Team:IvyTech-South Bend

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<img src="https://static.igem.org/mediawiki/2010/2/2d/IvyTech-South_Bend_logo.png" align="left"><img src="https://static.igem.org/mediawiki/2010/7/76/Igem1.png" align="left"><a href="https://2010.igem.org/Team:IvyTech-South_Bend/Team">
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You are provided with this team page template with which to start the iGEM season.  You may choose to personalize it to fit your team but keep the same "look." Or you may choose to take your team wiki to a different level and design your own wiki.  You can find some examples <a href="https://2009.igem.org/Help:Template/Examples">HERE</a>.
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You <strong>MUST</strong> have a team description page, a project abstract, a complete project description, a lab notebook, and a safety page.  PLEASE keep all of your pages within your teams namespace. 
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|Our iGEM team is composed primarily of Ivy Tech Biotech students, most of which are getting credit for their program capstone course (BIOT 280).  Our team is open to others...please inquire...gtwaddle@ivytech.edu
|Our iGEM team is composed primarily of Ivy Tech Biotech students, most of which are getting credit for their program capstone course (BIOT 280).  Our team is open to others...please inquire...gtwaddle@ivytech.edu
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''Tell us more about your project.  Give us background.  Use this as the abstract of your project.  Be descriptive but concise (1-2 paragraphs)''
 
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|align="center"|[[Team:IvyTech-South_Bend | Team Example]] HI Amr
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<!--- The Mission, Experiments --->
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== PROJECT DESCRIPTION: ==
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Anyone who wants to enjoy bathing in natural bodies of water in or near areas populated by humans or livestock may encounter unsafe levels of enteric bacteria and other opportunists.  Contemporary methods of assessing water quality have a slow turn-around time so we have taken steps to perfect a biosensor for rapidly indirectly quantifying the presence of enteric bacteria in natural water samples through the detection of quorum sensing factors.  Previous IGEMS have exploited the LuxR/pLux system for the detection of a variety of N-acylhomoserine lactone autoinducers.  We have taken steps to further perfect a biosensor based on this device by transforming a gram-positive bacteria host to eliminate any background autoinducer signal and to build-in an enzymatic “read-out” to obtain an analog output.  We envision the development of a handheld monitor that uses this IGEM biosensor, immobilized on input paper strips, to rapidly detect unsafe levels of enteric bacteria in water samples.
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{| style="color:#1b2c8a;background-color:#006644;" cellpadding="3" cellspacing="1" border="1" bordercolor="#DDDDDD" width="62%" align="center"
!align="center"|[[Team:IvyTech-South_Bend|Home]]
!align="center"|[[Team:IvyTech-South_Bend|Home]]
!align="center"|[[Team:IvyTech-South_Bend/Team|Team]]
!align="center"|[[Team:IvyTech-South_Bend/Team|Team]]
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!align="center"|[[Team:IvyTech-South_Bend/Notebook|Notebook]]
!align="center"|[[Team:IvyTech-South_Bend/Notebook|Notebook]]
!align="center"|[[Team:IvyTech-South_Bend/Safety|Safety]]
!align="center"|[[Team:IvyTech-South_Bend/Safety|Safety]]
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Latest revision as of 03:22, 28 October 2010


Our iGEM team is composed primarily of Ivy Tech Biotech students, most of which are getting credit for their program capstone course (BIOT 280). Our team is open to others...please inquire...gtwaddle@ivytech.edu

PROJECT DESCRIPTION:

Anyone who wants to enjoy bathing in natural bodies of water in or near areas populated by humans or livestock may encounter unsafe levels of enteric bacteria and other opportunists. Contemporary methods of assessing water quality have a slow turn-around time so we have taken steps to perfect a biosensor for rapidly indirectly quantifying the presence of enteric bacteria in natural water samples through the detection of quorum sensing factors. Previous IGEMS have exploited the LuxR/pLux system for the detection of a variety of N-acylhomoserine lactone autoinducers. We have taken steps to further perfect a biosensor based on this device by transforming a gram-positive bacteria host to eliminate any background autoinducer signal and to build-in an enzymatic “read-out” to obtain an analog output. We envision the development of a handheld monitor that uses this IGEM biosensor, immobilized on input paper strips, to rapidly detect unsafe levels of enteric bacteria in water samples.

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