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心肌细胞膜表面双电层与地高辛的毒理学及离子通道开放的关系。

Relationship among surface electric double layer of cardiomyocyte membrane and toxicology of digoxin and opening of ion channels.

机构信息

The Sixth Medical Center, Chinese People's Liberation Army General Hospital, Beijing, 100142, China.

The Eighth Medical Center, Chinese People's Liberation Army General Hospital, Beijing, 100091, China.

出版信息

Sci Rep. 2022 Dec 1;12(1):20749. doi: 10.1038/s41598-022-25205-2.

Abstract

We applied a new idea that the potential effect can change the ion adsorption structure on the cell surface to explore the mechanism of digoxin poisoning and the regulation of ion channels. The effects of digoxin on the electrophoretic mobility and behaviors (non-contraction or contraction or autorhythmicity) of cardiomyocytes were observed by single-cell electrophoresis technique (imitate the opening method of in vivo channel) and the method of decomposing surface potential components on the cells. As well as affect the association with electrical activity. The results suggested that the increase of cardiomyocytes transmembrane potential and the Na-K exchange on the cell surface of the action potential phase 4 caused by the poisoning dose of digoxin, leading to the oscillation of adsorbed ions on the cell surface and the incomplete channel structure, which were the mechanism of cardiac ectopic beats. The results revealed that the opening of ion channels is regulated by the surface electric double layer of the cell membrane.

摘要

我们应用了一种新的观点,即潜在效应可以改变细胞表面上的离子吸附结构,以此来探究地高辛中毒的机制和离子通道的调节。通过单细胞电泳技术(模拟体内通道的开启方式)和细胞表面电位分量分解的方法,观察地高辛对心肌细胞电泳迁移率和行为(非收缩或收缩或自发性)的影响,以及对电活动的影响。结果表明,地高辛中毒剂量导致心肌细胞跨膜电位增加和动作电位相 4 期细胞表面的 Na-K 交换,导致细胞表面吸附离子的振荡和不完全通道结构,这是心脏异位搏动的机制。结果表明,离子通道的开启受细胞膜表面双电层的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2df2/9715572/a2bcb0448284/41598_2022_25205_Fig1_HTML.jpg

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