Difference between revisions of "Team:Uppsala/HP/Gold"

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<h3> The Manual </h3>
 
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As a part of Human Practices we decided to develop a manual for manufacturing a microfluidic chip for heat shock transformation. Hopefully this manual can make microfluidic chips easier and more available for other iGEM teams and other small labs.  
 
As a part of Human Practices we decided to develop a manual for manufacturing a microfluidic chip for heat shock transformation. Hopefully this manual can make microfluidic chips easier and more available for other iGEM teams and other small labs.  
  
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<a href="https://static.igem.org/mediawiki/2016/b/b7/T--Uppsala--gold_manual.pdf">
 
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<h3> Improving the Manual </h3>
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When we wrote the manual we wanted it to fit the needs of smaller laboratories that might lack all the necessary equipment and prior knowledge. We therefore reached out to the organisation Stockholm Makerspace. We sent our files containing the design of the chip, as well as the manual while it was under progress. The collaboration with Makerspace gave us important feedback and lead to an overall improvement of the manual. The manual was adjusted to make sure that that the content was comprehensible and accessible for the people that read it. The Biohackers at Makerspace are going to test our manual in practice in the near future and we look forward to see the results from our manual and manufacturing method being used.
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Revision as of 13:46, 18 October 2016

The Microfluidics Manual


The Manual

As a part of Human Practices we decided to develop a manual for manufacturing a microfluidic chip for heat shock transformation. Hopefully this manual can make microfluidic chips easier and more available for other iGEM teams and other small labs. The manual covers the full manufacturing process for a microfluidic chip based on a 3D- printed mold. It includes all required materials, step-by-step protocols for the making of the chip and also a protocol for cell transformation on the chip. To make an example this manual is made specifically for heat shock transformation, but the design of the chip can be altered to fit any other purpose.

Download the manual here

Improving the Manual

When we wrote the manual we wanted it to fit the needs of smaller laboratories that might lack all the necessary equipment and prior knowledge. We therefore reached out to the organisation Stockholm Makerspace. We sent our files containing the design of the chip, as well as the manual while it was under progress. The collaboration with Makerspace gave us important feedback and lead to an overall improvement of the manual. The manual was adjusted to make sure that that the content was comprehensible and accessible for the people that read it. The Biohackers at Makerspace are going to test our manual in practice in the near future and we look forward to see the results from our manual and manufacturing method being used.