Difference between revisions of "Team:NCKU Tainan/Safety"

 
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                 <h1 class="head">Foresee Danger and Take Precautions</h1>
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                 <h1 class="head">Biosafety</h1>
 
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                 <h6 class="subtitle">Ideas Come True</h6>
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                 <h6 class="subtitle">Foresee Danger and Take Precautions</h6>
 
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                             <div id="Biosafety">
 
                             <div id="Biosafety">
 
                                 <h3>Biosafety</h3></br>
 
                                 <h3>Biosafety</h3></br>
                                 <h8>1. Material and project safety? OF COURSE</h8>
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                                 <h8>1. Material and project safety? OF CO<sub>2</sub>URSE</h8>
 
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                                     <p class="pcontent">
 
                                     <p class="pcontent">
 
                                         We chose <i>E. coli</i> as our chassis organism. Three lab strains
 
                                         We chose <i>E. coli</i> as our chassis organism. Three lab strains
                                         were selected: “DH5 alpha”, “BL21(DE3)”, “W3110”, and ”W3110 (L5T7)”. These lab
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                                         were selected: “BL21(DE3)”, “W3110”, and ”W3110 (L5T7)”. These lab
 
                                         strains are reported to be not pathogenic to human. We worked these strains in authorized labs (biosafety level 1 lab and higher) only.
 
                                         strains are reported to be not pathogenic to human. We worked these strains in authorized labs (biosafety level 1 lab and higher) only.
  
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                                     <h8>New parts construction</h8></br>
 
                                     <h8>New parts construction</h8></br>
 
                                     <p class="pcontent">
 
                                     <p class="pcontent">
                                     Three new basic parts with open reading frame were created in our project. They are Rubisco, prk, and CA. Three genes are derived from <i>Synechococcus elongatus pcc. 7002</i> and <i>Synechococcus elongatus pcc. 7942</i>. <i>Synechococcus elongatus</i> is a biosafety  
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                                     Three new basic parts with open reading frame were created in our project, which are Rubisco, prk, and CA. Three genes are derived from <i>Synechococcus elongatus</i> PCC 7002 and <i>Synechococcus elongatus</i> PCC 7942, which belong to biosafety  
 
level 1 nonpathogenic cyanobacteria.
 
level 1 nonpathogenic cyanobacteria.
 
    
 
    
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                                     <p class="pcontent">
                                         This is the third year since the establishment of iGEM NCKU-Tainan team. We have raised the awareness of synthetic biology in our campus. NCKU President Dr. Jenny Su and the College of Engineering decided to provide with us a headquarter which contains a meeting room and a lab. To meet the lab standard of Taiwan CDC (Center for Disease Control), we made contact with Mrs. Liu Yee Fen, the contact person of Center for Occupational Safety and Health and Environmental Protection, which is the authorized unit in NCKU responsible for lab safety and security. With the assistance of our instructor Dr. Ng, we successfully certified our lab to BSL-1 safety level one. Mrs. Liu gave us some lab security instructions and advice. Each of our members should attend the biosafety lab training program.
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                                         This is the third year since the establishment of iGEM NCKU Tainan team. We have raised the awareness of synthetic biology in our campus. NCKU President Dr. Jenny Su and Dean of College of Engineering promised to provide us with a headquarter, including a meeting room and a lab. To meet the lab standard of Taiwan CDC (Center for Disease Control), we contacted with Mrs. Liu Yee Fen, the contact person of Center for Occupational Safety and Health and Environmental Protection, which is the authorized unit in NCKU responsible for lab safety and security. With the assistance of our PI, Pror. Ng, we successfully certified our lab to BSL-1, safety level one. Mrs. Liu gave us some lab security instructions and advice. Each of our members should attend the biosafety lab training program.
  
 
                                     </p>
 
                                     </p>
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                                 <img class="contentimg col-6" src="https://static.igem.org/mediawiki/2018/9/90/T--NCKU_Tainan--safety_biosafety2.jpg">
 
                                 <img class="contentimg col-6" src="https://static.igem.org/mediawiki/2018/9/90/T--NCKU_Tainan--safety_biosafety2.jpg">
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<p class="pcenter"> Fig 1. Pictures of NCKU Tainan team headquarter  </p> 
  
 
                                 <div id="pt">
 
                                 <div id="pt">
                                     <p class="pcontent">In addition to the lab in iGEM headquarter, the wet lab team also performed experiments in various labs whose supervisors are Dr. I-Son Ng, Dr. I-Hsiu Huang, Dr. Han-Ching Wang, and Dr. Hashimoto Masayuki. The labs mentioned have all been certified as biosafety level one or two.
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                                     <p class="pcontent">In addition to the lab in iGEM headquarter, the wet lab team also performed experiments in various labs whose supervisors are Prof. I-Son Ng, Prof. I-Hsiu Huang, Prof. Han-Ching Wang, and Prof. Hashimoto Masayuki. The labs mentioned have all been certified as biosafety level one or two.
 
