Difference between revisions of "Team:UCL/James/Description"

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<h2 class="text-center wowload fadeInUp" style="color:#ff0000">The Mobile application</h2>
 
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<h4><i class="fa fa-gamepad" style="color:#b22222"></i> Popularization of Biology, Synthetic Biology and Safety</h4>
 
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The mobile application that IONIS iGEM designed is available on all Android mobile phones. We designed this application in order to communicate and popularize Synthetic Biology.
 
 
BactMan Adventures is a mobile application popularizing science through educative mini-games around the life of a bacteria. With it, you can discover key notions of biology through several mini-games in two distinct environments: the intestines and the iGEM laboratories.
 
Apart front the mini-games, the application offers information about our team, the iGEM, and synthetic biology : introduction of iGEM and of the BioBricks, presentation of the IONIS iGEM team and of our Bioconsole project, glossary of technical terms...
 
 
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Revision as of 15:27, 7 August 2016

Project Description

Project

BioSynthAge: Do not go gentle into that good night

We envision a time in which the human population lives a healthier life, for longer. We will use synthetic biology to ensure the ageing world population can both maintain their quality of life and extend their lifespan - increasing their ‘healthspan’. The health challenges currently posed by ageing are many and complex so we propose a suite of synthetic biology solutions to tackle these challenges. Our synthetic biology solutions will include, but not be limited to, the following:

Oxidative stress – the root of the problem

Oxidative stress underlies many of the health problems of ageing so we will develop a number of free radical mopping devices. These devices will include therapeutic bacterial chassis triggered by oxidative-stress to deliver free-radical mopping compounds. To lay a conceptual foundation for genetic tools that address ageing within human cells, we will also use gene-editing tools to map the relationship between telomerase expression and cellular robustness to oxidative stress.

Project