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急性暴露于高剪切应力后动脉内皮的完整性。

Integrity of arterial endothelium following acute exposure to high shear stress.

作者信息

Langille L B

出版信息

Biorheology. 1984;21(3):333-46. doi: 10.3233/bir-1984-21304.

Abstract

Shear-induced injury or denudation of arterial endothelium has been implicated in atherogenesis. This study reports on an in vitro technique for imposing high, controlled shear stresses on endothelium. Samples of dog aorta were mounted in a chamber so that the endothelium was 1 mm +/- 0.03 mm from a rotating disc. The chamber was filled with a high viscosity solution (10% polyvinyl pyrrolidone in Tyrode's solution, viscosity = 1.97 +/- .07 Poise) which was sheared over the endothelium by the disc. A servo amplifier drove the motor that rotated the disc, so that motor RPM (therefore shear stress) could be made to follow either steady or pulsatile signals played into the amplifier. Acute (10 min-1 hr) exposure to steady shear stresses of up to 2000 dyne/cm2 did not cause gross endothelial injury or denudation. Exposure of endothelium to pulsatile shear stresses that followed a tape recording of physiological flow waveforms (electromagnetic flowmeter) did not cause gross injury or denudation even when peak shear exceeded 1500 dyne/cm2. Furthermore exposure to high shear stress did not degrade the nonthrombogenic nature of the endothelium because subsequent platelet adhesion was poorly and negatively correlated with shear stress.

摘要

剪切力诱导的动脉内皮损伤或剥脱与动脉粥样硬化的发生有关。本研究报告了一种在体外对内皮施加高度可控剪切应力的技术。将犬主动脉样本安装在一个腔室中,使内皮距离旋转盘1毫米±0.03毫米。腔室中充满高粘度溶液(10%聚乙烯吡咯烷酮溶于台氏液中,粘度 = 1.97±0.07泊),该溶液被旋转盘在内皮上剪切。一个伺服放大器驱动使盘旋转的电机,从而使电机转速(即剪切应力)能够跟随输入到放大器中的稳定或脉动信号。急性(10分钟 - 1小时)暴露于高达2000达因/平方厘米的稳定剪切应力下,并未导致明显的内皮损伤或剥脱。即使峰值剪切力超过1500达因/平方厘米,将内皮暴露于模拟生理血流波形(电磁流量计)录音的脉动剪切应力下,也不会导致明显损伤或剥脱。此外,暴露于高剪切应力下并不会破坏内皮的抗血栓形成特性,因为随后的血小板黏附与剪切应力呈弱负相关。

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