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内皮细胞胞质游离钙调节中性粒细胞跨内皮细胞单层的迁移。

Endothelial cell cytosolic free calcium regulates neutrophil migration across monolayers of endothelial cells.

作者信息

Huang A J, Manning J E, Bandak T M, Ratau M C, Hanser K R, Silverstein S C

机构信息

Department of Medicine, College of Physicians and Surgeons, Columbia University, New York, New York 10032.

出版信息

J Cell Biol. 1993 Mar;120(6):1371-80. doi: 10.1083/jcb.120.6.1371.

Abstract

Polymorphonuclear leukocytes (PMN) traverse an endothelial cell (EC) barrier by crawling between neighboring EC. Whether EC regulate the integrity of their intercellular adhesive and junctional contacts in response to chemotaxing PMN is unresolved. EC respond to the binding of soluble mediators such as histamine by increasing their cytosolic free calcium concentration ([Ca++]i) (Rotrosen, D., and J.I. Gallin. 1986. J. Cell Biol. 103:2379-2387) and undergoing shape changes (Majno, G., S. M. Shea, and M. Leventhal. 1969. J. Cell Biol. 42:617-672). Substances such as leukotriene C4 (LTC4) and thrombin, which increased the permeability of EC monolayers to ions, as measured by the electrical resistance of the monolayers, transiently increased EC [Ca++]i. To determine whether chemotaxing PMN cause similar changes in EC [Ca++]i, human umbilical vein endothelial cells (HUVEC) maintained as monolayers were loaded with fura-2. [Ca++]i was measured in single EC during PMN adhesion to and migration across these monolayers. PMN-EC adhesion and transendothelial PMN migration in response to formyl-methionyl-leucyl-phenylalanine (fMLP) as well as to interleukin 1 (IL-1) treated EC induced a transient increase in EC [Ca++]i which temporally corresponded with the time course of PMN-EC interactions. When EC [Ca++]i was clamped at resting levels with a cell permeant calcium buffer, PMN migration across EC monolayers and PMN induced changes in EC monolayer permeability were inhibited. However, clamping of EC [Ca++]i did not inhibit PMN-EC adhesion. These studies provide evidence that EC respond to stimulated PMN by increasing their [Ca++]i and that this increase in [Ca++]i causes an increase in EC monolayer permeability. Such [Ca++]i increases are required for PMN transit across an EC barrier. We suggest EC [Ca++]i regulates transendothelial migration of PMN by participating in a signal cascade which stimulates EC to open their intercellular junctions to allow transendothelial passage of leukocytes.

摘要

多形核白细胞(PMN)通过在相邻内皮细胞(EC)之间爬行穿过内皮细胞屏障。内皮细胞是否会响应趋化性PMN而调节其细胞间黏附及连接接触的完整性,目前尚无定论。内皮细胞会通过增加其胞质游离钙浓度([Ca++]i)(Rotrosen, D., and J.I. Gallin. 1986. J. Cell Biol. 103:2379 - 2387)以及发生形态变化(Majno, G., S. M. Shea, and M. Leventhal. 1969. J. Cell Biol. 42:617 - 672)来响应组胺等可溶性介质的结合。白三烯C4(LTC4)和凝血酶等物质可增加内皮细胞单层对离子的通透性(通过单层的电阻来测量),并使内皮细胞[Ca++]i短暂升高。为了确定趋化性PMN是否会使内皮细胞[Ca++]i发生类似变化,将维持为单层的人脐静脉内皮细胞(HUVEC)用fura - 2进行负载。在PMN黏附于这些单层并穿过它们迁移的过程中,对单个内皮细胞的[Ca++]i进行测量。响应甲酰甲硫氨酰亮氨酰苯丙氨酸(fMLP)以及白细胞介素1(IL - 1)处理的内皮细胞,PMN - 内皮细胞黏附及跨内皮PMN迁移会使内皮细胞[Ca++]i短暂升高,这在时间上与PMN - 内皮细胞相互作用的时间进程相对应。当用一种细胞可渗透的钙缓冲剂将内皮细胞[Ca++]i钳制在静息水平时,PMN穿过内皮细胞单层的迁移以及PMN诱导的内皮细胞单层通透性变化受到抑制。然而,钳制内皮细胞[Ca++]i并不抑制PMN - 内皮细胞黏附。这些研究提供了证据,表明内皮细胞通过增加其[Ca++]i来响应受刺激的PMN,并且这种[Ca++]i的增加会导致内皮细胞单层通透性增加。这种[Ca++]i的增加是PMN穿过内皮细胞屏障所必需的。我们认为内皮细胞[Ca++]i通过参与一个信号级联反应来调节PMN的跨内皮迁移,该信号级联反应刺激内皮细胞打开其细胞间连接,以允许白细胞进行跨内皮通过。

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