Team:Utah State

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<h2> Project Abstract </h2>
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Laundry detergents are one of the most commonly used household cleaning products in today’s society because they effectively clean and remove stains from clothing. Even though they are relatively harmless to humans, laundry detergents contain caustic chemicals and reagents that have a detrimental impact on the environment. Our aim is to use enzymatic means of cleaning to reduce the amount of detergent necessary for normal washes as well as increase the efficiency of stain removal. We have engineered <i>E. coli</i> to produce enzymes that can be used to remove laundry stains such as grass, starch, and oils. By functionalizing these enzymes on a bioplastic material that can be used as an additive to traditional laundry cycles, we hope to improve the sanitation of clothing and other washable materials. The demonstration of enzyme functionality after biological immobilization will create a platform for future teams to display enzymes relevant to other applications.
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<h3>Can you imagine...</h3>
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<p>a life without clean clothes? Oh, the smell alone! Not to mention the unsightly colors and spots that would accumulate from your native food and flora. Detergents help run the world of personal hygiene and first impressions. Nobody wants a bad memory left from our appearance. Although detergents have ruled our laundry closets and will remain a household staple, innovations ought to transpire to create more ecologically friendly formulas. Who better to learn from than the creator of those stains, nature herself? Enzymes are nature’s catalyst to either create or destroy bonds, to break down those stains.
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There is a need for this change because of the impact of detergent on water quality. Logan city is an example. Surrounded by the beautiful mountains of Cache valley, Utah State University is one of the gems of Logan city. In the middle of the valley, hidden by wetlands and marsh, are over 1 billion gallons worth of lagoons holding Logan city’s waste water. These lagoons treat the water through a series of natural processes. The out stream only needs to be lightly chlorinated before returning to the environment. This solution has worked for decades until recently when nutrient levels of the out stream remained too high, nutrients including phosphate [1,2]. Phosphates can be found in most laundry detergents, shampoos, and fertilizer.
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<h1 >WELCOME TO iGEM 2014! </h1>
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<p>Your team has been approved and you are ready to start the iGEM season!
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<br>On this page you can document your project, introduce your team members, document your progress <br> and share your iGEM experience with the rest of the world! </p>
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<p style="color:#E7E7E7"> <a href="https://2014.igem.org/wiki/index.php?title=Team:Utah_State&action=edit"style="color:#FFFFFF"> Click here  to edit this page!</a> </p>
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The hazards of phosphate in detergents has been known to producers since the 1980’s [3]. Only recently have leading companies made enough progress to announce intentions to completely remove phosphates from their formulas [4]. Although progress has been made, new innovations must continue. With our project solution there is also potential to help third world countries without access to detergent or populations where phosphate regulation is disregarded.
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<h2> References </h2>
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[1] http://www.loganutah.org/Environmental/Waste%20Water%20Treatment/  
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[2] “City of Logan: Wastewater Treatment Master Plan Update 2013”
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<a href="https://2014.igem.org/Team:Utah_State"style="color:#000000">Home </a> </td>
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[3] https://www.deq.idaho.gov/media/892716-dishwaster-detergent-phosphorus-pilot-study-1101.pdf
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<a href="https://2014.igem.org/Team:Utah_State/Team"style="color:#000000"> Team </a> </td>
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[4] http://www.greenbiz.com/blog/2014/01/28/pg-aims-remove-phosphates-leading-detergent-brands
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<a href="https://igem.org/Team.cgi?year=2014&team_name=Utah_State"style="color:#000000"> Official Team Profile </a></td>
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<a href="https://2014.igem.org/Team:Utah_State/Project"style="color:#000000"> Project</a></td>
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<a href="https://2014.igem.org/Team:Utah_State/Modeling"style="color:#000000"> Modeling</a></td>
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<p> Please be sure to keep these links, your audience will want to find your: </p>
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<li><a href="https://2014.igem.org/Team:Utah_State">Home</a> </li>
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<li><a href="https://2014.igem.org/Team:Utah_State/Team">Team</a> </li>
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<li><a href="https://igem.org/Team.cgi?year=2013&team_name=Utah_State">Official Team Profile</a> </li>
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<li><a href="https://2014.igem.org/Team:Utah_State/Project">Project</a> </li>
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<li><a href="https://2014.igem.org/Team:Utah_State/Parts">Parts</a> </li>
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<li><a href="https://2014.igem.org/Team:Utah_State/Safety">Safety</a> </li>
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<li>As part of your documentation, keep the links from the menu to the left. </li>
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<li>The <a href="https://static.igem.org/mediawiki/igem.org/6/60/Igemlogo_300px.png"> iGEM logo </a> should be placed on the upper part of every page and should link to <a href="https://2014.igem.org/Main_Page">2014.igem.org</a>.</li>
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<p>Visit the <a href="https://2014.igem.org/Wiki_How-To"> Wiki How To page </a> for a complete list of requirements, tips and other useful information. </p>
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<p><b>The 2014 Utah State University iGEM team aims to engineer <i>E. coli</i> to eliminate tough laundry stains using enzymes that can break down various stains (e.g. oils, proteins, starches, pigments). By biologically immobilizing these enzymes onto bacterially-produced bioplastic, we plan to create a reusable stain-fighting device to be used as a pre-treatment or as an additive to traditional laundry. </b></p>
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<p>We are currently working on providing teams with some easy to use design templates.
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<br> In the meantime you can also view other team wikis for inspiration! Here are some very good examples</p>
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<li> <a href="https://2013.igem.org/Team:SDU-Denmark/"> 2013 SDU Denmark </a> </li>
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<li> <a href="https://2013.igem.org/Team:SYSU-China">2013 SYSU China</a> </li>
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<li> <a href="https://2013.igem.org/Team:Shenzhen_BGIC_ATCG"> 2013 Shenxhen BGIG ATCG </a></li>
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<li> <a href="https://2013.igem.org/Team:Colombia_Uniandes">2013 Colombia Unianades </a></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="">iGEM 2013 calendar</a> </li>
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Latest revision as of 01:45, 18 October 2014

