Difference between revisions of "Team:SUSTech Shenzhen/Project"

Line 21: Line 21:
 
Audiogenetics is a useful tool for high-efficiency cell regulation. Compared to chemical genetics, it stimulates cells with better precision and less toxicity. Furthermore, signals are conveyed to target cells with little delay, leading to a shorter response time.
 
Audiogenetics is a useful tool for high-efficiency cell regulation. Compared to chemical genetics, it stimulates cells with better precision and less toxicity. Furthermore, signals are conveyed to target cells with little delay, leading to a shorter response time.
  
<html><p onload="katex.render('x=1',this)"></p></html>
+
<html><p></p><script>katex.render('x=1',$(document.currentScript).prev())</html>
  
 
To achieve our goal of audiogenetics, membrane mechanosensitive channels (TRPC5 and Piezo) are chosen as receptors. Fluorescent calcium indicator (R-GECO) is employed to indicate cytoplasmic calcium level. Nuclear factor of activated T cells (NFAT) and YFP are used as downstream indicators to quantify the regulatory abilities.{{SUSTech_Image | filename=SUSTech_Shenzhen-ElementisLogo.jpg | caption=Elementis Logo}}
 
To achieve our goal of audiogenetics, membrane mechanosensitive channels (TRPC5 and Piezo) are chosen as receptors. Fluorescent calcium indicator (R-GECO) is employed to indicate cytoplasmic calcium level. Nuclear factor of activated T cells (NFAT) and YFP are used as downstream indicators to quantify the regulatory abilities.{{SUSTech_Image | filename=SUSTech_Shenzhen-ElementisLogo.jpg | caption=Elementis Logo}}

Revision as of 16:04, 14 October 2016

Team SUSTC-Shenzhen

Project Overview

test page

Abstract

Audiogenetics is a useful tool for high-efficiency cell regulation. Compared to chemical genetics, it stimulates cells with better precision and less toxicity. Furthermore, signals are conveyed to target cells with little delay, leading to a shorter response time.