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− | <img alt="Image" src="https://static.igem.org/mediawiki/2018/6/61/T--Valencia_UPV--projectdesc1UPV2018.jpeg" style=" | + | <img alt="Image" src="https://static.igem.org/mediawiki/2018/6/61/T--Valencia_UPV--projectdesc1UPV2018.jpeg" style="padding-top: 69px;/* padding-left: 24px; *//* margin-left: 36px; */"><img alt="Image" src="https://static.igem.org/mediawiki/2018/7/7d/T--Valencia_UPV--projectdesc2UPV2018.jpeg" style="padding-top: 21px;padding-right: 53px;/* margin-left: 36px; */"><img alt="Image" src="https://static.igem.org/mediawiki/2018/d/d5/T--Valencia_UPV--projectdesc3UPV2018.jpeg" style="padding-top: -6px;/* padding-right: 24px; *//* margin-left: 36px; */"> |
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− | <h4 style=" | + | <h4 style="padding-bottom: 0px;font-weight: 702;padding-top: 0px;font-size: 46px;margin-bottom: 0px;">Printeria |
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</h4> | </h4> | ||
− | <p style=" | + | <p style="padding-top: 0px;padding-bottom: 26px;">SynBio can be very complex due to the expertise required and the economic cost of the labs. This is why the Valencia UPV team has set a goal: to solve all these difficulties in order to bring Synthetic Biology closer to people. |
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− | <h4 style=" | + | <h4 style="/* padding-bottom: 25px; */font-weight: 702;padding-top: 0px;font-size: 26px;">Our proposal</h4><p style="padding-top: 0px;padding-bottom: 26px;"> |
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We intend to design a fully-equipped bioengineering device: Printeria. It will be capable of modifying bacteria to obtain tangible phenotypes, but made as easy to operate as a home printer. In short, a whole cloning process contained in a single device. | We intend to design a fully-equipped bioengineering device: Printeria. It will be capable of modifying bacteria to obtain tangible phenotypes, but made as easy to operate as a home printer. In short, a whole cloning process contained in a single device. | ||
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− | <h4 style=" | + | <h4 style="/* padding-bottom: 25px; */font-weight: 702;padding-top: 0px;font-size: 26px;">How to use it |
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− | <b style=" | + | <b style="font-size: 16px;/* margin-bottom: -8px !important; */">PRINTERIA Controller</b> |
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− | <p> | + | <p> "We have created an intuitive software that will help us design a new transcriptional unit and control the experimental conditions of the assembly reaction. It will show us all our previous jobs and pre-designed recipes and it will report us whenever our inventory runs out of parts." |
− | We have created an intuitive software that will help us design a new transcriptional unit and control the experimental conditions of the assembly reaction. It will show us all our previous jobs and pre-designed recipes and it will report us whenever our inventory runs out of parts. | + | |
Revision as of 21:13, 15 October 2018
Printeria
SynBio can be very complex due to the expertise required and the economic cost of the labs. This is why the Valencia UPV team has set a goal: to solve all these difficulties in order to bring Synthetic Biology closer to people.
Our proposal
We intend to design a fully-equipped bioengineering device: Printeria. It will be capable of modifying bacteria to obtain tangible phenotypes, but made as easy to operate as a home printer. In short, a whole cloning process contained in a single device.
How to use it
PRINTERIA Controller
"We have created an intuitive software that will help us design a new transcriptional unit and control the experimental conditions of the assembly reaction. It will show us all our previous jobs and pre-designed recipes and it will report us whenever our inventory runs out of parts."