Difference between revisions of "Team:UCL/Fermentation"
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<h2><span id="background" style="padding-top:150px;">Why bother going big?</span></h2> | <h2><span id="background" style="padding-top:150px;">Why bother going big?</span></h2> | ||
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<h4>After creating our biobricks and expressing them in probiotics we needed to test two essential assumptions of our project. The first was that our bacteria can survive a shock of pH and oxygen concentration which they would need to go through when traveling through the digestive system.</h4> | <h4>After creating our biobricks and expressing them in probiotics we needed to test two essential assumptions of our project. The first was that our bacteria can survive a shock of pH and oxygen concentration which they would need to go through when traveling through the digestive system.</h4> | ||
<h4>The other assumption was that we could create the right growth conditions for the bacteria to produce them in large amounts. The latter point would be necessary in order to mass-produce bacteria commercially which is essential for our <a href="https://2015.igem.org/Team:UCL/Entrepreneurship"><b>entrepreneurial effort</b></a></h4>. | <h4>The other assumption was that we could create the right growth conditions for the bacteria to produce them in large amounts. The latter point would be necessary in order to mass-produce bacteria commercially which is essential for our <a href="https://2015.igem.org/Team:UCL/Entrepreneurship"><b>entrepreneurial effort</b></a></h4>. | ||
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<h2><span id="background" style="padding-top:150px;">Using a bioreactor</span></h2> | <h2><span id="background" style="padding-top:150px;">Using a bioreactor</span></h2> | ||
− | <h4>We were able to successfully test our assumptions on a larger scale than usually possible in research labs by using a 7l bioreactor. This allowed us to simulate the conditions existing in the transition from one gut-compartment into the other, under controlled conditions. | + | <br/> |
+ | <h4>We were able to successfully test our assumptions on a larger scale than usually possible in research labs by using a 7l bioreactor. This allowed us to simulate the conditions existing in the transition from one gut-compartment into the other, under controlled conditions. | ||
Secondly, we could show that a large scale production of our probiotic bacteria is possible.</h4> | Secondly, we could show that a large scale production of our probiotic bacteria is possible.</h4> | ||
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<h2><span id="background" style="padding-top:150px;">Procedure</span></h2> | <h2><span id="background" style="padding-top:150px;">Procedure</span></h2> | ||
− | <h4> | + | <br/> |
+ | <h4> | ||
<ol> | <ol> | ||
<li>For the fermentation in the bioreactor we used DH5alpha cells transformed with a plasmid containing an expression cassette for our novel biobrick TPH1 downstream of an IPTG promoter.</li> | <li>For the fermentation in the bioreactor we used DH5alpha cells transformed with a plasmid containing an expression cassette for our novel biobrick TPH1 downstream of an IPTG promoter.</li> | ||
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</ol> | </ol> | ||
</h4> | </h4> | ||
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<h2><span id="background" style="padding-top:150px;">Measurement results</span></h2> | <h2><span id="background" style="padding-top:150px;">Measurement results</span></h2> | ||
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− | < | + | <h4 style="font-size:20px">pH shock</h4> |
<br/> | <br/> | ||
<img src="https://static.igem.org/mediawiki/2015/7/7e/PH_shock.PNG" alt="Cell growth and pH shock" style="width:40%;"> | <img src="https://static.igem.org/mediawiki/2015/7/7e/PH_shock.PNG" alt="Cell growth and pH shock" style="width:40%;"> | ||
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<h2><span id="background" style="padding-top:150px;">Discussion</span></h2> | <h2><span id="background" style="padding-top:150px;">Discussion</span></h2> | ||
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<h4> The experiment showed that we could successfully grow engineered probiotics at large scale which would allow us to produce engineered bacteria in commercially relevant amounts. The cultures survived the shock of pH, similar to certain transitions in the gut and maintained growing after. Even the complete absence of oxygen flow for half an hour did not kill the culture although diminishing growth.</h4> | <h4> The experiment showed that we could successfully grow engineered probiotics at large scale which would allow us to produce engineered bacteria in commercially relevant amounts. The cultures survived the shock of pH, similar to certain transitions in the gut and maintained growing after. Even the complete absence of oxygen flow for half an hour did not kill the culture although diminishing growth.</h4> | ||
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</div> | </div> | ||
</div> | </div> |
Latest revision as of 19:52, 16 November 2015
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