Team:Dundee

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<link href="https://2014.igem.org/Team:Dundee/css/homepage?action=raw&ctype=text/css" rel="stylesheet">     
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             <div class="modal-header">
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         <button type="button" class="close" data-dismiss="modal" aria-hidden="true" id="closeNote">&times;</button>
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         <h4 class="modal-title" id="myModalLabel">Welcome to Dundee's 2014 Wiki</h4>
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         <h4 class="modal-title" id="myModalLabel">Welcome to Dundee's 2014 Wiki (<b>Site Information</b>)</h4>
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   <li class="active"><a href="#ab" data-toggle="tab">Abstract</a></li>
   <li class="active"><a href="#ab" data-toggle="tab">Abstract</a></li>
   <li><a href="#nav" data-toggle="tab">Navigation Instructions</a></li>
   <li><a href="#nav" data-toggle="tab">Navigation Instructions</a></li>
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   <li><a href="#spon" data-toggle="tab">Sponsers</a></li>
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   <li><a href="#spon" data-toggle="tab">Sponsors</a></li>
    
    
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   <div class="tab-pane active" id="ab">
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   Cystic Fibrosis is a genetic disease that results in the accumulation of thick mucus in the epithelial linings of the entire body, particularly the respiratory tract. Over the course of a patient’s life the mucus-lined lung epithelium becomes repeatedly infected with pathogenic bacteria that stimulate an immune response, leading to inflammation, tissue damage, and ultimately, respiratory failure.   
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   Cystic Fibrosis is a genetic disease that results in the accumulation of thick mucus in the epithelial linings of the entire body, particularly the respiratory tract. Over the course of a patient’s life, the mucus-lined lung epithelium becomes repeatedly infected with pathogenic bacteria that stimulate an immune response; leading to inflammation, tissue damage, and ultimately, respiratory failure.   
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The microflora of the Cystic Fibrosis lung changes over time. In childhood, the major coloniser is Staphylococcus aureus, but as the patient matures other bacterial pathogens infect. The later-dominating pathogens, Pseudomonas aeruginosa and Burkholderia cepacia, are very difficult to eradicate and are associated with chronic decline in lung function. Burkholderia is so infectious, that patients have to be isolated from one another, and can be denied lung transplants due to the difficulty of eradication this bacterium.  
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The microflora of the Cystic Fibrosis lung changes over time. In childhood, the major coloniser is <i>Staphylococcus aureus</i>, but as the patient matures other bacterial pathogens infect. The later-dominating pathogens, <i>Pseudomonas aeruginosa</i> and <i>Burkholderia cepacia</i>, are very difficult to eradicate and are associated with chronic decline in lung function. <i>Burkholderia</i> is so infectious that patients have to be isolated from one another, and can be denied lung transplants due to the persistence of this bacterium.  
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The Dundee 2014 iGEM project is focused on designing and testing a device that will rapidly and non-invasively identify the bacteria colonising a Cystic Fibrosis patient. Three biosensors will be developed that recognise external signal molecules produced by key bacteria, all of which are known to be in sputum samples of Cystic Fibrosis patients. A quinolone signal (PQS) is produced by Pseudomonas aeruginosa, a Diffusible Signal Factor (DSF) is produced by Stenotrophomonas maltophilia, an organism that is also associated with cystic fibrosis lung infection in adults, and BDSF is a related, but chemically distinct molecule that is produced by Burkholderia cepacia.  
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The Dundee 2014 iGEM project is focused on designing and testing a device that will rapidly and non-invasively identify the bacteria colonising a Cystic Fibrosis patient. Three biosensors will be developed that recognise external signal molecules produced by key bacteria, all of which are known to be in sputum samples of Cystic Fibrosis patients. A quinolone signal (PQS) is produced by <i>Pseudomonas aeruginosa</i>, a Diffusible Signal Factor (DSF) is produced by <i>Stenotrophomonas maltophilia</i>, an organism that is also associated with Cystic Fibrosis lung infection in adults, and BDSF is a related, but chemically distinct molecule that is produced by <i>Burkholderia cepacia</i>.  
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Read this again by clicking on the board!       
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Read this again by clicking on <b>Site Information</b> in the navigation bar!       
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          <div class="col-sm-9 col-md-9">
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    <h3>Bulletin Board (Policy & Practice)</h3>
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    <p>
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    Come look at the poster explaining how we involved the local and national Cystic Fibrosis community in our project, how we listened to people on the front line of the disease and how they affected our project.
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    </p> 
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     <h3>School</h3>  
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     <h3>School (Project)</h3>  
