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Oxidation and modification of extracellular matrix and its role in disease

机译:细胞外基质的氧化修饰及其在疾病中的作用

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摘要

There is accumulating evidence that damage to extracellular materials and particularly the extracellular matrix, can play a major role in multiple human pathologies. In contrast to cells, the extracellular compartment of most biological tissues is relatively poorly equipped to prevent or repair damage caused by oxidation due to lower levels of antioxidant defenses (low molecular mass and enzymatic) and repair systems (both catabolic and enzymatic). The extracellular compartment is therefore likely to be subject to both an increased extent of damage and an overall accumulation of damage due to slow turnover and/or poor repair. The nature and consequences of damage to the extracellular matrix is poorly understood, despite evidence that changes in matrix structure influences not only structural integrity, but also cell adhesion, proliferation, migration and signaling, and cytokine and growth factor binding. In this article the nature of the extracellular matrix is briefly reviewed, together with evidence for the presence of matrix modifications in cardiovascular disease. The oxidants and mechanisms that are known to damage extracellular matrix are reviewed, together with the limited data available to date on how such changes affect structural properties and cellular behavior.
机译:越来越多的证据表明,对细胞外物质,尤其是细胞外基质的损害,在多种人类疾病中起着重要作用。与细胞相比,大多数生物组织的细胞外区室配备相对较差,无法预防或修复由于抗氧化剂防御(低分子量和酶促)和修复系统(分解代谢和酶促)水平降低而导致的氧化损伤。因此,由于缓慢的周转和/或不良的修复,细胞外区室可能遭受更大程度的损害和损害的累积。尽管有证据表明基质结构的变化不仅影响结构完整性,而且影响细胞粘附,增殖,迁移和信号传导以及细胞因子和生长因子结合,但对细胞外基质损害的性质和后果知之甚少。本文简要回顾了细胞外基质的性质,以及心血管疾病中基质修饰存在的证据。审查了已知会破坏细胞外基质的氧化剂和机理,以及迄今为止有关此类变化如何影响结构特性和细胞行为的有限数据。

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