Difference between revisions of "Team:Paris Bettencourt/Sustainability/Continuity"
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<p>When going from labs lead by specialists to the users community, a lot of technical challenges arise. When inventing new biotechnological devices, biologists have access to biosafety cabinets, powerful freezers and autoclaves, but the people who need our product the most won't have these. For a biological product to leave the benches and actually reach the population, it's essential to foresee its life in the hands of the people who will cultivate it and make sure it stays alive all along. Here, we provide strategies to create an durable, usable product.</p> | <p>When going from labs lead by specialists to the users community, a lot of technical challenges arise. When inventing new biotechnological devices, biologists have access to biosafety cabinets, powerful freezers and autoclaves, but the people who need our product the most won't have these. For a biological product to leave the benches and actually reach the population, it's essential to foresee its life in the hands of the people who will cultivate it and make sure it stays alive all along. Here, we provide strategies to create an durable, usable product.</p> | ||
− | <h2 | + | <h2 id="specification">Specification</h2> |
<h3 id="from-the-lab-to-the-real-world">From the lab to the real world</h3> | <h3 id="from-the-lab-to-the-real-world">From the lab to the real world</h3> | ||
<p>On paper, the plan is simple: volunteers grow the micro-organism, distribute it to the rest of the town and save a little fraction to start a new culture with. This could in principle last forever, but in reality the universal rules of biology soon kick back in.</p> | <p>On paper, the plan is simple: volunteers grow the micro-organism, distribute it to the rest of the town and save a little fraction to start a new culture with. This could in principle last forever, but in reality the universal rules of biology soon kick back in.</p> | ||
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<h4 id="quality-control">Quality control</h4> | <h4 id="quality-control">Quality control</h4> | ||
<h3 id="make-it-extend">Make it extend</h3> | <h3 id="make-it-extend">Make it extend</h3> | ||
− | <p>decoupling <img src="PB_prototype.png" title="fig:PB_prototype.png" alt="PB_prototype.png" /> limit R&D expenses</p> | + | <p>decoupling <img src="https://static.igem.org/mediawiki/2015/1/16/PB_prototype.png" title="fig:https://static.igem.org/mediawiki/2015/1/16/PB_prototype.png" alt="https://static.igem.org/mediawiki/2015/1/16/PB_prototype.png" /> limit R&D expenses</p> |
<h3 id="all-in-one">All in one</h3> | <h3 id="all-in-one">All in one</h3> | ||
<p>make manufacturing simpler only one production line</p> | <p>make manufacturing simpler only one production line</p> | ||
− | <h2 | + | <h2 id="our-design">Our design</h2> |
<h3 id="overview">Overview</h3> | <h3 id="overview">Overview</h3> | ||
<p>It seems impossible to make a strain that fullfills its nutrient-producing functions while growing as fast as the wild type, so we found a workaround: the cells that people use are not the cells that people grow. We embedded a differentiation system into our organism, so the vitamin-producing pathways are only expressed after a recombination event. The cells that are grown are almost identical to the wild-type cells. The battle against contaminants is now a fair fight.</p> | <p>It seems impossible to make a strain that fullfills its nutrient-producing functions while growing as fast as the wild type, so we found a workaround: the cells that people use are not the cells that people grow. We embedded a differentiation system into our organism, so the vitamin-producing pathways are only expressed after a recombination event. The cells that are grown are almost identical to the wild-type cells. The battle against contaminants is now a fair fight.</p> | ||
<p>This system is randomized on a single-cell level so each cell produce one, and only one, vitamin pathway. This way we avoid unwanted interaction between the different pathways, thus making an extensible framework were every synthesis function is decoupled.</p> | <p>This system is randomized on a single-cell level so each cell produce one, and only one, vitamin pathway. This way we avoid unwanted interaction between the different pathways, thus making an extensible framework were every synthesis function is decoupled.</p> | ||
