Team:TU-Munich

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     <span id="countdown" style="color: #502204; font: normal 24px/40px sketch_rockwell,Arial,sans-serif;"></span> left to Regional Wiki Freeze
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   <a class="tour start" href="https://2013.igem.org/Team:TU-Munich/Project/Overview">Take the Tour</a>
   <a class="tour start" href="https://2013.igem.org/Team:TU-Munich/Project/Overview">Take the Tour</a>
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   <a class="button application" href="https://2013.igem.org/Team:TU-Munich/Project/Implementation">Application</a>
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   <a class="button entrepreneur" href="https://2013.igem.org/Team:TU-Munich/Results/Economics">Entrepreneur</a>
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== PhyscoFilter &ndash; Clean different ==
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== PhyscoFilter &ndash; Clean different. ==
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The contamination of aquatic ecosystems with a multitude of anthropogenic pollutants has been a problem since the industrial revolution. Antibiotics, hormones and various noxious substances threaten environmental health and are not effectively removed by conventional waste water treatment. We propose to employ transgenic plants which produce effectors for enzymatic degradation ([https://2013.igem.org/Team:TU-Munich/Project/Biodegradation BioDegradation]) or specific binding ([https://2013.igem.org/Team:TU-Munich/Project/Bioaccumulation BioAccumulation]) of pollutants. The autotrophic, sedentary, aquatic nature of the moss [https://2013.igem.org/Team:TU-Munich/Project/Physcomitrella ''Physcomitrella patens''] makes it an optimal chassis for a self-renewing, low-maintenance and cheap water filter. A light-triggered [https://2013.igem.org/Team:TU-Munich/Project/Killswitch kill switch] prevents unintended environmental spreading by limiting viability to places where the spectrum of sun light is appropriately filtered. Furthermore, we have developed a device to [https://2013.igem.org/Team:TU-Munich/Project/Implementation implement our filter] in an aquatic environment, investigated the application of this new technology and examined its [https://2013.igem.org/Team:TU-Munich/Results/Economics economic feasibility]. Based on our results, PhyscoFilter may become a game-changing approach to improve global water quality in an affordable and sustainable fashion.
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The contamination of aquatic ecosystems with a multitude of anthropogenic pollutants has been a problem since the industrial revolution. Antibiotics, hormones and various noxious substances threaten environmental health and are not effectively removed by conventional waste water treatment. We propose to employ transgenic plants which produce effectors for enzymatic degradation ([https://2013.igem.org/Team:TU-Munich/Project/Biodegradation BioDegradation]) or specific binding ([https://2013.igem.org/Team:TU-Munich/Project/Bioaccumulation BioAccumulation]) of pollutants. The autotrophic, sedentary, aquatic nature of the moss [https://2013.igem.org/Team:TU-Munich/Project/Physcomitrella ''Physcomitrella patens''] makes it an optimal chassis for a self-renewing, low-maintenance and cheap water filter. A light-triggered [https://2013.igem.org/Team:TU-Munich/Project/Killswitch kill switch] prevents unintended environmental spreading by limiting viability to places where the spectrum of sunlight is appropriately filtered. Furthermore, we have developed a device to [https://2013.igem.org/Team:TU-Munich/Results/Implementation implement our filter] in an aquatic environment, investigated the application of this new technology and examined its [https://2013.igem.org/Team:TU-Munich/Results/Economics economic feasibility]. Based on our results, the PhyscoFilter may become a game-changing approach to improve global water quality in an affordable and sustainable fashion.
<html>
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<right><iframe style="box-shadow: 1px 1px 2px rgba(0, 0, 0, 0.2);padding: 5px;margin: 5px;background-color: white;" src="http://player.vimeo.com/video/76195786" width="900" height="510" frameborder="0" webkitAllowFullScreen mozallowfullscreen allowFullScreen></iframe></right></html>
<right><iframe style="box-shadow: 1px 1px 2px rgba(0, 0, 0, 0.2);padding: 5px;margin: 5px;background-color: white;" src="http://player.vimeo.com/video/76195786" width="900" height="510" frameborder="0" webkitAllowFullScreen mozallowfullscreen allowFullScreen></iframe></right></html>
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== Achievements ==
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<html><div class="thumb tright" id="blubberkolben">
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    <div class="thumbinner" style="width:400px;">
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        <a href="/File:TUM13_blubbern-stop.gif" class="image">
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            <img alt="" src="https://static.igem.org/mediawiki/2013/a/ab/TUM13_blubbern-stop.gif" width="400" class="thumbimage" />
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        <div class="thumbcaption">
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            <div class="magnify">
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                <a href="/File:TUM13_Physco-lifecycle.png" class="internal" title="Enlarge">
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                    <img src="/wiki/skins/common/images/magnify-clip.png" width="15" height="11" alt="" />
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                </a>
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            </div>
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        Hover over the picture!<br />Then you can actually <b>HEAR</b> the sound in our laboratory.
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        </div>
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    </div>
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<div class="achievements">
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==== European Jamboree [https://igem.org/Results?year=2013&region=All&division=igem results]: ====
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* Gold medal
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* Best Wiki
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* European First Runner Up
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==== World Jamboree [https://igem.org/Results?year=2013&region=All&division=igem results]: ====
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* Best Environment Project
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* World First Runner Up
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==== Business plan competitions after iGEM: ====
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* 1<sup>st</sup> place at the [http://www.tum.de/die-tum/aktuelles/pressemitteilungen/kurz/article/31350/ TUM IdeAward]
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* 2<sup>nd</sup> place at the [http://www.presseportal.de/print/2731699-projekt-zum-internet-der-dinge-gewinnt-hochschulwettbewerb-der.html Be.Project Competition]
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* 3<sup>rd</sup> place in the second round of the [http://www.tum.de/wirtschaft/entrepreneurship/entrepreneurship-news/artikel/article/31515/ Munich Business Plan Competition]
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</div>
== Sponsors ==
== Sponsors ==
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<a class="sponsor" href="http://eu.idtdna.com/site/"><img src="https://static.igem.org/mediawiki/2013/1/13/Bonn_sponsor_idt.jpg" width="180px"></a>  
<a class="sponsor" href="http://eu.idtdna.com/site/"><img src="https://static.igem.org/mediawiki/2013/1/13/Bonn_sponsor_idt.jpg" width="180px"></a>  
<a class="sponsor" href="http://www.thermoscientific.com"><img src="https://static.igem.org/mediawiki/2013/e/ed/TUM13_Sponsor_logo_Thermo.jpg" width="140px"></a>
<a class="sponsor" href="http://www.thermoscientific.com"><img src="https://static.igem.org/mediawiki/2013/e/ed/TUM13_Sponsor_logo_Thermo.jpg" width="140px"></a>
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<a class="sponsor" href="http://www.erasynbio.eu/"><img src="https://static.igem.org/mediawiki/2013/5/58/Logo_ERASynBio.png" width="180px"></a>
<div class="visualClear"></div>
<div class="visualClear"></div>
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<a class="sponsor" style="float: none; margin: 10px auto;" href="http://www.roche.com/"><img src="https://static.igem.org/mediawiki/2013/d/d2/TUM13_Roche.jpg" height="80px"></a>
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<center style="margin-top: 10px;"><a href="http://www2.clustrmaps.com/user/c81109e0d" id="clustrMapsLink"><img src="http://www2.clustrmaps.com/stats/maps-no_clusters/2013.igem.org-Team-TU-Munich-thumb.jpg" style="border:0px;" alt="Locations of visitors to this page" title="Locations of visitors to this page" id="clustrMapsImg" onerror="this.onerror=null; this.src='http://clustrmaps.com/images/clustrmaps-back-soon.jpg'; document.getElementById('clustrMapsLink').href='http://clustrmaps.com';" width="150" /></a></center>

