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Matrix metalloproteinase inhibition therapy for vascular diseases.

机译:基质金属蛋白酶抑制疗法用于血管疾病。

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摘要

The matrix metalloproteinases (MMPs) are 23 secreted or cell surface proteases that act together and with other protease classes to turn over the extracellular matrix, cleave cell surface proteins and alter the function of many secreted bioactive molecules. In the vasculature MMPs influence the migration proliferation and apoptosis of vascular smooth muscle, endothelial cells and inflammatory cells, thereby affecting intima formation, atherosclerosis and aneurysms, as substantiated in clinical and mouse knockout and transgenic studies. Prominent counterbalancing roles for MMPs in tissue destruction and repair emerge from these experiments. Naturally occurring tissue inhibitors of MMPs (TIMPs), pleiotropic mediators such as tetracyclines, chemically-synthesised small molecular weight MMP inhibitors (MMPis) and inhibitory antibodies have all shown effects in animal models of vascular disease but only doxycycline has been evaluated extensively in patients. A limitation of broad specificity MMPis is that they prevent both matrix degradation and tissue repair functions of different MMPs. Hence MMPis with more restricted specificity have been developed and recent studies in models of atherosclerosis accurately replicate the phenotypes of the corresponding gene knockouts. This review documents the established actions of MMPs and their inhibitors in vascular pathologies and considers the prospects for translating these findings into new treatments.
机译:基质金属蛋白酶(MMP)是23种分泌的或细胞表面的蛋白酶,它们共同起作用,并与其他蛋白酶类别相互作用,以翻转细胞外基质,切割细胞表面蛋白并改变许多分泌的生物活性分子的功能。在脉管系统中,MMP影响血管平滑肌,内皮细胞和炎性细胞的迁移增殖和凋亡,从而影响内膜形成,动脉粥样硬化和动脉瘤,这在临床和小鼠基因敲除和转基因研究中得到证实。这些实验证明了MMP在组织破坏和修复中的突出平衡作用。天然存在的MMPs(TIMPs)组织抑制剂,多效介质(例如四环素),化学合成的小分子量MMP抑制剂(MMPis)和抑制性抗体在血管疾病动物模型中均显示出作用,但仅多西环素已在患者中得到广泛评估。广泛特异性MMPis的局限性在于,它们既阻止了基质降解,又阻止了不同MMPs的组织修复功能。因此,已经开发出具有更多限制性特异性的MMPis,并且在动脉粥样硬化模型中的最新研究准确地复制了相应基因敲除的表型。这篇综述记录了MMPs及其抑制剂在血管病理中的既定作用,并考虑了将这些发现转化为新疗法的前景。

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