Project Abstract

Laundry detergents are one of the most commonly used household cleaning products in today’s society because they effectively clean and remove stains from clothing. Even though they are relatively harmless to humans, laundry detergents contain caustic chemicals and reagents that have a detrimental impact on the environment. Our aim is to use enzymatic means of cleaning to reduce the amount of detergent necessary for normal washes as well as increase the efficiency of stain removal. We have engineered E. coli to produce enzymes that can be used to remove laundry stains such as grass, starch, and oils. By functionalizing these enzymes on a bioplastic material that can be used as an additive to traditional laundry cycles, we hope to improve the sanitation of clothing and other washable materials. The demonstration of enzyme functionality after biological immobilization will create a platform for future teams to display enzymes relevant to other applications.

Can you imagine...

a life without clean clothes? Oh, the smell alone! Not to mention the unsightly colors and spots that would accumulate from your native food and flora. Detergents help run the world of personal hygiene and first impressions. Nobody wants a bad memory left from our appearance. Although detergents have ruled our laundry closets and will remain a household staple, innovations ought to transpire to create more ecologically friendly formulas. Who better to learn from than the creator of those stains, nature herself? Enzymes are nature’s catalyst to either create or destroy bonds, to break down those stains.

There is a need for this change because of the impact of detergent on water quality. Logan city is an example. Surrounded by the beautiful mountains of Cache valley, Utah State University is one of the gems of Logan city. In the middle of the valley, hidden by wetlands and marsh, are over 1 billion gallons worth of lagoons holding Logan city’s waste water. These lagoons treat the water through a series of natural processes. The out stream only needs to be lightly chlorinated before returning to the environment. This solution has worked for decades until recently when nutrient levels of the out stream remained too high, nutrients including phosphate [1,2]. Phosphates can be found in most laundry detergents, shampoos, and fertilizer.

The hazards of phosphate in detergents has been known to producers since the 1980’s [3]. Only recently have leading companies made enough progress to announce intentions to completely remove phosphates from their formulas [4]. Although progress has been made, new innovations must continue. With our project solution there is also potential to help third world countries without access to detergent or populations where phosphate regulation is disregarded.

References

[1] http://www.loganutah.org/Environmental/Waste%20Water%20Treatment/

[2] “City of Logan: Wastewater Treatment Master Plan Update 2013”

[3] https://www.deq.idaho.gov/media/892716-dishwaster-detergent-phosphorus-pilot-study-1101.pdf

[4] http://www.greenbiz.com/blog/2014/01/28/pg-aims-remove-phosphates-leading-detergent-brands