治疗缺血性心脏病的细胞外基质疗法现状。

Khaled Hamsho, Mark Broadwin, Christopher R Stone, Frank W Sellke, M Ruhul Abid
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引用次数: 0

摘要

细胞外基质(ECM)是由各种结构蛋白和非结构蛋白组成的三维无细胞网络,嵌入由糖胺聚糖和蛋白聚糖组成的凝胶状基质中。ECM 的作用因所处组织的不同而各异。在心肌中,ECM 充当基于胶原的支架,介导收缩信号的传递,提供旁分泌信号的途径,并维持营养和免疫平衡。有鉴于此,发现 ECM 的组成和作用在心脏病理学中受到调节也就不足为奇了。心肌梗塞(MI)就是一个熟悉的例子;ECM 的变化方式是梗塞后愈合的渐进阶段的特征。近年来,心肌梗塞病理生理学中的这种参与促使人们寻找治疗目标:如果 ECM 成分能促进愈合,那么对它们的操作可能会加速恢复,甚至逆转先前存在的损伤。这种可能性一直是众多研究的主题,其中包括将基于 ECM 的疗法(直接来自生物来源或生物工程来源)整合到心肌疾病模型中。在本文中,我们全面回顾了已发表的有关使用 ECM 作为缺血性心脏病新疗法的文献,重点是整个 ECM 及其成分的生物衍生模型。
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The Current State of Extracellular Matrix Therapy for Ischemic Heart Disease.

The extracellular matrix (ECM) is a three-dimensional, acellular network of diverse structural and nonstructural proteins embedded within a gel-like ground substance composed of glycosaminoglycans and proteoglycans. The ECM serves numerous roles that vary according to the tissue in which it is situated. In the myocardium, the ECM acts as a collagen-based scaffold that mediates the transmission of contractile signals, provides means for paracrine signaling, and maintains nutritional and immunologic homeostasis. Given this spectrum, it is unsurprising that both the composition and role of the ECM has been found to be modulated in the context of cardiac pathology. Myocardial infarction (MI) provides a familiar example of this; the ECM changes in a way that is characteristic of the progressive phases of post-infarction healing. In recent years, this involvement in infarct pathophysiology has prompted a search for therapeutic targets: if ECM components facilitate healing, then their manipulation may accelerate recovery, or even reverse pre-existing damage. This possibility has been the subject of numerous efforts involving the integration of ECM-based therapies, either derived directly from biologic sources or bioengineered sources, into models of myocardial disease. In this paper, we provide a thorough review of the published literature on the use of the ECM as a novel therapy for ischemic heart disease, with a focus on biologically derived models, of both the whole ECM and the components thereof.

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