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动脉重塑:与血流动力学的关系

Arterial remodeling: relation to hemodynamics.

作者信息

Langille B L

机构信息

Banting and Best Diabetes Centre, Toronto Hospital Research Institute, University of Toronto, ON, Canada.

出版信息

Can J Physiol Pharmacol. 1996 Jul;74(7):834-41.

PMID:8946070
Abstract

The structure of the artery wall is exquisitely sensitive to the hemodynamic forces imposed on it by blood pressure and blood flow. This sensitivity regulates growth and remodeling of arteries during development, and it regulates long-term adaptive restructuring of mature vessels. Since many vascular pathologies involve alterations in hemodynamic loads, the sensitivity of arterial structure to these changes inevitably affects the progression of vascular diseases. The processes involved in arterial remodeling involve regulation of vascular cell migration and mitosis and apoptosis rates, control of matrix synthesis and degradation, and regulation of matrix reorganization. Some exciting data have been presented concerning how vascular cells sense mechanical forces, including mechanisms based on shear-sensitive ion channels, control of mass transport of agonists to endothelium by shear strain rate, and modulation of tyrosine phosphorylation of proteins at focal adhesion sites; however, the physiological importance of these mechanisms remains to be elucidated.

摘要

动脉壁的结构对血压和血流施加于其上的血流动力学力极为敏感。这种敏感性在发育过程中调节动脉的生长和重塑,并调节成熟血管的长期适应性重构。由于许多血管病变都涉及血流动力学负荷的改变,动脉结构对这些变化的敏感性不可避免地会影响血管疾病的进展。动脉重塑所涉及的过程包括调节血管细胞的迁移、有丝分裂和凋亡率,控制基质的合成和降解,以及调节基质的重组。已经有一些关于血管细胞如何感知机械力的令人兴奋的数据,包括基于剪切敏感离子通道的机制、剪切应变率对激动剂向内皮细胞的质量转运的控制,以及局部黏附位点处蛋白质酪氨酸磷酸化的调节;然而,这些机制的生理重要性仍有待阐明。

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