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Differential responsiveness of vascular endothelial cells to different types of fluid mechanical shear stress.

机译:血管内皮细胞对不同类型的流体机械剪切应力的不同反应性。

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摘要

Early atherosclerotic lesions localize preferentially in arterial regions exposed to low flow, oscillatory flow, or both; however, the cellular basis of this observation remains to be determined. Atherogenesis involves dysfunction of the vascular endothelium, the cellular monolayer lining the inner surfaces of blood vessels. How low flow, oscillatory flow, or both may lead to endothelial dysfunction remains unknown. Over the past two decades, fluid mechanical shear (or frictional) stress has been shown to intricately regulate the structure and function of vascular endothelial cells (ECs). Furthermore, recent data indicate that beyond being merely responsive to shear stress, ECs are able to distinguish among and respond differently to different types of shear stress. This review focuses on EC differential responses to different types of steady and unsteady shear stress and discusses the implications of these responses for the localization of early atherosclerotic lesions. The mechanisms by which endothelial differential responsiveness to different types of flow may occur are also discussed.
机译:早期的动脉粥样硬化病变优先位于暴露于低流量,振荡流量或两者的动脉区域。然而,这一观察的细胞基础仍有待确定。动脉粥样硬化涉及血管内皮功能障碍,细胞单层衬在血管内表面。低流量,振荡流量或两者均如何导致内皮功能障碍尚不清楚。在过去的二十年中,流体机械剪切(或摩擦)应力已被证明可以复杂地调节血管内皮细胞(EC)的结构和功能。此外,最新数据表明,EC不仅能够响应剪切应力,还能够区分不同类型的剪切应力并做出不同的响应。这篇综述着重于EC对不同类型的稳态和非稳态剪应力的差异响应,并讨论了这些响应对早期动脉粥样硬化病变的定位的影响。还讨论了对不同类型的血流可能发生内皮差异反应的机制。

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