The mechanosensory and mechanotransductive processes mediated by ion channels and the impact on bone metabolism: A systematic review

机械转化 机械敏感通道 离子通道 化学 骨细胞 骨组织 细胞生物学 嘌呤能受体 骨重建 生物物理学 内分泌学 解剖 细胞外 医学 受体 生物化学 生物
作者
Kun Zhang,Xuening Liu,Lifu Wang,Zhongcheng Liu,Qiong Yi,Bin Geng,Xiangyi Chen,Dechen Yu,Yayi Xia
出处
期刊:Archives of Biochemistry and Biophysics [Elsevier BV]
卷期号:711: 109020-109020 被引量:25
标识
DOI:10.1016/j.abb.2021.109020
摘要

Mechanical environments were associated with alterations in bone metabolism. Ion channels present on bone cells are indispensable for bone metabolism and can be directly or indirectly activated by mechanical stimulation. This review aimed to discuss the literature reporting the mechanical regulatory effects of ion channels on bone cells and bone tissue. An electronic search was conducted in PubMed, Embase and Web of Science. Studies about mechanically induced alteration of bone cells and bone tissue by ion channels were included. Ion channels including TRP family channels, Ca2+ release-activated Ca2+ channels (CRACs), Piezo1/2 channels, purinergic receptors, NMDA receptors, voltage-sensitive calcium channels (VSCCs), TREK2 potassium channels, calcium- and voltage-dependent big conductance potassium (BKCa) channels, small conductance, calcium-activated potassium (SKCa) channels and epithelial sodium channels (ENaCs) present on bone cells and bone tissue participate in the mechanical regulation of bone development in addition to contributing to direct or indirect mechanotransduction such as altered membrane potential and ionic flux. Physiological (beneficial) mechanical stimulation could induce the anabolism of bone cells and bone tissue through ion channels, but abnormal (harmful) mechanical stimulation could also induce the catabolism of bone cells and bone tissue through ion channels. Functional expression of ion channels is vital for the mechanotransduction of bone cells. Mechanical activation (opening) of ion channels triggers ion influx and induces the activation of intracellular modulators that can influence bone metabolism. Therefore, mechanosensitive ion channels provide new insights into therapeutic targets for the treatment of bone-related diseases such as osteopenia and aseptic implant loosening.
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