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外毛细胞非线性电容的温度依赖性。

Temperature dependence of outer hair cell nonlinear capacitance.

作者信息

Santos-Sacchi J, Huang G

机构信息

Section of Otolaryngology, Yale University School of Medicine, New Haven, CT 06510, USA.

出版信息

Hear Res. 1998 Feb;116(1-2):99-106. doi: 10.1016/s0378-5955(97)00204-9.

Abstract

The temperature dependence of outer hair cell motility-related gating current and capacitance was evaluated under whole-cell voltage clamp. Temperature change caused a shift of these voltage-dependent functions along the voltage axis, with a decrease in temperature causing a negative shift in the voltage at peak capacitance (Vpkcm) of 19.2 mV per 10 degrees C. Gating current kinetics showed only mild temperature dependence, the Q10 being about 1.5. Temperature is speculated to affect outer hair cell (OHC) mechanical gain and frequency response by alterations in lateral membrane viscoelastic properties. Such temperature-dependent effects on the OHC may mediate known temperature effects on in vivo cochlear physiology.

摘要

在外加全细胞电压钳的条件下,评估了外毛细胞运动相关门控电流和电容的温度依赖性。温度变化导致这些电压依赖性功能沿电压轴发生偏移,温度降低会使电容峰值电压(Vpkcm)每10摄氏度负向偏移19.2 mV。门控电流动力学仅表现出轻微的温度依赖性,Q10约为1.5。据推测,温度通过改变外侧膜的粘弹性特性来影响外毛细胞(OHC)的机械增益和频率响应。这种对外毛细胞的温度依赖性效应可能介导了已知的温度对体内耳蜗生理学的影响。

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