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首页> 外文期刊>International Journal of Vascular Medicine >Varicose Veins: Role of Mechanotransduction of Venous Hypertension
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Varicose Veins: Role of Mechanotransduction of Venous Hypertension

机译:静脉曲张:静脉高血压的机械转导作用

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摘要

Varicose veins affect approximately one-third of the adult population and result in significant psychological, physical, and financial burden. Nevertheless, the molecular pathogenesis of varicose vein formation remains unidentified. Venous hypertension exerted on veins of the lower extremity is considered the principal factor in varicose vein formation. The role of mechanotransduction of the high venous pressure in the pathogenesis of varicose vein formation has not been adequately investigated despite a good progress in understanding the mechanomolecular mechanisms involved in transduction of high blood pressure in the arterial wall. Understanding the nature of the mechanical forces, the mechanosensors and mechanotransducers in the vein wall, and the downstream signaling pathways will provide new molecular targets for the prevention and treatment of varicose veins. This paper summarized the current understanding of mechano-molecular pathways involved in transduction of hemodynamic forces induced by blood pressure and tries to relate this information to setting of venous hypertension in varicose veins.
机译:静脉曲张影响大约三分之一的成年人口,并导致巨大的心理,身体和经济负担。然而,静脉曲张形成的分子发病机制仍然未知。下肢静脉静脉高压被认为是静脉曲张形成的主要因素。尽管在理解涉及在动脉壁中高压转导的机械分子机制方面取得了良好的进展,但尚未充分研究高压静脉的机械转导在静脉曲张形成机理中的作用。了解机械力的性质,静脉壁中的机械传感器和机械换能器以及下游的信号传导途径将为预防和治疗静脉曲张提供新的分子靶标。本文总结了目前对涉及由血压引起的血流动力学力传导的机械-分子途径的理解,并试图将此信息与静脉曲张静脉高压的发生联系起来。

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