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<div class="block full" style="background-color: transparent;"> | <div class="block full" style="background-color: transparent;"> | ||
− | <p style="text-align: left;" | + | <p style="text-align: left;">Achievements:<br> |
<ul> | <ul> | ||
<li>Successfully cloned a part coding for secretion of NGF in pET43.1a and iGEM plasmid backbone pSB1C3, creating a new composite part <a href=BBa_K2616000 "http://parts.igem.org/Part:BBa_K2616000"> BBa_K2616000</a> </li> | <li>Successfully cloned a part coding for secretion of NGF in pET43.1a and iGEM plasmid backbone pSB1C3, creating a new composite part <a href=BBa_K2616000 "http://parts.igem.org/Part:BBa_K2616000"> BBa_K2616000</a> </li> | ||
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<li>Successfully <b>observe axon growth</b> in microfluidic chip in presence of commercial NGF</li> | <li>Successfully <b>observe axon growth</b> in microfluidic chip in presence of commercial NGF</li> | ||
</ul><br></p> | </ul><br></p> | ||
− | <p><i>Next steps:</i><br> | + | <p style="text-align: left;"><i>Next steps:</i><br> |
<ul> | <ul> | ||
<li><b>Purify</b> secreted NGF, and characterize its effects on neuron growth thanks to our microfluidic device </li> | <li><b>Purify</b> secreted NGF, and characterize its effects on neuron growth thanks to our microfluidic device </li> | ||
<li><b>Global proof of concept</b> in a microfluidic device containing neurons in one of the chamber, and our engineered bacteria in the other</li> | <li><b>Global proof of concept</b> in a microfluidic device containing neurons in one of the chamber, and our engineered bacteria in the other</li> | ||
</ul> | </ul> | ||
− | + | </p> | |
</div> | </div> | ||
</div> | </div> |
Revision as of 16:51, 16 October 2018
RECONNECT NERVES: Click to see more
Achievements:
- Successfully cloned a part coding for secretion of NGF in pET43.1a and iGEM plasmid backbone pSB1C3, creating a new composite part BBa_K2616000
- Successfully sequenced BBa_K2616000 in pSB1C3 and sent to iGEM registry
- Successfully co-transform E. coli with plasmid secreting NGF and plasmid expressing the secretion system, creating bacteria capable of secreting NGF in the medium
- Successfully characterized production of NGF thanks to mass spectrometry
- Successfully observe axon growth in microfluidic chip in presence of commercial NGF
Next steps:
- Purify secreted NGF, and characterize its effects on neuron growth thanks to our microfluidic device
- Global proof of concept in a microfluidic device containing neurons in one of the chamber, and our engineered bacteria in the other
FIGHT INFECTIONS : Click to see more
Achievements:
- Successfully cloned a part coding for RIP secretion in pBR322 and in pSB1C3, creating a new part Bba_K2616001 .
- Successfully sequenced Bba_K2616001 in pSB1C3 and sent to iGEM registry.
- Successfully cultivated S. aureus biofilms in 96 well plates with different supernatants.
Next steps:
- Clone the sensor device with inducible RIP production upon S. aureus detection.
- Improve the characterization of RIP effect on biofilm formation.
KILL SWITCH: Click to see more
Achievements:
- Successfully cloned a part coding for toxin/antitoxin (CcdB/CcdA) system in iGEM plasmid backbone, creating a new composite part
- Successfully observe survival of our engineered bacteria at 25°C and 37°C and absence of growth at 18°C and 20°C, showing the efficiency of the kill switch
Next steps:
- Find a system that kills bacteria when released in the environment rather than just stopping their growth