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      Come in and learn about all the parts that make The Lung Ranger. The lab work that we carried out over the   
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         summer is explained here in detail, along with the modelling and implementation.  
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<h3>Library</h3>  
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<h3>Library (Log Book)</h3>  
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         Read about the experience the team has had over the summer. A week by week description of our work, how we carried out that work and some photos of our time together.
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  <h3>Saloon</h3>  
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  <h3>Saloon (iGEM community)</h3>  
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Come on in, take a seat and learn how we have interacted with the larger iGEM community. Who the team are, who helped them and how we helped others.
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       <h1>SPONSERS GO HERE!!!!!</h1>
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        <img  class="img-responsive" src="https://static.igem.org/mediawiki/2014/1/17/DunUni.png" />                             
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<p>
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<b>College of Life Sciences</b>
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With more than 1100 staff and research students and external funding of around £60 million per year, the College of Life Sciences is one of the largest and most productive research institutes in Europe. This reputation is genuinely global and is reflected in the fact that researchers in our laboratories represent no fewer than 62 different nationalities
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<b>Division of Mathematics</b>
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A small friendly Division which offers a lively and modern programme of study at both undergraduate and postgraduate level.We have research groups in Mathematical Biology, Numerical Analysis and Scientific Computing, Magnetohydrodynamics and Applied Analysis.
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<b>School of Computing</b>
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With research areas in Human Centred Computing, Intelligent Systems, Space Technologies and Theory of Computation, the department has an emphasis on development. Furthermore, this department teaches popular undergraduate programs in Applied Computing and Computing Science.
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        <img  class="img-responsive" src="https://static.igem.org/mediawiki/2014/a/a4/DunWelcome.png" />                             
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    </a>
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We are a global charitable foundation dedicated to achieving extraordinary improvements in human and animal health. We support the brightest minds in biomedical research and the medical humanities. Our breadth of support includes public engagement, education and the application of research to improve health. We are independent of both political and commercial interests.
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        <img  class="img-responsive"  src="https://static.igem.org/mediawiki/2014/a/aa/DunBBSRC.png" />                             
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BBSRC has a unique and central place in supporting the UK’s world-leading position in bioscience. We are an investor in research and training, with the aim of furthering scientific knowledge, to promote economic growth, wealth and job creation and to improve quality of life in the UK and beyond.
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        <img  class="img-responsive"  src="https://static.igem.org/mediawiki/2014/1/16/DunBiochemical.png" />                             
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The Biochemical Society exists for the advancement of the molecular and cellular biosciences, both as an academic discipline and to promote its impact on areas of science including biotechnology, agriculture, and medicine.
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        <img  class="img-responsive"  src="https://static.igem.org/mediawiki/2014/3/36/DunMicrobiology.png" />                             
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    </a>
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The Society for General Microbiology is a membership organisation for scientists who work in all areas of microbiology. The Society promotes the understanding of microbiology to a diverse range of stakeholders, including policy-makers, students, teachers, journalists and the wider public, through a comprehensive framework of communication activities and resources.
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Established in 2007, Scottish Universities Life Sciences Alliance (SULSA) is a research pooling partnership between the Universities of Aberdeen, Dundee, Edinburgh, Glasgow, St Andrews and Strathclyde that is supported by the Scottish Funding Council.
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EASTBIO - the BBSRC East of Scotland Bioscience Doctoral Training Partnership - is a partnership between the Universities of Aberdeen, Dundee, Edinburgh and St Andrews; the Scottish Universities Life Sciences Alliance; and the Scottish Universities Physics Alliance. The DTP scheme will provide students with excellent cross-disciplinary research training in line with the current BBSRC strategy for research support and training.
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Latest revision as of 22:47, 17 October 2014

Dundee 2014