Difference between revisions of "Team:FJNU-China/Applied Design"

 
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<li class="clearfix"><a href="#">Projects</a>
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<li><a href="https://2018.igem.org/Team:FJNU-China/Description">Description</a></li>
 
<li><a href="https://2018.igem.org/Team:FJNU-China/Description">Description</a></li>
 
<li ><a href="https://2018.igem.org/Team:FJNU-China/Design">Design</a></li>
 
<li ><a href="https://2018.igem.org/Team:FJNU-China/Design">Design</a></li>
 
<li ><a href="https://2018.igem.org/Team:FJNU-China/Result">Results</a></li>
 
<li ><a href="https://2018.igem.org/Team:FJNU-China/Result">Results</a></li>
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<li><a href="https://2018.igem.org/Team:FJNU-China/Applied_Design">Application</a></li>
 
<li><a href="https://2018.igem.org/Team:FJNU-China/Demonstrate">Demonstrate</a></li>
 
<li><a href="https://2018.igem.org/Team:FJNU-China/Demonstrate">Demonstrate</a></li>
<li><a href="https://2018.igem.org/Team:FJNU-China/Model">Model</a></li>
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<li class="clearfix"><a href="https://2018.igem.org/Team:FJNU-China/Model">Model</a></li>
 
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<li class="active"><a href="#">HP</a>
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<li><a href="https://2018.igem.org/Team:FJNU-China/Overview">Overview</a></li>
 
<li><a href="https://2018.igem.org/Team:FJNU-China/Overview">Overview</a></li>
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  <h1 style="text-align: center;margin-top: 100px; font-size:40px; padding-bottom:5px;">Appiled Design</h1>
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  <h1 style="text-align: center;margin-top: 100px; font-size:40px; padding-bottom:5px;">Applied Design</h1>
 
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<h2 class="" style="font-size:30px; padding-bottom:5px;">Overview</h2>
 
<h2 class="" style="font-size:30px; padding-bottom:5px;">Overview</h2>
 
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   <p>As we know, the purpose of modeling is mainly to provide guidance and solve problems for the team experiment. So, before we designed the model, we sorted out some of the problems the team was facing. Based on these three problems,.Because The effect of PLA concentration on the quantity Staphylococcus epidermidis.Vestibulum quis quam ut magna consequat faucibus. Pellentesque eget nisi a mi suscipit tincidunt. Ut tempus dictum risus. Pellentesque viverra sagittis quam at mattis. Suspendisse potenti. Aliquam sit amet gravida nibh, facilisis gravida odio. Phasellus auctor velit at lacus blandit, commodo iaculis justo viverra. Etiam vitae est arcu.</p>
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   <p style="text-align: justify;">&nbsp;&nbsp;&nbsp;&nbsp;In order to realize the application of PLA and 2-PE which are produced by the engineered bacteria in daily life, we have designed two kinds of garbage can lids and lotion. According to our project, we will give a detailed account of the principles and functions of our application design.</p>
 
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<h2 class="target" style="font-size:30px; padding-bottom:5px;">Garbage can lid</h2>
 
<h2 class="target" style="font-size:30px; padding-bottom:5px;">Garbage can lid</h2>
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<source src="https://static.igem.org/mediawiki/2018/4/4f/T--FJNU-China--garbage_lid.mp4" type="video/mp4">  
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  <p>The product we developed in this project is a special lid filled with engineered bacteria that can produce PLA and 2-PE, and the final product is shown using 3D printing technology. </br>
 
In order to open the suicide system when the engineered bacteria are exposed to sunlight, we consider that this lid should have a light-proof function. So the lid is made of light-proof materials and the bacteria can grow in it. When the engineered bacteria leaves the garbage it will be engineered to die. This design ensures biosafety.</p>
 
 
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  <img src="https://static.igem.org/mediawiki/2018/2/2d/T--FJNU-China--lid1.jpg" style="width: 100%;"></br>
 
  <p>The whole lid consists of three parts, the top is a cover that can be opened. This design makes it easy for us to add bacteria at any time. The middle part is a cylindrical liquid reservoir, and the engineered bacteria can grow inside. The bottom is a circular leakage net, and the transverse groove and hole are evenly distributed. There is a stick in the middle attached to the top cover. When we press the red button, the bacteria liquid will be evenly distributed in the garbage can, inhibiting the growth of harmful bacteria with the pleasant rose fragrance emitted. </p>
 
