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<li>Steps with any probability of contamination should be performed in a biosafety cabinet. </li> | <li>Steps with any probability of contamination should be performed in a biosafety cabinet. </li> | ||
<li>Duplicating a key to the laboratory without permission is strictly prohibited. </li> | <li>Duplicating a key to the laboratory without permission is strictly prohibited. </li> | ||
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<li>Wear rubber gloves during all experimenters. </li> | <li>Wear rubber gloves during all experimenters. </li> | ||
<li>Sanitize the lab using UV-light every day. </li> | <li>Sanitize the lab using UV-light every day. </li> | ||
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Revision as of 13:27, 15 October 2018
Sample
I. Sample
a. Sample
This year’s SHSBNU_China Team is trying to develop a highly efficient, low-cost and modularized biomaterial to decompose azo dye, the Biofilm x Laccase system, using the methods of synthetic biology. Here we wish to share our experiences with safety control.
According to the requirements of iGEM policy, we performed safely in every experiment followed by some basic regulations as follows:
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Biofilm base CotA operator, produced in this project, was secreted by genetically modified strains of host bacteria E. coli. As we developed a water-filter which prevents bacteria from leakage, the recombinant DNA will not flow out into the environment. Even if a small fraction of CotA-producing bacteria leaked out, it would not express any protein because of the shortage of IPTG. In addition, our filter structure contains sterilizing device which can keep biofilm from leakage. Thus, there is no doubt that our product is safe and reliable.
The DNA parts are absolutely safe because they encode non-hazardous proteins such as SpyCatcher, SpyTag, biofilm, CotA and their combinations to human. The DNA parts were safely confined within PCR tubes as the Parts Registry requires.
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