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白细胞激活中的机械转导:综述

Mechanotransduction in leukocyte activation: a review.

作者信息

Makino Ayako, Shin Hainsworth Y, Komai Yutaka, Fukuda Shunichi, Coughlin Mark, Sugihara-Seki Masako, Schmid-Schönbein Geert W

机构信息

Department of Medicine, University of California, San Diego, La Jolla, CA 92093-0412, USA.

出版信息

Biorheology. 2007;44(4):221-49.

Abstract

We review recent evidence which suggests that leukocytes in the circulation and in the tissue may readily respond to physiological levels of fluid shear stress in the range between about 1 and 10 dyn/cm 2, a range that is below the level to achieve a significant passive, viscoelastic response. The response of activated neutrophilic leukocytes to fluid shear consists of a rapid retraction of lamellipodia with membrane detachment from integrin binding sites. In contrast, a subgroup of non-activated neutrophils may project pseudopods after exposure to fluid shear stress. The evidence suggests that G-protein coupled receptor downregulation by fluid shear with concomitant downregulation of Rac-related small GTPases and depolymerization of F-actin serves to retract the lamellipodia in conjunction with proteolytic cleavage of beta 2 integrin to facilitate membrane detachment. Furthermore, there exists a mechanism to up- and down-regulate the fluid shear-response, which involves nitric oxide and the second messenger cyclic guanosine monophosphate (cGMP). Many physiological activities of circulating leukocytes are under the influence of fluid shear stress, including transendothelial migration of lymphocytes. We describe a disease model with chronic hypertension that suffers from an attenuated fluid shear-response with far reaching implications for microvascular blood flow.

摘要

我们回顾了近期的证据,这些证据表明,循环系统和组织中的白细胞可能很容易对约1至10达因/平方厘米范围内的生理水平流体剪切应力作出反应,该范围低于实现显著被动粘弹性反应的水平。活化的嗜中性白细胞对流体剪切的反应包括片状伪足迅速回缩,细胞膜与整合素结合位点分离。相比之下,一部分未活化的嗜中性粒细胞在暴露于流体剪切应力后可能会伸出伪足。有证据表明,流体剪切导致G蛋白偶联受体下调,同时Rac相关小GTP酶下调以及F-肌动蛋白解聚,这与β2整合素的蛋白水解切割共同作用,使片状伪足回缩,以促进细胞膜分离。此外,还存在一种上调和下调流体剪切反应的机制,该机制涉及一氧化氮和第二信使环磷酸鸟苷(cGMP)。循环白细胞的许多生理活动都受到流体剪切应力的影响,包括淋巴细胞的跨内皮迁移。我们描述了一种患有慢性高血压的疾病模型,该模型的流体剪切反应减弱,对微血管血流具有深远影响。

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