cell lines’ exosomes, such as HeLa and MCF-7<sup>3-5</sup>. We tried to produce the banks of toehold switches targeting these two miRNAs in order to characterize them (phase 1 of our proof-of-concept).<br>
 
At the same time, we cultured HeLa and MCF-7 cell lines to extract their exosomes and isolate the exosomal miRNAs to fit phase 2 of our proof-of-concept.</p>
 
At the same time, we cultured HeLa and MCF-7 cell lines to extract their exosomes and isolate the exosomal miRNAs to fit phase 2 of our proof-of-concept.</p>
  
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                                         <b>Production of complete toehold switches</b>  
 
                                         <b>Production of complete toehold switches</b>  
 
                                     </h2>
 
                                     </h2>
                                     <p class="textContent">We tried several methods (detailed in /wetlab) to get the toehold switch directly fully synthesized or the variable part of the toehold switch (Figure 6) ready to be assembled into a plasmid that already encodes the repressed gene, GFP.</p>
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                                     <p class="textContent">We tried several methods (detailed in /<a href="https://2021.igem.org/Team:UParis_BME/Wetlab">wetlab</a>) to get the toehold switch directly fully synthesized or the variable part of the toehold switch (Figure 6) ready to be assembled into a plasmid that already encodes the repressed gene, GFP.</p>
  
 
<figure>
 
<figure>
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                                         <b>MCF-7 and HeLa cell lines Exhibit Exosomal miRNAs </b>
 
                                         <b>MCF-7 and HeLa cell lines Exhibit Exosomal miRNAs </b>
 
                                     </h2>
 
                                     </h2>
                                     <p class="textContent">In this part of the project, we aimed to verify that MCF-7 and HeLa cell lines are expressing abnormal quantities of exosomal miRNAs. These cell lines have been selected because they are well-characterized cancer cells, for human breast cancer cells and human cervical cancer, respectively (see our wetlab section for more details).   
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                                     <p class="textContent">In this part of the project, we aimed to verify that MCF-7 and HeLa cell lines are expressing abnormal quantities of exosomal miRNAs. These cell lines have been selected because they are well-characterized cancer cells, for human breast cancer cells and human cervical cancer, respectively (see our <a href="https://2021.igem.org/Team:UParis_BME/Wetlab">wetlab</a> section for more details).   
 
MCF-7 and HeLa cells were grown separately at a 70% of confluence as we can see in Figure 11.  
 
MCF-7 and HeLa cells were grown separately at a 70% of confluence as we can see in Figure 11.  
 
</p>
 
</p>
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<li>the toehold switch with a predefined quantity of trigger miRNAs to confirm if the quantity of fluorescence is correlated with the quantity of miRNAs and how.</li>
 
<li>the toehold switch with a predefined quantity of trigger miRNAs to confirm if the quantity of fluorescence is correlated with the quantity of miRNAs and how.</li>
 
</ul>
 
</ul>
We hope these results will tell us if our SwitchMi Designer is well able to model toehold switches to detect and quantify specific miRNAs and that we may be able to improve it.  
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We hope these results will tell us if our <a href="https://github.com/igemsoftware2021/UParis_BME_2021">SwitchMi Designer</a> is well able to model toehold switches to detect and quantify specific miRNAs and that we may be able to improve it.  
 
The toehold switch that gave the best results on the characterization experiment will be tested on a cell-free system with the miRNAs extracted from our MCF-7 and HeLa cell lines previously isolated. We will compare the results given by the toehold switch with the one we obtained using the classical qPCR method.
 
The toehold switch that gave the best results on the characterization experiment will be tested on a cell-free system with the miRNAs extracted from our MCF-7 and HeLa cell lines previously isolated. We will compare the results given by the toehold switch with the one we obtained using the classical qPCR method.
 
</p>
 
</p>

Revision as of 15:26, 21 October 2021