Latest revision as of 20:36, 22 June 2014


left to World Wiki Freeze
Take the Tour

PhyscoFilter – Clean different.

The contamination of aquatic ecosystems with a multitude of anthropogenic pollutants has been a problem since the industrial revolution. Antibiotics, hormones and various noxious substances threaten environmental health and are not effectively removed by conventional waste water treatment. We propose to employ transgenic plants which produce effectors for enzymatic degradation (BioDegradation) or specific binding (BioAccumulation) of pollutants. The autotrophic, sedentary, aquatic nature of the moss Physcomitrella patens makes it an optimal chassis for a self-renewing, low-maintenance and cheap water filter. A light-triggered kill switch prevents unintended environmental spreading by limiting viability to places where the spectrum of sunlight is appropriately filtered. Furthermore, we have developed a device to implement our filter in an aquatic environment, investigated the application of this new technology and examined its economic feasibility. Based on our results, the PhyscoFilter may become a game-changing approach to improve global water quality in an affordable and sustainable fashion.

Achievements

Hover over the picture!
Then you can actually HEAR the sound in our laboratory.

European Jamboree results:

  • Gold medal
  • Best Wiki
  • European First Runner Up

World Jamboree results:

  • Best Environment Project
  • World First Runner Up

Business plan competitions after iGEM:

  • 1st place at the [http://www.tum.de/die-tum/aktuelles/pressemitteilungen/kurz/article/31350/ TUM IdeAward]
  • 2nd place at the [http://www.presseportal.de/print/2731699-projekt-zum-internet-der-dinge-gewinnt-hochschulwettbewerb-der.html Be.Project Competition]
  • 3rd place in the second round of the [http://www.tum.de/wirtschaft/entrepreneurship/entrepreneurship-news/artikel/article/31515/ Munich Business Plan Competition]

Sponsors

Locations of visitors to this page