Team:Fudan Lux

From 2012.igem.org

(Difference between revisions)
Line 248: Line 248:
<a href="https://2012.igem.org/wiki/index.php?title=Team:Fudan_Lux/nanotube" class="img" title="An image"><img src="https://static.igem.org/mediawiki/2012/9/92/Nanotubelogo.png" alt="Post" style="opacity: 1;width:282px "></a><p></P>
<a href="https://2012.igem.org/wiki/index.php?title=Team:Fudan_Lux/nanotube" class="img" title="An image"><img src="https://static.igem.org/mediawiki/2012/9/92/Nanotubelogo.png" alt="Post" style="opacity: 1;width:282px "></a><p></P>
<div class="excerpt">
<div class="excerpt">
-
<a href="http://luiszuno.com/themes/nova/single.html" class="header">Project Bacto-Trafficking</a>Project Bacto-Trafficking The second project of Team Fudan-Lux is about constructing a brand-new biological model using a recently discovered cellular structure termed Tunneling Nanotubes(TNT) and bacteria containing the green fluorescence protein. By inducing and stabilizing TNTs between certain types of malignant tumor cells, a cellular network could be obtained. Then the bacteria containing GFP is introduced into the tumor cells by microinjection. By doing so, a new type of biological system is created. More importantly, what we want to study here, is the behavior of the injected bacteria within the tumor cells. Since TNTs formed between cells act as super highways for material transportation, bacteria thus can move from one cell to another via TNTs. Given the condition that bacteria would tend to choose the most suitable place for them to live in, in the least energy-consuming way, a distribution pattern thus can be obtained which have the characteristic of the least increase of entropy. By building such a model, we want to simulate certain types of problems in the real life that can’t be solved by simple computation, e.g. traffic jams between cities, and provide solutions to them.</div>
+
<a href="http://luiszuno.com/themes/nova/single.html" class="header">Project Bacto-Trafficking</a>It is about constructing a brand-new biological model using a recently discovered cellular structure termed Tunneling Nanotubes(TNT) and E.coli containing green fluorescent protein. By inducing and stabilizing TNTs between Hela cells, a complex cellular network can be established; then the GFP-marked E.coli are introduced into the Hela cells via electroporation—thereby a new type of biological system is created. Moreover, it is the behavior of the injected E.coli within the Hela cells that we want to study here. Since TNTs formed between cells act as super highways for material transportation, E.coli can move from one cell to another through TNTs. Given the condition that bacteria would tend to choose the most suitable place to live in, in the least energy-consuming way, a distribution pattern thus can be obtained, which has the characteristics of the least increase of entropy. With such a model, we anticipate to simulate certain types of problems in the real life that cannot be solved via simple computation (such as traffic jams among cities) and provide solutions to them.</div>
</li>
</li>

Revision as of 16:38, 26 September 2012

NOVA

Project PREVIEW We have three COOL sub-Projects
  • Post

    Project BIOWAVE As is known to all, negative feedback and time delay can cause oscillation in a pure physical system, such as sounds formed by oscillating air molecules and ripples produced via stirring water. What if the particles of wave are bacteria? In this project, we want to utilize a biological system with the properties of negative feedback and time-lapse to form a macroscopic wave-like pattern that could be visualized by the naked eye. Which the system is made by two parts: the light generator and the light sensor. When the light, which generated by the light generator, is strong enough that could be sensed by the light sensor. The sensor protein could repress the expression of light generator. This signal pathway, which based on light, makes the negative feedback. And the expression of light generator makes the time delay. We believe that with the limited spread of light on the colored plat medium, light output of the bacteria could make a biowave. This is the very first time that bacteria using light as an extracellular signal in synthetic biology. And the form of the oscillation pattern could help us explain a lot of biological problem, like the development of fingers and tones.
  • Post

