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− | <p>To achieve our goal, we want to design a <i>L.jensenii</i> with a spermicidal effect which can allow a long term contraception for women. We are focusing on different types of spermidical molecules : </p> | + | <p>To achieve our goal, we want to design a <i>L. jensenii</i> with a spermicidal effect which can allow a long term contraception for women. We are focusing on different types of spermidical molecules : </p> |
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<h3> The chassis </h3> | <h3> The chassis </h3> | ||
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− | We are going to use two | + | We are going to use two bacteria : <i>Bacillus subtilis</i> and <i>Lactobacillus jensenii</i>, two gram positive bacteria. We choosed <i>B. subtilis</i> because it's a model bacteria for the gram positive. Indeed the final goal is to modify <i>L. jensenii</i>. |
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Revision as of 10:04, 28 June 2018
Description
To achieve our goal, we want to design a L. jensenii with a spermicidal effect which can allow a long term contraception for women. We are focusing on different types of spermidical molecules :
Name | Type of molecule | Origin |
---|---|---|
Nisin | Lantipeptid | Lactococcus lactis |
Lacticin 3147 | Lantipeptid | Lactococcus lactis |
Subtilosin A | Sactipeptid | Bacillus subtilis |
Magainin II | Magainin | Xenopus laevis |
LL37 | Cathelicidin antimicrobial peptid | Homo sapiens |
YLP20 | Antibody | Homo sapiens |
AS16 | Antibody | Homo sapiens |
The chassis
We are going to use two bacteria : Bacillus subtilis and Lactobacillus jensenii, two gram positive bacteria. We choosed B. subtilis because it's a model bacteria for the gram positive. Indeed the final goal is to modify L. jensenii.