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脉压对血管平滑肌细胞迁移的影响:尿激酶和基质金属蛋白酶的作用

Effect of pulse pressure on vascular smooth muscle cell migration: the role of urokinase and matrix metalloproteinase.

作者信息

Redmond E M, Cahill P A, Hirsch M, Wang Y N, Sitzmann J V, Okada S S

机构信息

Department of Surgery, Georgetown University Medical Center, Washington, DC 20007, USA.

出版信息

Thromb Haemost. 1999 Feb;81(2):293-300.

Abstract

Plasminogen activator (PA) expression plays an important role in smooth muscle cell (SMC) migration and may therefore contribute to mechanical force-induced arterialization of vein grafts. The aim of this study was to determine whether pulse pressure due to pulsatile flow modulates SMC migration via urokinase (u-PA)-dependent mechanisms. Using a perfused transcapillary culture system, human umbilical vein SMC were exposed to pulse pressures (0-56 mmHg), in the absence or presence of human umbilical vein endothelial cells (EC) by varying pulsatile flow rates (0 ml/min to 25 ml/min). SMC cultured in the absence of EC increased their migration following exposure to increased pulse pressure (248+/-14%). Both u-PA and matrix metallo-proteinase 1 (MMP-1) expression was significantly elevated in SMC exposed to pressure as compared to static controls. The role of proteases in the pulse pressure-induced enhancement of SMC migration was confirmed following pretreatment with aprotinin, an anti u-PA antibody and metalloproteinase inhibitors (181+/-14% for aprotinin vs. 256+/-25% for control, 108+/-4% for anti-u-PA antibody vs. 233+/-17% for non-immune IgG, and 114+/-9% for BB-94, 105+/-7% for BB-3103 vs. 222+/-5% for control). Using SMC derived from u-PA gene knock-out mice, the SMC migratory response to increased pulse pressure was completely inhibited despite a significant increase in MMP expression in these cells. These results suggest that pulse pressure due to pulsatile flow induces SMC migration in vitro via u-PA and MMP-dependent mechanisms. Moreover, u-PA gene deletion results in blunting of pressure-induced SMC migration despite the endogenous upregulation of metalloproteinase. Modulation of u-PA expression by pressure may thus represent an important mechanism whereby hemodynamic forces regulate smooth muscle cell migration.

摘要

纤溶酶原激活物(PA)的表达在平滑肌细胞(SMC)迁移中起重要作用,因此可能促成机械力诱导的静脉移植物动脉化。本研究的目的是确定搏动性血流引起的脉压是否通过尿激酶(u-PA)依赖性机制调节SMC迁移。使用灌注式跨毛细血管培养系统,通过改变搏动流速(0毫升/分钟至25毫升/分钟),将人脐静脉SMC暴露于脉压(0 - 56毫米汞柱),有无人脐静脉内皮细胞(EC)存在的情况下。在无EC培养的SMC暴露于升高的脉压后,其迁移增加(248±14%)。与静态对照相比,暴露于压力的SMC中u-PA和基质金属蛋白酶1(MMP-1)的表达均显著升高。在用抑肽酶、抗u-PA抗体和金属蛋白酶抑制剂预处理后,证实了蛋白酶在脉压诱导的SMC迁移增强中的作用(抑肽酶处理组为181±14%,对照组为256±25%;抗u-PA抗体处理组为108±4%,非免疫IgG处理组为233±17%;BB-94处理组为114±9%,BB-3103处理组为105±7%,对照组为222±5%)。使用源自u-PA基因敲除小鼠的SMC,尽管这些细胞中MMP表达显著增加,但对升高脉压的SMC迁移反应完全受到抑制。这些结果表明,搏动性血流引起的脉压通过u-PA和MMP依赖性机制在体外诱导SMC迁移。此外,尽管金属蛋白酶内源性上调,但u-PA基因缺失导致压力诱导的SMC迁移减弱。因此,压力对u-PA表达的调节可能代表血流动力学力调节平滑肌细胞迁移的重要机制。

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