Patuzzi R
Physiology Department, University of Western Australia, Nedlands, Australia.
Hear Res. 1998 Nov;125(1-2):71-97. doi: 10.1016/s0378-5955(98)00124-5.
While the 'membrane potential' of a cell which has a homogeneous membrane and surrounding environment, and which is not pumping ions electrogenically (passing no net current through its membranes), can be estimated from the Goldman voltage equation, this equation is inappropriate for other cells. In the mammalian cochlea such problematic cells include the cells of stria vascularis and the sensory hair cells of the organ of Corti. Not only is the Goldman voltage equation inappropriate, but in asymmetric cells the concept of a single 'membrane potential' is misleading: a different transmembrane voltage is required to define the electrical state of each section of the cell's heterogeneous membrane. This paper presents a graphical 'load-line analysis' of currents through one such asymmetric cell, the outer hair cells of the organ of Corti. The approach is extremely useful in discussing the effects of various cochlear manipulations on the electrical potential within hair cells, even without a detailed knowledge of their membrane conductance. The paper discusses how modified Goldman-Hodgkin-Katz equations can be used to describe stretch-activated channels, voltage-controlled channels, ligand-mediated channels, and how the combination of these channels and the extracellular ionic concentrations should affect the hair cell's resting intracellular potential and resting transcellular current, its receptor current and receptor potential, and the extracellular microphonic potential around these cells. Two other issues discussed are the role of voltage-controlled channels in genetically determining membrane potential, and the insensitivity of hair cells to changes of extracellular potassium concentration under some conditions.
对于具有均匀细胞膜和周围环境且不进行离子电泵浦(即没有净电流通过其细胞膜)的细胞,其“膜电位”可以通过戈德曼电压方程来估算,但该方程不适用于其他细胞。在哺乳动物的耳蜗中,这类有问题的细胞包括血管纹细胞和柯蒂氏器的感觉毛细胞。不仅戈德曼电压方程不适用,而且在不对称细胞中,单一“膜电位”的概念具有误导性:需要不同的跨膜电压来定义细胞异质膜各部分的电状态。本文展示了对一种这样的不对称细胞——柯蒂氏器外毛细胞的电流进行的图形化“负载线分析”。即使在不详细了解其膜电导的情况下,这种方法对于讨论各种耳蜗操作对毛细胞内电位的影响也极为有用。本文讨论了如何使用修正的戈德曼 - 霍奇金 - 凯茨方程来描述牵张激活通道、电压控制通道、配体介导通道,以及这些通道与细胞外离子浓度的组合应如何影响毛细胞的静息细胞内电位和静息跨细胞电流、其受体电流和受体电位,以及这些细胞周围的细胞外微音器电位。讨论的另外两个问题是电压控制通道在基因决定膜电位中的作用,以及在某些条件下毛细胞对细胞外钾离子浓度变化的不敏感性。