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平滑肌细胞中Na+、K+和Ca2+的竞争性膜吸附

Competitive membrane adsorption of Na+, K+, and Ca2+ in smooth muscle cells.

作者信息

Kolber M A, van Breemen C

出版信息

J Membr Biol. 1981 Feb 15;58(2):115-21. doi: 10.1007/BF01870974.

Abstract

A theory for Na+, K+ and Ca2+ competitive adsorption to a charged membrane is used to explain a number of experimental observations in smooth muscle. Adsorption is described by Langmuir isotherms for mono- and divalent cations which in turn are coupled in a self-consistent way to the bulk solution through the diffuse double layer theory and the Boltzman equations. We found that the dissociation constants for binding of Na+, K+ and Ca2+ in guinea pig taenia coli are ca. 0.009, 1.0, and 4 X 10(-8) M, respectively. Furthermore, the effect of a Ca2+ pump that maintains free surface Ca2+ concentration constant is investigated. A decrease in intracellular Na+ content results in an increased Ca2+ uptake; part of this uptake is due to an increase in surface-bound Ca2+ in an intracellular compartment which is in contact with the myofilaments. Variations in the amount of charge available to bind Ca2+ and the surface charge density are studied and their effect interpreted in terms of different pharmacological agents.

摘要

一种关于Na+、K+和Ca2+对带电膜竞争性吸附的理论被用于解释平滑肌中的一些实验观察结果。吸附作用通过单价和二价阳离子的朗缪尔等温线来描述,这些等温线又通过扩散双电层理论和玻尔兹曼方程以自洽的方式与本体溶液相耦合。我们发现,豚鼠结肠带中Na+、K+和Ca2+结合的解离常数分别约为0.009、1.0和4×10(-8) M。此外,还研究了维持游离表面Ca2+浓度恒定的Ca2+泵的作用。细胞内Na+含量的降低导致Ca2+摄取增加;这种摄取的一部分是由于与肌丝接触的细胞内隔室中表面结合Ca2+的增加。研究了可用于结合Ca2+的电荷量和表面电荷密度的变化,并根据不同的药理剂解释了它们的作用。

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