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胆汁酸作为生物膜和人工膜质子载体及离子载体通透性的诱导剂

Bile Acids as Inducers of Protonophore and Ionophore Permeability of Biological and Artificial Membranes.

作者信息

Samartsev Victor N, Khoroshavina Ekaterina I, Pavlova Evgeniya K, Dubinin Mikhail V, Semenova Alena A

机构信息

Department of Biochemistry, Cell Biology and Microbiology, Mari State University, pl. Lenina 1, 424001 Yoshkar-Ola, Russia.

出版信息

Membranes (Basel). 2023 Apr 28;13(5):472. doi: 10.3390/membranes13050472.

Abstract

It is now generally accepted that the role of bile acids in the organism is not limited to their participation in the process of food digestion. Indeed, bile acids are signaling molecules and being amphiphilic compounds, are also capable of modifying the properties of cell membranes and their organelles. This review is devoted to the analysis of data on the interaction of bile acids with biological and artificial membranes, in particular, their protonophore and ionophore effects. The effects of bile acids were analyzed depending on their physicochemical properties: namely the structure of their molecules, indicators of the hydrophobic-hydrophilic balance, and the critical micelle concentration. Particular attention is paid to the interaction of bile acids with the powerhouse of cells, the mitochondria. It is of note that bile acids, in addition to their protonophore and ionophore actions, can also induce Ca-dependent nonspecific permeability of the inner mitochondrial membrane. We consider the unique action of ursodeoxycholic acid as an inducer of potassium conductivity of the inner mitochondrial membrane. We also discuss a possible relationship between this K ionophore action of ursodeoxycholic acid and its therapeutic effects.

摘要

现在人们普遍认为,胆汁酸在生物体内的作用并不局限于参与食物消化过程。事实上,胆汁酸作为信号分子,同时也是两亲性化合物,还能够改变细胞膜及其细胞器的特性。这篇综述致力于分析胆汁酸与生物膜和人工膜相互作用的数据,特别是它们的质子载体和离子载体效应。根据胆汁酸的物理化学性质,即其分子结构、疏水 - 亲水平衡指标和临界胶束浓度,分析了胆汁酸的作用。特别关注胆汁酸与细胞的动力源——线粒体的相互作用。值得注意的是,胆汁酸除了具有质子载体和离子载体作用外,还能诱导线粒体内膜依赖钙的非特异性通透性。我们研究了熊去氧胆酸作为线粒体内膜钾离子传导诱导剂的独特作用。我们还讨论了熊去氧胆酸的这种钾离子载体作用与其治疗效果之间可能存在的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3f9/10222546/2e429f6923a5/membranes-13-00472-g001.jpg

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