 
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   <img src="https://static.igem.org/mediawiki/2018/6/6c/T--FJNU-China--lid2.png" style="width: 100%;">
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  <p>&nbsp;&nbsp;&nbsp;&nbsp;In order to eliminate foul smell produced from special bacteria in our daily life, we designed a special garbage can lid that has already been made through 3D printing technology. This garbage can lid is used to load the engineered bacteria that are able to produce PLA and 2-PE, which is suitable for use in waste containers of laboratory.</br>
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&nbsp;&nbsp;&nbsp;&nbsp;To ensure biosafety, we introduced light-regulated suicide systems into the engineered <span style="font-style:italic;">E. coli</span>  in this section. In addition, in order not to affect growth of the engineering bacteria, we chose light-proof materials to make our garbage can lid, so that the engineered bacteria would not be destroyed under normal circumstances. And only when the bacteria leaked to the external environment, the suicide system would be turned on, and expression of the mazf would crack the bacteria's mRNA and kill it effectively.</p>
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   <img class="img-responsive center-block" src="https://static.igem.org/mediawiki/2018/2/2d/T--FJNU-China--lid1.jpg" style="width: 50%;"></br>
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  <p>&nbsp;&nbsp;&nbsp;&nbsp;The whole lid consists of three parts.
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The top is a cover that can be opened, which makes it easy to add bacteria at any time. And the middle portion is a cylindrical liquid reservoir which is used to load engineered bacteria. The bottom of the lid is a circular leaky mesh with holes and transverse grooves evenly distributed on it, which enables the products expressed by bacteria to enter the can evenly and save the amounts of products. The bottom of the lid has an axis connecting the red button at the top. When we press the button, the bacteria in the middle of the lid will flow down the hole at the bottom into the trash can to achieve the purpose of inhibiting harmful bacteria in the trash can and producing rose fragrance. </p>
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  <img class="img-responsive center-block" src="https://static.igem.org/mediawiki/2018/6/6c/T--FJNU-China--lid2.png" style="width: 50%;">
 
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<h2 class="target" style="font-size:30px; padding-bottom:5px;">Lotion</h2></br>
 
<h2 class="target" style="font-size:30px; padding-bottom:5px;">Lotion</h2></br>
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   <p>We designed an lotion to eliminate the bromhidrosis.
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   <p>&nbsp;&nbsp;&nbsp;&nbsp;We designed an lotion to eliminate the bromhidrosis.
The design to solve the problem of bromhidrosis by producing 2-PE and PLA from engineered bacteria. PLA can effectively inhibit the growth of Staphylococcus epidermidis that produce odor. The 2-PE can emit rose fragrance, giving a pleasant feeling. We make the engineering bacteria into freeze-dried powder. When we use this lotion, add the freeze-dried engineered microbes to the lotion and apply it to the underarm. The emulsion provides the nutrients necessary for the growth of the engineered bacteria and can fix the bacteria to the underarm skin. The bacteria can produce PLA and 2-PE in the environment of underarm.
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In order to solve the problem of armpit odor, we have designed an emulsion by using our project.
The accessory product of the lotion is an emulsion containing arabinose. When the user does not want the bacteria to produce PLA and 2-PE, apply it, the arabinose can open the suicide system and express mazF.
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This lotion works by using engineered bacteria to produce PLA and 2-PE to prevent armpit odor. As we have introduced, PLA can inhibit the growth of<span style="font-style:italic;"> Corynebacterium</span> and <span style="font-style:italic;">Staphylococcus epidermidis</span> which are the main resource causing armpit odor. Meanwhile, 2-PE can bring us a pleasant feeling by gives off rose fragrance.
Compared with the body lotion and deodorant on the market, this product is more environmentally friendly, more effective, longer in action and cheaper.</p>
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</br>&nbsp;&nbsp;&nbsp;&nbsp;To make this lotion a reality, we turned engineered bacteria capable of producing PLA and 2-PE into lyophilized powder and added it to the emulsion containing nutrients necessary for bacterial growth. When we use this product, we can directly apply the lotion to the underarm. The lotion not only provides nutrition for the engineered bacteria, but also can effectively fix them on the skin, so that the engineered bacteria can work continuously underarm.</br>
  <img src="https://static.igem.org/mediawiki/2018/f/fc/T--FJNU-China--lotion.jpg" style="width: 90%;"></br></br>
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&nbsp;&nbsp;&nbsp;&nbsp;Our lotion comes with an accessory product that contains arabinose. When users do not want the bacteria to produce PLA and 2-PE, by using this accessory product, the suicide system in the engineered bacteria can be activated by arabinose and the toxic <span style="font-style:italic;">mazF</span> is expressed, resulting in  elimination of the bacteria themselves.
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Compared with other fragrance and deodorants in the market, our emulsion is more effective and durable, and it is friendly to the environment and lower in production cost as well.</p>
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  <img class="img-responsive center-block" src="https://static.igem.org/mediawiki/2018/f/fc/T--FJNU-China--lotion.jpg" style="width: 55%;"></br></br>
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<h2 class="target" style="font-size:30px; padding-bottom:5px;">Future</h2></br>
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  <p>&nbsp;&nbsp;&nbsp;&nbsp;We plan to expand the using range of our products in the future and enhance their effectiveness. In the following work, we will continue to optimize the product from the function, practicality, appearance and other aspects to improve our product design. In addition, we will focus more on the safety of our products to apply them to more complex environments, such as household waste and toilet.</p>
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Latest revision as of 03:31, 18 October 2018

