Difference between revisions of "Team:Utrecht"

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Hello You!
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Welcome to our wiki page. We are <b>Team Utrecht 2018</b>, a very <b>diverse</b> team from <b>Utrecht University</b> in the Netherlands. Want to know more about our team?
<h1> Welcome to iGEM 2018! </h1>
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<p>Your team has been approved and you are ready to start the iGEM season! </p>
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</br></br>
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<a href = "https://2018.igem.org/Team:Utrecht/Team"> Click Here. </a>
  
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<b>Water</b> is arguably our most <b> precious resource</b>.
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Unfortunately, increased use of <b>pharmaceuticals</b> including <b>antidepressants</b> and chemotherapeutic medications are contaminating this valuable resource.
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<h3>Before you start</h3>
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<p> Please read the following pages:</p>
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After use of these medications, <b>remnants</b> are <b>disposed</b> through the sewage systems and eventually <b>contaminate surface waters</b>, resulting in an increased <b>pollutant concentration</b> in the <b>environment</b>.
<ul>
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<li>  <a href="https://2018.igem.org/Competition">Competition Hub</a> </li>
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<li> <a href="https://2018.igem.org/Competition/Deliverables/Wiki">Wiki Requirements page</a></li>
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<li> <a href="https://2018.igem.org/Resources/Template_Documentation">Template documentation</a></li>
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These <b>pharmaceutical waste products</b> are still <b>biologically active</b> in vertebrates.</br> For example, even low concentrations of antidepressants pose a <b>threat to ecological systems</b>.
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We talked to <b>water treatment companies</b>, <b>specialists</b> and other <b>stakeholders</b> about how to <b>improve</b> current detection <b>methods</b>. Key <b>requirements</b> for our biosensor included <b>safety</b>, <b>accuracy</b>, <b>high measurement rates</b> and <b>low costs</b>.
<h3> Styling your wiki </h3>
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<p>You may style this page as you like or you can simply leave the style as it is. You can easily keep the styling and edit the content of these default wiki pages with your project information and completely fulfill the requirement to document your project.</p>
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<p>While you may not win Best Wiki with this styling, your team is still eligible for all other awards. This default wiki meets the requirements, it improves navigability and ease of use for visitors, and you should not feel it is necessary to style beyond what has been provided.</p>  
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See more on <a href = "https://2018.igem.org/Team:Utrecht/Human_Practices"> Integrated Human Practices.</a>
 
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Based on the <b>input</b> of experts and stakeholders, we developed the <b>DeTaXion biosensor</b>. <b>DeTaXion</b> improves <b>identification</b> of <b>antidepressants</b> in water, based on the <b>chemotaxis pathway</b> of <i>E. coli.</i>
  
 
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For a more detailed discussion you can visit our  <a href = "https://2018.igem.org/Team:Utrecht/Description"> Project Description.</a>
 
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<h3> Uploading pictures and files </h3>
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<p> You must upload any pictures and files to the iGEM 2018 server. Remember to keep all your pictures and files within your team's namespace or at least include your team's name in the file name. </p>
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<p>When you upload, set the "Destination Filename" to <b> T--YourOfficialTeamName--NameOfFile.jpg</b>. (If you don't do this, someone else might upload a different file with the same "Destination Filename", and your file would be erased!)</p>
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UPLOAD FILES
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To achieve the <b>detection of antidepressants</b>, we set up a <b>three step</b> approach <a href = "https://2018.igem.org/Team:Utrecht/Design">Project Design</a>. The <b>chemotaxis pathway</b> of <i>Escherichia coli</i> was <b>adjusted</b> in such a manner that <i>E. coli</i> can detect antidepressants. Upon <b>recognition</b> of the antidepressant agents, the <b>light signal</b> produced by the <i>E. coli</i> changes. The <b>concentration range</b> to be detected was customized.
 
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<h3> Wiki template information </h3>
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Next, we performed these steps in the <b>lab</b>, which resulted into interesting <a href = "https://2018.igem.org/Team:Utrecht/Results">Findings</a>.</br></br>
<p>We have created these wiki template pages to help you get started and to help you think about how your team will be evaluated. You can find a list of all the pages tied to awards here at the <a href="https://2018.igem.org/Judging/Pages_for_Awards">Pages for awards</a> link. You must edit these pages to be evaluated for medals and awards, but ultimately the design, layout, style and all other elements of your team wiki is up to you!</p>
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Including a successfully developed <b>platform</b> to test the functionality of the <b>hybrid receptors</b>.
 
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<h3> Editing your wiki </h3>
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<p>On this page you can document your project, introduce your team members, document your progress and share your iGEM experience with the rest of the world! </p>  
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<p>Use WikiTools - Edit in the black menu bar to edit this page</p>
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EDIT PAGE
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Since we wanted to <b>enlighten</b> others about <b>biotechnology</b>, <b>water safety</b> and <b>valorisation</b>, we engaged the public at several <b>outreach events</b>, including our <a href = "https://2018.igem.org/Team:Utrecht/Conference"> biotechnology conference </a> and <a href = "https://2018.igem.org/Team:Utrecht/Public_Engagement#Events">“Weekend of Science”</a>, establishing an <b>open discussion</b>. More about this topic can be found in <a href = "https://2018.igem.org/Team:Utrecht/Public_Engagement">Public Engagement</a>.
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Furthermore, we <a href = "https://2018.igem.org/Team:Utrecht/Collaborations">collaborated</a> with other iGEM teams to get <b>valuable insights.</b></div>
  
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We also had to find the means to fund our project.
  
