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中国中医科学院 中药研究所,北京 100700
Published:20 May 2023,
Published Online:31 January 2023,
Received:09 October 2022,
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刘陆,王贻琳,肖顺丽等.基于机械力离子通道Piezo1的中药生物力药理学研究进展[J].中国实验方剂学杂志,2023,29(10):235-244.
LIU Lu,WANG Yilin,XIAO Shunli,et al.Biomechanopharmacology of Chinese Medicine Based on Mechano-ion Channel Piezo1: A Review[J].Chinese Journal of Experimental Traditional Medical Formulae,2023,29(10):235-244.
刘陆,王贻琳,肖顺丽等.基于机械力离子通道Piezo1的中药生物力药理学研究进展[J].中国实验方剂学杂志,2023,29(10):235-244. DOI: 10.13422/j.cnki.syfjx.20230404.
LIU Lu,WANG Yilin,XIAO Shunli,et al.Biomechanopharmacology of Chinese Medicine Based on Mechano-ion Channel Piezo1: A Review[J].Chinese Journal of Experimental Traditional Medical Formulae,2023,29(10):235-244. DOI: 10.13422/j.cnki.syfjx.20230404.
缺血性脑卒中是全球致死和致残的主要原因之一。东汉名医华佗提出“血脉流通,病不得生”的原创预防医学思路,为血脉相关的力学因素与药理学的交叉研究开创了广阔空间。在缺血性脑卒中的发病过程中,力学因素贯穿始终,影响血小板与内皮细胞功能及其分子通讯。近年来血流力学因素对于血栓形成及脑卒中的影响,无论是阐释缺血性脑卒中的发病机制,还是作为潜在的治疗靶标,都受到了越来越多的关注。机械力离子通道Piezo1广泛存在于多种细胞表面,除了受到化学物质及内源性物质的调控,还能够感受不同力学条件,调控通道的开启与关闭,激活下游不同信号通路。Piezol被视为力学与生化信号之间的重要连接。多种中药能够影响Piezo1通道蛋白活性,可能通过Piezo1蛋白防治缺血性脑卒中等血栓性疾病。该文综述了Piezo1通道蛋白在不同力学条件下对内皮细胞、血小板生理病理功能的影响,Piezo1在血栓形成过程中的角色,以及靶向Piezo1通道的中药、化药及内源性物质的效应;为进一步探索活血化瘀中药效应机理及新药研发提供新的思路,并逐步深化生物力药理学研究。
Ischemic stroke is one of the leading causes of death and disability worldwide. In Han dynasty, HUA Tuo proposed the original preventive medicine idea that "with good blood circulation, the disease cannot be born", which opened a broad space for the cross-research of blood-related mechanical factors and pharmacology. In the pathogenesis of ischemic stroke, mechanical factors comprehensively affect the function and crosstalk of platelets and endothelial cells. In recent years, as the well-known effects on thrombosis and stroke, more attention has been paid to hemodynamic factors as the participants involved in pathological mechanisms and potential therapeutic targets of ischemic stroke. The mechanical force ion channel Piezo1 widely exists on the surface of many types of cells. Besides being regulated by chemical and endogenous substances, Piezo1 responds to different mechanical conditions, regulates the opening and closing of channels, and activates different downstream signaling pathways. Piezo1 is now regarded as an important connection between mechanical and biochemical signals. A variety of Chinese medicine can affect the activity of Piezo1 protein, which may prevent and treat thrombotic diseases such as ischemic stroke through Piezo1 protein. In this paper, the effects of Piezo1 protein on the physiological and pathological functions of endothelial cells and platelet under different mechanical conditions and the role of Piezo1 in the process of thrombosis were reviewed, as well as the effects of Chinese medicine, chemical medicine, and endogenous substances targeting Piezo1 channel. These could provide new ideas for further exploring the mechanisms of Chinese medicines in activating blood circulation, developing new drugs, and deepening biomechanical-pharmacology research.
Piezo1内皮细胞血小板血栓形成生物力药理学
Piezo1endothelial cellsplateletsthrombosisbiomechanopharmacology
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