</p></br>
 
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                                 </div>
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                                 <h8>3. Safety training for every teammate</h8>
 
                                 <h8>3. Safety training for every teammate</h8>
 
                                 <div id="pt">
 
                                 <div id="pt">
                                     <p class="pcontent">It is a must for anyone to pass the authorized training session before conducting any experiments in the lab. Since our applied design must be tested with the constructed bacteria, all of our team members will be exposed to the lab. We, therefore, decided that the whole team should be certified to do the experiments in biosafety level one lab. Team members from biotechnology have already passed the training session, and the rest of team members have passed the training online course. We believe that learning safety and security knowledge lower the risk when we conducted experiments inside a lab.</br></p>
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                                     <p class="pcontent">It is a must for anyone to pass the authorized training session before conducting any experiments in the lab. Since our applied design must be tested with the constructed bacteria, all of our team members will be exposed to the lab. We, therefore, decided that the whole team should be certified to do the experiments in biosafety level one lab. Team members from biotechnology have already passed the training session, and the rest of team members have passed the training online course. We believe that learning safety and security knowledge could lower the risk when we conducted experiments inside a lab.</br></p>
 
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                                 </div>
  
 
                                 </br></br>
 
                                 </br></br>
 
                                 <img class="contentimg sfp" src="https://static.igem.org/mediawiki/2018/d/d8/T--NCKU_Tainan--home_safety.png">
 
                                 <img class="contentimg sfp" src="https://static.igem.org/mediawiki/2018/d/d8/T--NCKU_Tainan--home_safety.png">
                            </div>
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          <p class="pcenter"> Fig 2. Certificate of online course</p>                 
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                             <div id="Safety_Design">
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                                     <p class="pcontent">
                                         The goal of our project is to fix CO<sub>2</sub> emitted from industries by using modified <i>E. coli</i> and produce high-value byproducts. At the same time, we are aware of the safety concerns of introducing synthetic organisms into the environment. We designed a bioreactor that ensures the engineered <i>E. coli</i> in maintained in a closed system separated from the environment. Each inlet and outlet of the bioreactor is equipped with a filter to prevent the outflow of the engineered bacteria.
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                                         The goal of our project is to utilize CO<sub>2</sub> emitted from industries by using modified <i>E. coli</i> , which has high potential to produce valuable byproducts. At the same time, we are aware of the safety concerns of introducing synthetic organisms into the environment. We designed a bioreactor that ensures the engineered <i>E. coli</i> in maintained in a closed system separated from the environment. Each inlet and outlet of the bioreactor is equipped with a filter to prevent the outflow of the engineered bacteria.
 
                                     </p></br></br>
 
                                     </p></br></br>
 
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                                     <img class="contentimg col-6" src="https://static.igem.org/mediawiki/2018/9/97/T--NCKU_Tainan--home_42885010_1830869360314589_164317661969252352_n.jpg">
 
                                     <img class="contentimg col-6" src="https://static.igem.org/mediawiki/2018/9/97/T--NCKU_Tainan--home_42885010_1830869360314589_164317661969252352_n.jpg">
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<p class="pcenter"> Fig 3. Result of biosafety tests with our bioreactor</p> 
  
 
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                                         In our applied design, we planned to extract protein and bioproduct from <i>E. coli</i>. The waste should be then collected and sterilized. We planned to combine the waste heat recovery system in the factory to sterilize the waste medium. One of the many goals of our applied design; to turn waste into valuable resource, has been fulfilled by this biosafety design.  
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                                         In our product design, we planned to extract protein and bioproduct from <i>E. coli</i>. The waste should be then collected and sterilized. We planned to combine the waste heat recovery system in the factory to sterilize the waste medium. One of the many goals of our product design; to turn waste into valuable resource, has been fulfilled by this biosafety design.  
 
                                     </p>
 
                                     </p>
 
                                     </br></br></br></br>
 
                                     </br></br></br></br>

Latest revision as of 15:28, 3 November 2018

Biosafety

Foresee Danger and Take Precautions
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