利用热力学定律了解基质金属蛋白酶如何协调心肌对损伤的反应。

Metalloproteinases in medicine Pub Date : 2015-01-01 Epub Date: 2015-10-30 DOI:10.2147/MNM.S74093
Rugmani Padmanabhan Iyer, Mira Jung, Merry L Lindsey
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引用次数: 4

摘要

心肌梗死(MI)后,左心室(LV)经历一系列分子、细胞和功能改变,这些改变既是伤口愈合反应的一部分,在梗死区形成疤痕,也是该反应的后果。利用热力学定律作为类比,我们在这里提出了三个定律来分类心肌梗死后左室重构过程。第一定律是左心室将试图保持平衡和补偿作为一种最大化功能的方式,第二定律是重塑是渐进的和单向的,第三定律是最终目标是(理想的,但并不总是可以实现的)一个稳定的,平衡的疤痕。这种比较有助于确定系统的边界,无论是梗死区、左室、心脏还是整个身体。本综述为非直接在该领域的研究人员提供了一个概述,并建立了一个框架,以帮助确定未来的研究方向。
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Using the laws of thermodynamics to understand how matrix metalloproteinases coordinate the myocardial response to injury.

Following myocardial infarction (MI), the left ventricle (LV) undergoes a series of molecular, cellular, and functional alterations that are both part of the wound healing response to form a scar in the infarct region and the consequence of that response. Using the laws of thermodynamics as an analogy, we present here three laws for categorizing the post-MI LV remodeling process. The first law is that the LV will attempt to maintain equilibrium and compensate as a way to maximize function, the second law is that remodeling is progressive and unidirectional, and the third law is that the final goal is (ideally, but not always achievable) a stable, equilibrated scar. This comparison helps to define the boundaries of the system, whether it be the infarct zone, the LV, the heart, or the entire body. This review provides an overview for those not directly in the field and establishes a framework to help prioritize future research directions.

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