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他汀类药物预防静脉移植物狭窄:抑制基质金属蛋白酶-9的作用

Statins for the prevention of vein graft stenosis: a role for inhibition of matrix metalloproteinase-9.

作者信息

Porter K E, Turner N A

机构信息

Integrated Molecular Cardiology Group, Institute for Cardiovascular Research, University of Leeds, Leeds LS2 9JT, U.K.

出版信息

Biochem Soc Trans. 2002 Apr;30(2):120-6.

Abstract

Saphenous vein (SV) grafts are commonly used to bypass coronary arteries that are diseased due to atherosclerosis. However, the development of intimal hyperplasia in such grafts can lead to patency-threatening stenosis and re-occlusion of the vessel. The proliferation and migration of smooth muscle cells (SMC) play key roles in the development of intimal hyperplasia, and an agent that inhibits both of these processes therefore has therapeutic potential. A prerequisite for SMC proliferation and migration in vivo is degradation of the basement membrane, achieved by secretion of the matrix-degrading gelatinases matrix metalloproteinase-2 (MMP-2) and MMP-9. Statins are cholesterol-lowering drugs that also have direct effects on SMC function. Here we report that neointima formation in organ-cultured human SV segments is inhibited by simvastatin, an effect that is associated with reduced MMP-9 activity. Additionally, our work shows that simvastatin not only inhibits proliferation, but importantly also inhibits invasion (migration through a matrix barrier), of cultured human SV SMC. Thus simvastatin treatment appears to inhibit neointima formation as a result of combined inhibition of SMC proliferation and invasion. The potential intracellular mechanisms by which statins affect SMC proliferation and migration, and thus attenuate intimal hyperplasia, are discussed, with particular emphasis on the role of MMP-9.

摘要

大隐静脉(SV)移植物常用于绕过因动脉粥样硬化而病变的冠状动脉。然而,此类移植物中内膜增生的发展可导致威胁血管通畅的狭窄和血管再闭塞。平滑肌细胞(SMC)的增殖和迁移在内膜增生的发展中起关键作用,因此,一种能同时抑制这两个过程的药物具有治疗潜力。体内SMC增殖和迁移的一个先决条件是基底膜的降解,这是通过基质降解明胶酶基质金属蛋白酶-2(MMP-2)和MMP-9的分泌来实现的。他汀类药物是降低胆固醇的药物,对SMC功能也有直接影响。在此我们报告,辛伐他汀可抑制器官培养的人SV节段中的新生内膜形成,这一作用与MMP-9活性降低有关。此外,我们的研究表明,辛伐他汀不仅抑制培养的人SV SMC的增殖,而且重要的是还抑制其侵袭(通过基质屏障迁移)。因此,辛伐他汀治疗似乎通过联合抑制SMC增殖和侵袭而抑制新生内膜形成。本文讨论了他汀类药物影响SMC增殖和迁移从而减轻内膜增生的潜在细胞内机制,特别强调了MMP-9的作用。

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