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S 形势能曲线能告诉我们关于膜电位产生机制的什么信息?

What can S-shaped potential profiles tell us about the mechanism of membrane potential generation?

机构信息

Department of Mechanical Engineering, Faculty of Engineering, Gifu University, 1-1 Yanagido, Gifu, Gifu, 501-1193, Japan.

, 280 avenue de la Pierre Dourdant, 38290, La Verpilliere, France.

出版信息

Eur Biophys J. 2021 Sep;50(6):805-818. doi: 10.1007/s00249-021-01531-7. Epub 2021 Apr 18.

Abstract

Membrane theory attributes the generation mechanism of the membrane potential to transmembrane ion transport, while Cheng's ISE (Ion selective electrode) mechanism attributes the ISE potential generation to ion adsorption on to the ISE surface. Although the membrane potential generation mechanism is different from the ISE potential generation mechanism, both the membrane potential and the ISE potential exhibit quite similar characteristics. For instance, both become indifferent to the variation of the ion concentration in both the high and the low ion concentration environment. Our experimental and theoretical investigations suggest that such a characteristic membrane potential behavior could be explained by the ion adsorption mechanism called Ling's adsorption theory (LA theory) instead of by membrane theory. If the membrane potential generation mechanism is explained by the LA theory, then the significant similarity between the membrane potential and the ISE potential is understandable, since both the LA theory and Cheng's ISE mechanism rely on the ion adsorption process. Although the LA theory is not acknowledged as the mechanism for the membrane potential generation in the mainstream physiology community, it does not have any serious defect in principle as a membrane potential generation mechanism. Hence, it is worth investigating if the current membrane potential generation mechanism needs reevaluation in light of evidence presented here. We conclude that the LA theory is a quite plausible membrane potential generation mechanism, suggesting that it may contribute to it.

摘要

膜理论将膜电位的产生机制归因于跨膜离子转运,而程氏ISE(离子选择性电极)机制则将 ISE 电位的产生归因于离子在 ISE 表面的吸附。尽管膜电位产生机制与 ISE 电位产生机制不同,但膜电位和 ISE 电位都表现出相当相似的特征。例如,两者在高离子浓度和低离子浓度环境中对离子浓度的变化都不敏感。我们的实验和理论研究表明,这种特征性的膜电位行为可以用称为 Ling 吸附理论(LA 理论)的离子吸附机制来解释,而不是用膜理论来解释。如果膜电位产生机制可以用 LA 理论来解释,那么膜电位和 ISE 电位之间的显著相似性是可以理解的,因为 LA 理论和程氏 ISE 机制都依赖于离子吸附过程。尽管 LA 理论在主流生理学领域并不被认为是膜电位产生的机制,但作为一种膜电位产生机制,它在原理上并没有任何严重的缺陷。因此,值得根据这里提出的证据来重新评估当前的膜电位产生机制是否需要重新评估。我们的结论是,LA 理论是一种相当合理的膜电位产生机制,表明它可能对其产生有贡献。

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