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机械信号传导在静脉曲张病理中的作用。

Role of mechanosignaling on pathology of varicose vein.

作者信息

Saberianpour Shirin, Modaghegh Mohamad Hadi Saeed, Rahimi Hamidreza, Kamyar Mohammad Mahdi

机构信息

Vascular and Endovascular Surgery Research Center, Mashhad University of Medical Sciences, Mashhad, Iran.

Department of Medical Genetics and Molecular Medicine, Mashhad University of Medical Sciences, Mashhad, Iran.

出版信息

Biophys Rev. 2021 Feb 16;13(1):139-145. doi: 10.1007/s12551-021-00783-z. eCollection 2021 Feb.

Abstract

Varicose veins are the most common vascular disease in humans. Veins have valves that help the blood return gradually to the heart without leaking blood. When these valves become weak, blood and fluid collect and pool by pressing against the walls of the veins, causing varicose veins. In the cardiovascular system, mechanical forces are important determinants of vascular homeostasis and pathological processes. Blood vessels are constantly exposed to a variety of hemodynamic forces, including shear stress and environmental strains caused by the blood flow. In varicose veins within the leg, venous blood pressure rises in the vein of the lower extremities due to prolonged standing, creating a peripheral tension in the vessel wall thereby causing mechanical stimulation of endothelial cells and vascular smooth muscle. Studies have shown that long-term increased exposure to vascular wall tension is associated with the overexpression of HIF-1α and HIF-2α and increased levels of MMP-2 and MMP-9, thereby reducing venous contraction and progressive venous dilatation, which is involved in the development of varicose veins. Following the expression of metalloproteinase, the expression of type 1 collagen increases, and the amount of type 3 collagen decreases. Therefore, collagen imbalance will cause the varicose veins to not stretch. Loss of structural proteins (type 3 collagen and elastin) in the vessel wall causes the loss of the biophysical properties of the varicose vein wall. This review article tries to elaborate on the effect of mechanical forces and sensors of these forces on the vascular wall in creating the mechanism of mechanosignaling, as well as the role of the onset of molecular signaling cascades in the pathology of varicose veins.

摘要

静脉曲张是人类最常见的血管疾病。静脉有瓣膜,可帮助血液逐渐回流至心脏而不发生血液渗漏。当这些瓣膜功能减弱时,血液和液体会聚集并压迫静脉壁,导致静脉曲张。在心血管系统中,机械力是血管稳态和病理过程的重要决定因素。血管不断受到各种血流动力学力的影响,包括剪切应力和由血流引起的环境应变。在腿部的静脉曲张中,由于长时间站立,下肢静脉血压升高,在血管壁上产生外周张力,从而对内皮细胞和血管平滑肌造成机械刺激。研究表明,长期暴露于增加的血管壁张力与HIF-1α和HIF-2α的过度表达以及MMP-2和MMP-9水平的升高有关,从而导致静脉收缩减弱和静脉逐渐扩张,这与静脉曲张的发展有关。在金属蛋白酶表达后,1型胶原蛋白的表达增加,3型胶原蛋白的量减少。因此,胶原蛋白失衡会导致静脉曲张无法伸展。血管壁中结构蛋白(3型胶原蛋白和弹性蛋白)的丧失导致静脉曲张壁生物物理特性的丧失。这篇综述文章试图阐述机械力及其传感器对血管壁在形成机械信号传导机制中的作用,以及分子信号级联反应的启动在静脉曲张病理中的作用。

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Role of mechanosignaling on pathology of varicose vein.机械信号传导在静脉曲张病理中的作用。
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