Applied Design

Overview

    In order to realize the application of PLA and 2-PE which are produced by the engineered bacteria in daily life, we have designed two kinds of garbage can lids and lotion. According to our project, we will give a detailed account of the principles and functions of our application design.


Garbage can lid



    In order to eliminate foul smell produced from special bacteria in our daily life, we designed a special garbage can lid that has already been made through 3D printing technology. This garbage can lid is used to load the engineered bacteria that are able to produce PLA and 2-PE, which is suitable for use in waste containers of laboratory.
    To ensure biosafety, we introduced light-regulated suicide systems into the engineered E. coli in this section. In addition, in order not to affect growth of the engineering bacteria, we chose light-proof materials to make our garbage can lid, so that the engineered bacteria would not be destroyed under normal circumstances. And only when the bacteria leaked to the external environment, the suicide system would be turned on, and expression of the mazf would crack the bacteria's mRNA and kill it effectively.



    The whole lid consists of three parts. The top is a cover that can be opened, which makes it easy to add bacteria at any time. And the middle portion is a cylindrical liquid reservoir which is used to load engineered bacteria. The bottom of the lid is a circular leaky mesh with holes and transverse grooves evenly distributed on it, which enables the products expressed by bacteria to enter the can evenly and save the amounts of products. The bottom of the lid has an axis connecting the red button at the top. When we press the button, the bacteria in the middle of the lid will flow down the hole at the bottom into the trash can to achieve the purpose of inhibiting harmful bacteria in the trash can and producing rose fragrance.



Lotion


    We designed an lotion to eliminate the bromhidrosis. In order to solve the problem of armpit odor, we have designed an emulsion by using our project. This lotion works by using engineered bacteria to produce PLA and 2-PE to prevent armpit odor. As we have introduced, PLA can inhibit the growth of Corynebacterium and Staphylococcus epidermidis which are the main resource causing armpit odor. Meanwhile, 2-PE can bring us a pleasant feeling by gives off rose fragrance.
    To make this lotion a reality, we turned engineered bacteria capable of producing PLA and 2-PE into lyophilized powder and added it to the emulsion containing nutrients necessary for bacterial growth. When we use this product, we can directly apply the lotion to the underarm. The lotion not only provides nutrition for the engineered bacteria, but also can effectively fix them on the skin, so that the engineered bacteria can work continuously underarm.
    Our lotion comes with an accessory product that contains arabinose. When users do not want the bacteria to produce PLA and 2-PE, by using this accessory product, the suicide system in the engineered bacteria can be activated by arabinose and the toxic mazF is expressed, resulting in elimination of the bacteria themselves. Compared with other fragrance and deodorants in the market, our emulsion is more effective and durable, and it is friendly to the environment and lower in production cost as well.




Future


    We plan to expand the using range of our products in the future and enhance their effectiveness. In the following work, we will continue to optimize the product from the function, practicality, appearance and other aspects to improve our product design. In addition, we will focus more on the safety of our products to apply them to more complex environments, such as household waste and toilet.