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人中性粒细胞跨内皮迁移所诱导的机械力。

Mechanical forces induced by the transendothelial migration of human neutrophils.

作者信息

Rabodzey Aleksandr, Alcaide Pilar, Luscinskas Francis W, Ladoux Benoit

机构信息

Laboratoire Matière et Systèmes Complexes, Université Paris Diderot, Unité Mixte de Recherche CNRS, Paris, France.

出版信息

Biophys J. 2008 Aug;95(3):1428-38. doi: 10.1529/biophysj.107.119156. Epub 2008 Apr 4.

Abstract

The mechanisms regulating neutrophil transmigration of vascular endothelium are not fully elucidated, but involve neutrophil firm attachment and passage through endothelial cell-cell junctions. The goal of this study was to characterize the tangential forces exerted by neutrophils during transendothelial migration at cell-cell junctions using an in vitro laminar shear flow model in which confluent activated endothelium is grown on a microfabricated pillar substrate. The tangential forces are deduced from the measurement of pillar deflection beneath the endothelial cell-cell junction as neutrophils transmigrate. The force diagram displays an initial force increase, which coincides with neutrophil penetration into the intercellular space and formation of a gap in VE-cadherin staining. This is followed by a rapid and large increase of traction forces exerted by endothelial cells on the substrate in response to the transmigration process and the disruption of cell-cell contacts. The average maximum force exerted by an actively transmigrating neutrophil is three times higher than the force generated by an adherent neutrophil that does not transmigrate. Furthermore, we show that substrate rigidity can modify the mechanical forces induced by the transmigration of a neutrophil through the endothelium. Our data suggest that the force induced by neutrophil transmigration plays a key role in the disruption of endothelial adherens junctions.

摘要

调节中性粒细胞穿过血管内皮迁移的机制尚未完全阐明,但涉及中性粒细胞牢固附着并穿过内皮细胞间连接。本研究的目的是使用体外层流剪切流模型来表征中性粒细胞在跨内皮迁移过程中在细胞间连接处施加的切向力,该模型中汇合的活化内皮生长在微制造的柱形基质上。切向力是从中性粒细胞迁移时内皮细胞间连接处下方柱体的偏转测量中推导出来的。力图显示初始力增加,这与中性粒细胞穿透到细胞间空间并在VE-钙黏蛋白染色中形成间隙一致。随后,响应于迁移过程和细胞间接触的破坏,内皮细胞在基质上施加的牵引力迅速大幅增加。活跃迁移的中性粒细胞施加的平均最大力比未迁移的附着中性粒细胞产生的力高三倍。此外,我们表明基质刚度可以改变中性粒细胞穿过内皮迁移所诱导的机械力。我们的数据表明,中性粒细胞迁移所诱导的力在内皮黏附连接的破坏中起关键作用。

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