The membrane potential arising from the adsorption of ions at the biological interface.

IF 1.8 4区 生物学 Q3 BIOLOGY Biologia futura Pub Date : 2022-12-01 DOI:10.1007/s42977-022-00139-y
Hirohisa Tamagawa, Bernard Delalande
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Abstract

Membrane theory makes it possible to compute the membrane potential of living cells accurately. The principle is that the plasma membrane is selectively permeable to ions and that its permeability to mobile ions determines the characteristics of the membrane potential. However, an artificial experimental cell system with an impermeable membrane can exhibit a nonzero membrane potential, and its characteristics are consistent with the prediction of the Goldman-Hodgkin-Katz eq., which is a noteworthy concept of membrane theory, despite the membrane's impermeability to mobile ions. We noticed this troublesome facet of the membrane theory. We measured the potentials through permeable and impermeable membranes where we used the broad varieties of membranes. Then we concluded that the membrane potential must be primarily, although not wholly, governed by the ion adsorption-desorption process rather than by the passage of ions across the cell membrane. A theory based on the Association-Induction Hypothesis seems to be a more plausible mechanism for the generation of the membrane potential and to explain this unexpected physiological fact. The Association-Induction Hypothesis states that selective ion permeability of the membrane is not a condition for the generation of the membrane potential in living cells, which contradicts the prediction of the membrane theory. Therefore, the Association-Induction Hypothesis is the actual cause of membrane potential. We continued the theoretical analysis by taking into account the Association-Induction Hypothesis and saw that its universality as a cause of potential generation mechanism. We then concluded that the interfacial charge distribution is one of the fundamental causes of the membrane potential.

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离子在生物界面上吸附而产生的膜电位。
膜理论使准确计算活细胞的膜电位成为可能。其原理是质膜对离子有选择性渗透,其对移动离子的渗透性决定了膜电位的特性。然而,具有不透膜的人工实验细胞系统可以表现出非零膜电位,其特征与Goldman-Hodgkin-Katz方程的预测一致,这是膜理论中值得注意的概念,尽管膜对移动离子是不透的。我们注意到了膜理论中这个麻烦的方面。我们测量了通过透膜和不透膜的电位,我们使用了各种各样的膜。然后我们得出结论,膜电位必须主要,尽管不是全部,由离子吸附-解吸过程而不是离子通过细胞膜。基于联想-诱导假说的理论似乎是膜电位产生的更合理的机制,并解释了这一意想不到的生理事实。联想-诱导假说认为膜的选择性离子渗透性不是活细胞中膜电位产生的条件,这与膜理论的预测相矛盾。因此,关联-诱导假说是膜电位产生的实际原因。我们继续进行理论分析,考虑到联想-归纳假说,并看到其普遍性作为一个潜在的产生机制的原因。我们得出结论,界面电荷分布是膜电位产生的根本原因之一。
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来源期刊
Biologia futura
Biologia futura Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
3.50
自引率
0.00%
发文量
27
期刊介绍: How can the scientific knowledge we possess now influence that future? That is, the FUTURE of Earth and life − of humankind. Can we make choices in the present to change our future? How can 21st century biological research ask proper scientific questions and find solid answers? Addressing these questions is the main goal of Biologia Futura (formerly Acta Biologica Hungarica). In keeping with the name, the new mission is to focus on areas of biology where major advances are to be expected, areas of biology with strong inter-disciplinary connection and to provide new avenues for future research in biology. Biologia Futura aims to publish articles from all fields of biology.
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