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味觉受体细胞中离子通道和动作电位的建模与模拟

Modeling and simulation of ion channels and action potentials in taste receptor cells.

作者信息

Chen PeiHua, Liu Xiao-dong, Zhang Wei, Zhou Jun, Wang Ping, Yang Wei, Luo JianHong

机构信息

Biosensor National Special Laboratory, Key Laboratory of Biomedical Engineering of Ministry of Education, Department of Biomedical Engineering, Zhejiang University, Hangzhou, China.

出版信息

Sci China C Life Sci. 2009 Nov;52(11):1036-47. doi: 10.1007/s11427-009-0138-9. Epub 2009 Nov 24.

Abstract

Based on patch clamp data on the ionic currents of rat taste receptor cells, a mathematical model of mammalian taste receptor cells was constructed to simulate the action potentials of taste receptor cells and their corresponding ionic components, including voltage-gated Na(+) currents and outward delayed rectifier K(+) currents. Our simulations reproduced the action potentials of taste receptor cells in response to electrical stimuli or sour tastants. The kinetics of ion channels and their roles in action potentials of taste receptor cells were also analyzed. Our prototype model of single taste receptor cell and simulation results presented in this paper provide the basis for the further study of taste information processing in the gustatory system.

摘要

基于大鼠味觉受体细胞离子电流的膜片钳数据,构建了哺乳动物味觉受体细胞的数学模型,以模拟味觉受体细胞的动作电位及其相应的离子成分,包括电压门控钠电流和外向延迟整流钾电流。我们的模拟重现了味觉受体细胞对电刺激或酸味剂的动作电位。还分析了离子通道的动力学及其在味觉受体细胞动作电位中的作用。本文提出的单个味觉受体细胞的原型模型和模拟结果为进一步研究味觉系统中的味觉信息处理提供了基础。

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