Team:Aachen/Project
From 2014.igem.org
(→Cellock Holmes - A Case of Identity) |
(→Cellock Holmes - A Case of Identity) |
||
Line 57: | Line 57: | ||
As a '''proof-of-concept''' for ''Cellock Holmes'' we decided to detect the bacterium '''''Pseudomonas aeruginosa'''''. This opportunistic bacterium mainly infects patients with open wounds and burns as well as immunodeficient people. ''P. aeruginosa'' cells use quorum sensing to communicate with each other by secreting autoinducers into their environment. Using Synthetic Biology, our team '''engineered sensor cells''', so-called '''''Cellocks''''', that are able to detect these autoinducers and to elicit a fluorescence signal. Furthermore, the response time of our sensor cells is sped up through the use of our special [https://2014.igem.org/Team:Aachen/Project/FRET_Reporter '''REACh construct''']. | As a '''proof-of-concept''' for ''Cellock Holmes'' we decided to detect the bacterium '''''Pseudomonas aeruginosa'''''. This opportunistic bacterium mainly infects patients with open wounds and burns as well as immunodeficient people. ''P. aeruginosa'' cells use quorum sensing to communicate with each other by secreting autoinducers into their environment. Using Synthetic Biology, our team '''engineered sensor cells''', so-called '''''Cellocks''''', that are able to detect these autoinducers and to elicit a fluorescence signal. Furthermore, the response time of our sensor cells is sped up through the use of our special [https://2014.igem.org/Team:Aachen/Project/FRET_Reporter '''REACh construct''']. | ||
- | So far ''Cellocks'' are able to detect ''P. aeruginosa'' only, however, due to the modular composition of our genetic device, it is possible to engineer ''Cellocks'' in a way that they are able to detect other bacteria's autoinducers. Even more flexibility would be introduced using our [https://2014.igem.org/Team:Aachen/Project/Gal3 '''alternative molecular approach using Galectin-3''']. | + | So far ''Cellocks'' are able to detect ''P. aeruginosa'' only, however, due to the modular composition of our genetic device, it is possible to engineer ''Cellocks'' in a way that they are able to detect other bacteria's autoinducers as well. Even more flexibility would be introduced using our [https://2014.igem.org/Team:Aachen/Project/Gal3 '''alternative molecular approach using Galectin-3''']. |
Hand in hand with the biological side of our project, our IT crew built the [https://2014.igem.org/Team:Aachen/Project/Measurement_Device '''measurement device ''WatsOn'''''] that is able to read and analyze the fluorescent signal. Since we want to make our technology available for everybody, we publish construction manuals and technical details of our device. | Hand in hand with the biological side of our project, our IT crew built the [https://2014.igem.org/Team:Aachen/Project/Measurement_Device '''measurement device ''WatsOn'''''] that is able to read and analyze the fluorescent signal. Since we want to make our technology available for everybody, we publish construction manuals and technical details of our device. |
Revision as of 01:50, 17 October 2014
|
|