    Project Bacto-TraffickingIt is about constructing a brand-new biological model using a recently discovered cellular structure termed Tunneling Nanotubes(TNT) and E.coli containing green fluorescent protein. By inducing and stabilizing TNTs between Hela cells, a complex cellular network can be established; then the GFP-marked E.coli are introduced into the Hela cells via electroporation—thereby a new type of biological system is created. Moreover, it is the behavior of the injected E.coli within the Hela cells that we want to study here. Since TNTs formed between cells act as super highways for material transportation, E.coli can move from one cell to another through TNTs. Given the condition that bacteria would tend to choose the most suitable place to live in, in the least energy-consuming way, a distribution pattern thus can be obtained, which has the characteristics of the least increase of entropy. With such a model, we anticipate to simulate certain types of problems in the real life that cannot be solved via simple computation (such as traffic jams among cities) and provide solutions to them.
  • Post

    Project LabCloudProject LabCloud aims to provide a mobile app for iGEMers share their experiments, logs, ideas, files and others in and between teams. It will also provide group’s shared calendar, instruments management and other powerful functions to help iGEMers’ cooperation. At last, it has the Push Notification feather to ensure communication in time.Besides, we create a APP Biobrick Viewer accompany with labcloud to provide a easy access to partsregistry.You will find them on App Store soon and there are free for iGEMers!)
Pellentesque habitant morbi tristique senectus et netus et malesuada.

Fames ac turpis egestas. Vestibulum tortor quam, feugiat vitae, ultricies eget, tempor sit amet, ante. Donec eu libero sit amet quam egestas semper. Aenean ultricies mi vitae est. Mauris placerat eleifend leo. Cursus faucibus, tortor neque egestas augue, eu vulputate magna eros eu erat. Aliquam erat volutpat. Nam dui mi, tincidunt quis, accumsan porttitor, facilisis luctus, metus.

Fames ac turpis egestas. Vestibulum tortor quam, feugiat vitae, ultricies eget, tempor sit amet, ante. Donec eu libero sit amet quam egestas semper. Aenean ultricies mi vitae est. Mauris placerat eleifend leo. Cursus faucibus, tortor neque egestas augue, eu vulputate magna eros eu erat. Aliquam erat volutpat. Nam dui mi, tincidunt quis, accumsan porttitor, facilisis luctus, metus.Fames ac turpis egestas. Vestibulum tortor quam, feugiat vitae, ultricies eget, tempor sit amet, ante. Donec eu libero sit amet quam egestas semper This is a link. Aenean ultricies mi vitae est. Mauris placerat eleifend leo. Cursus faucibus, tortor neque egestas augue, eu vulputate magna eros eu erat. Aliquam erat volutpat. Nam dui mi, tincidunt quis, accumsan porttitor, facilisis luctus, metus.

Read more →
  • Post
    Lorem ipsum dolor Pellentesque habitant morbi tristique senectus et netus et malesuada fames ac turpis egestas. Vestibulum tortor quam, feugiat vitae, ultricies eget, tempor sit amet, ante. Donec eu libero sit amet quam egestas semper. Aenean ultricies mi vitae est. Mauris placerat eleifend leo. Quisque sit amet est et sapien ullamcorper pharetra.
    Read more →
  • Post
    Lorem ipsum dolor Pellentesque habitant morbi tristique senectus et netus et malesuada fames ac turpis egestas. Vestibulum tortor quam, feugiat vitae, ultricies eget, tempor sit amet, ante. Donec eu libero sit amet quam egestas semper. Aenean ultricies mi vitae est. Mauris placerat eleifend leo. Quisque sit amet est et sapien ullamcorper pharetra.
    Read more →
  • Post
    Lorem ipsum dolor Pellentesque habitant morbi tristique senectus et netus et malesuada fames ac turpis egestas. Vestibulum tortor quam, feugiat vitae, ultricies eget, tempor sit amet, ante. Donec eu libero sit amet quam egestas semper. Aenean ultricies mi vitae est. Mauris placerat eleifend leo. Quisque sit amet est et sapien ullamcorper pharetra.
    Read more →
    Sponsors
    All rights reserved. Tempalate Edit by Fudan-lux team Powered By Luiszuno.com