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Targeting Matrix Metalloproteinases in Heart Disease: Lessons from Endogenous Inhibitors

机译:在心脏病中靶向基质金属蛋白酶:来自内源性抑制剂的经验教训

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摘要

Basic pharmacological/transgenic studies have clearly demonstrated a cause-effect relationship between the induction and activation of matrix metalloproteinases (MMPs) and adverse changes in the structure and function of the left ventricle (LV). Thus, regulation of MMP induction and/or activation would appear to be a potential therapeutic target in the context of cardiovascular disease, such as following myocardial infarction (MI). However, pharmacological approaches to inhibit MMPs have yet to be realized for clinical applications. The endogenous inhibitors of the MMPs (TIMPs) constitute a set of 4 small molecules with unique functionality and specificity. Thus, improved understanding on the function and roles of individual TIMPs may provide important insight into the design and targets for pharmacological applications in LV remodeling processes, such as MI. Therefore, the purpose of this review will be to briefly examine biological functions and relevance of the individual TIMPs in terms of adverse LV remodeling post-MI. Second is to examine the past outcomes and issues surrounding clinical trials targeting MMPs in the post MI context and how new insights into TIMP biology may provide new pharmacological targets. This review will put forward the case that initial pharmacological attempts at MMP inhibition were over-simplistic and that future strategies must recognize the diversity of this matrix proteolytic system and that lessons from TIMP biology may lead to future therapeutic strategies.
机译:基础药理/转基因研究已明确证明基质金属蛋白酶(MMPs)的诱导和激活与左心室(LV)的结构和功能的不利变化之间的因果关系。因此,在心血管疾病的情况下,例如在心肌梗塞(MI)之后,调节MMP诱导和/或激活似乎是潜在的治疗目标。但是,抑制MMPs的药理方法尚未用于临床。 MMP(TIMPs)的内源性抑制剂构成了一组4个具有独特功能和特异性的小分子。因此,对单个TIMPs功能和作用的更好理解可以为了解LV重塑过程(例如MI)中药理学应用的设计和目标提供重要的见识。因此,本综述的目的将是就心肌梗死后不良的左室重构,简要检查各个TIMP的生物学功能和相关性。其次是检查围绕MI后环境中针对MMP的临床试验的过去结果和问题,以及对TIMP生物学的新见识如何提供新的药理学靶标。这篇综述将提出这样一种情况,即最初的抑制MMP的药理学尝试过于简单,而且未来的策略必须认识到这种基质蛋白水解系统的多样性,而TIMP生物学的教训可能会导致未来的治疗策略。

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