 
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Luckily, some parties were willing to invest
 
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their time and capital in us.
 
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</br></br></br>
 
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We are very grateful to our <a href = "https://2018.igem.org/Team:Utrecht/Sponsors">Sponsors</a> and other <a href = "https://2018.igem.org/Team:Utrecht/Attributions">Contributors</a>.
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A special thank you for your help!
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<h3>Tips</h3>
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<p>This wiki will be your team’s first interaction with the rest of the world, so here are a few tips to help you get started: </p>
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<li>State your accomplishments! Tell people what you have achieved from the start. </li>
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<li>Be clear about what you are doing and how you plan to do this.</li>
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<li>You have a global audience! Consider the different backgrounds that your users come from.</li>
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<li>Make sure information is easy to find; nothing should be more than 3 clicks away.  </li>
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<li>Avoid using very small fonts and low contrast colors; information should be easy to read.  </li>
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<li>Start documenting your project as early as possible; don’t leave anything to the last minute before the Wiki Freeze. For a complete list of deadlines visit the <a href="https://2018.igem.org/Calendar">iGEM 2018 calendar</a> </li>
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<li>Have lots of fun! </li>
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After a lot of late nights, long hours in the laboratory, insightful conversations with stakeholders, sweat (maybe some tears) and a massive amount of laughter and joy.
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</br></br>
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We, <b>Team Utrecht 2018</b>, proudly present you our <b>applied product:</b>
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</br></br>
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<a href = "https://2018.igem.org/Team:Utrecht/Applied_Design"><i style = "font-size: 1.6vw"><u><b>DeTaXion</a>: A biosensor to rapidly identify harmful pharmaceuticals in surface waters.</i>
  
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<h3>Inspiration</h3>
 
<p> You can also view other team wikis for inspiration! Here are some examples:</p>
 
<ul>
 
<li> <a href="https://2014.igem.org/Team:SDU-Denmark/"> 2014 SDU Denmark </a> </li>
 
<li> <a href="https://2014.igem.org/Team:Aalto-Helsinki">2014 Aalto-Helsinki</a> </li>
 
<li> <a href="https://2014.igem.org/Team:LMU-Munich">2014 LMU-Munich</a> </li>
 
<li> <a href="https://2014.igem.org/Team:Michigan"> 2014 Michigan</a></li>
 
<li> <a href="https://2014.igem.org/Team:ITESM-Guadalajara">2014 ITESM-Guadalajara </a></li>
 
<li> <a href="https://2014.igem.org/Team:SCU-China"> 2014 SCU-China </a></li>
 
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Latest revision as of 19:56, 6 December 2018

Hello You!

Welcome to our wiki page. We are Team Utrecht 2018, a very diverse team from Utrecht University in the Netherlands. Want to know more about our team?

Click Here.
Water is arguably our most precious resource. Unfortunately, increased use of pharmaceuticals including antidepressants and chemotherapeutic medications are contaminating this valuable resource.
After use of these medications, remnants are disposed through the sewage systems and eventually contaminate surface waters, resulting in an increased pollutant concentration in the environment.
These pharmaceutical waste products are still biologically active in vertebrates.
For example, even low concentrations of antidepressants pose a threat to ecological systems.
We talked to water treatment companies, specialists and other stakeholders about how to improve current detection methods. Key requirements for our biosensor included safety, accuracy, high measurement rates and low costs. See more on Integrated Human Practices.
Based on the input of experts and stakeholders, we developed the DeTaXion biosensor. DeTaXion improves identification of antidepressants in water, based on the chemotaxis pathway of E. coli. For a more detailed discussion you can visit our Project Description.
To achieve the detection of antidepressants, we set up a three step approach Project Design. The chemotaxis pathway of Escherichia coli was adjusted in such a manner that E. coli can detect antidepressants. Upon recognition of the antidepressant agents, the light signal produced by the E. coli changes. The concentration range to be detected was customized.
Next, we performed these steps in the lab, which resulted into interesting Findings.

Including a successfully developed platform to test the functionality of the hybrid receptors.
Since we wanted to enlighten others about biotechnology, water safety and valorisation, we engaged the public at several outreach events, including our biotechnology conference and “Weekend of Science”, establishing an open discussion. More about this topic can be found in Public Engagement.

Furthermore, we collaborated with other iGEM teams to get valuable insights.
We also had to find the means to fund our project. Luckily, some parties were willing to invest their time and capital in us.


We are very grateful to our Sponsors and other Contributors. A special thank you for your help!
After a lot of late nights, long hours in the laboratory, insightful conversations with stakeholders, sweat (maybe some tears) and a massive amount of laughter and joy.

We, Team Utrecht 2018, proudly present you our applied product:

DeTaXion: A biosensor to rapidly identify harmful pharmaceuticals in surface waters.