Difference between revisions of "Team:HokkaidoU Japan"

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  They are synthesized chemically such as solid-state synthesis, but it’s not efficient for production in large amounts.  
 
  They are synthesized chemically such as solid-state synthesis, but it’s not efficient for production in large amounts.  
 
  So, we need another approach including biosynthesis.</p>  
 
  So, we need another approach including biosynthesis.</p>  
<p><font size="5">I<font size="4">n this research, we expressed self-assembling peptides such as  
+
<p><font face="Avenir" font size="5">I<font face="Avenir" font size="4">n this research, we expressed self-assembling peptides such as  
 
<br><font face="Avenir" font size="5"><CENTER>RADA-16 I<font face="Avenir" font size="4">
 
<br><font face="Avenir" font size="5"><CENTER>RADA-16 I<font face="Avenir" font size="4">
 
and <font face="Avenir" font size="5">P<sub>11</sub>-4<font face="Avenir" font size="4"></CENTER>
 
and <font face="Avenir" font size="5">P<sub>11</sub>-4<font face="Avenir" font size="4"></CENTER>

Revision as of 07:04, 30 August 2016

Team:HokkaidoU Japan - 2016.igem.org

 

Team:HokkaidoU Japan

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Project description

Hydrogel is used in contact lenses and diapers. Some kinds of hydrogel are made of self-assembling peptides. They are amphiphilic peptides and they form nanostructured hydrogel under physiochemical conditions. Recently, they have been considered as a good biological scaffold for cell culturing and drug delivering. They are synthesized chemically such as solid-state synthesis, but it’s not efficient for production in large amounts. So, we need another approach including biosynthesis.

In this research, we expressed self-assembling peptides such as

RADA-16 I and P11-4
in Escherichia coli and analyzed them by a series of experiments.

We also considered the application of hydrogel to immobilized proteins, which may enhance the stability of proteins. Immobilized proteins will be used in medicine and environmental study in the future.