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Probing localized neural mechanotransduction through surface-modified elastomeric matrices and electrophysiology
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Probing localized neural mechanotransduction through surface-modified elastomeric matrices and electrophysiology

Chao-Min Cheng, Yi-Wen Lin, Robert M. Bellin, Robert L. Steward, Yuan-Ren Cheng, Philip R. LeducChih-Cheng Chen
Nature Protocols, 卷.5(4), 頁碼.714-724
2010
PMID: 20360766

摘要

Biochemistry Genetics and Molecular Biology (all)
Mechanotransduction of sensory neurons is of great interest to the scientific community, especially in areas such as pain, neurobiology, cardiovascular homeostasis and mechanobiology. We describe a method to investigate stretch-activated mechanotransduction in sensory nerves through subcellular stimulation. The method imposes localized mechanical stimulation through indentation of an elastomeric substrate and combines this mechanical stimulation with whole-cell patch clamp recording of the electrical response to single-nerve stretching. one significant advantage here is that the neurites are stretched with limited physical contact beyond their attachment to the polymer. When we imposed specific mechanical stimulation through the substrate, the stretched neurite fired and an action potential response was recorded. In addition, complementary protocols to control the molecules at the cell-substrate interface are presented. These techniques provide an opportunity to probe neurosensory mechanotransduction with a defined substrate, whose physical and molecular context can be modified to mimic physiologically relevant conditions. The entire process from fabrication to cellular recording takes 5 to 6 d. © 2010 Nature Publishing Group.

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