− | <p><img src="PB_framework_construction.png" title="fig:PB_framework_construction.png" alt="PB_framework_construction.png" /> <img src="PB_growth.png" title="fig:PB_growth.png" alt="PB_growth.png" /></p> | + | <p><img src="https://static.igem.org/mediawiki/2015/9/98/PB_framework_construction.png" title="fig:https://static.igem.org/mediawiki/2015/9/98/PB_framework_construction.png" alt="https://static.igem.org/mediawiki/2015/9/98/PB_framework_construction.png" /> <img src="https://static.igem.org/mediawiki/2015/8/88/PB_growth.png" title="fig:https://static.igem.org/mediawiki/2015/8/88/PB_growth.png" alt="https://static.igem.org/mediawiki/2015/8/88/PB_growth.png" /></p> |
<h3 id="the-chassis">The chassis</h3> | <h3 id="the-chassis">The chassis</h3> | ||
<div class="figure"> | <div class="figure"> | ||
− | <img src="PB_chassis.png" title="PB_chassis.png" alt="PB_chassis.png" /> | + | <img src="https://static.igem.org/mediawiki/2015/1/14/PB_chassis.png" title="https://static.igem.org/mediawiki/2015/1/14/PB_chassis.png" alt="https://static.igem.org/mediawiki/2015/1/14/PB_chassis.png" /> |
− | <p class="caption">PB_chassis.png</p> | + | <p class="caption">https://static.igem.org/mediawiki/2015/1/14/PB_chassis.png</p> |
</div> | </div> | ||
<h4 id="orthogonal-recombination-sites">Orthogonal recombination sites</h4> | <h4 id="orthogonal-recombination-sites">Orthogonal recombination sites</h4> | ||
<h4 id="allowing-for-quality-control">Allowing for quality control</h4> | <h4 id="allowing-for-quality-control">Allowing for quality control</h4> | ||
<h3 id="landing-pads">Landing pads</h3> | <h3 id="landing-pads">Landing pads</h3> | ||
− | <p>quick forking in a lot of parallel projects <img src="PB_landingpad.png" title="fig:PB_landingpad.png" alt="PB_landingpad.png" /> Having one cell expressing only one pathway should theoretically preclude unexpected interactions between different pathways</p> | + | <p>quick forking in a lot of parallel projects <img src="https://static.igem.org/mediawiki/2015/7/75/PB_landingpad.png" title="fig:https://static.igem.org/mediawiki/2015/7/75/PB_landingpad.png" alt="https://static.igem.org/mediawiki/2015/7/75/PB_landingpad.png" /> Having one cell expressing only one pathway should theoretically preclude unexpected interactions between different pathways</p> |
<h3 id="division-of-labour">Division of labour</h3> | <h3 id="division-of-labour">Division of labour</h3> | ||
<p>Three different strains mean three different production lines at least three sterile incubators. Having only one strain that does everything hugely simplifies the process, because only one incubator, centrifuge and dryer is needed. This makes it accessible to local hacklabs/NGO.</p> | <p>Three different strains mean three different production lines at least three sterile incubators. Having only one strain that does everything hugely simplifies the process, because only one incubator, centrifuge and dryer is needed. This makes it accessible to local hacklabs/NGO.</p> | ||
<div class="figure"> | <div class="figure"> | ||
− | <img src="PB_brainbow.png" title="PB_brainbow.png" alt="PB_brainbow.png" /> | + | <img src="https://static.igem.org/mediawiki/2015/6/65/PB_brainbow.png" title="https://static.igem.org/mediawiki/2015/6/65/PB_brainbow.png" alt="https://static.igem.org/mediawiki/2015/6/65/PB_brainbow.png" /> |
− | <p class="caption">PB_brainbow.png</p> | + | <p class="caption">https://static.igem.org/mediawiki/2015/6/65/PB_brainbow.png</p> |
</div> | </div> | ||
<ul> | <ul> | ||
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<p>How can we prevent our organism from mutating?</p> | <p>How can we prevent our organism from mutating?</p> | ||
<p>Fortunately, our friends at the Vanderbilt University iGEM team worked precisely on that problem this summer. We worked hand in hand with them to see what a real-life application of their invention would mean practically.</p> | <p>Fortunately, our friends at the Vanderbilt University iGEM team worked precisely on that problem this summer. We worked hand in hand with them to see what a real-life application of their invention would mean practically.</p> | ||
− | <h2 | + | <h2 id="results">Results</h2> |
<h3 id="integration-in-bacterial-cells">Integration in bacterial cells</h3> | <h3 id="integration-in-bacterial-cells">Integration in bacterial cells</h3> | ||
<p>assembly fluorescent proteins are present sequence is correct</p> | <p>assembly fluorescent proteins are present sequence is correct</p> | ||
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<h3 id="induction-of-the-differentiation">Induction of the differentiation</h3> | <h3 id="induction-of-the-differentiation">Induction of the differentiation</h3> | ||
<h3 id="effects-on-growth">Effects on growth</h3> | <h3 id="effects-on-growth">Effects on growth</h3> | ||
− | <h2 | + | <h2 id="outlook">Outlook</h2> |
<p>link</p> | <p>link</p> | ||
Revision as of 01:06, 16 September 2015