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透明质酸在伤口修复中的作用。

Functions of hyaluronan in wound repair.

作者信息

Chen W Y, Abatangelo G

机构信息

ConvaTec Wound Healing Research Institute, Deeside, United Kingdom.

出版信息

Wound Repair Regen. 1999 Mar-Apr;7(2):79-89. doi: 10.1046/j.1524-475x.1999.00079.x.

Abstract

Hyaluronan is a major carbohydrate component of the extracellular matrix and can be found in skin, joints, eyes and most other organs and tissues. It has a simple, repeated disaccharide linear copolymer structure that is completely conserved throughout a large span of the evolutionary tree, indicating a fundamental biological importance. Amongst extracellular matrix molecules, it has unique hygroscopic, rheological and viscoelastic properties. Hyaluronan binds to many other extracellular matrix molecules, binds specifically to cell bodies through cell surface receptors, and has a unique mode of synthesis in which the molecule is extruded immediately into the extracellular space upon formation. Through its complex interactions with matrix components and cells, hyaluronan has multifaceted roles in biology utilizing both its physicochemical and biological properties. These biological roles range from a purely structural function in the extracellular matrix to developmental regulation through effects of cellular behavior via control of the tissue macro- and microenvironments, as well as through direct receptor mediated effects on gene expression. Hyaluronan is also thought to have important biological roles in skin wound healing, by virtue of its presence in high amounts in skin. Hyaluronan content in skin is further elevated transiently in granulation tissue during the wound healing process. In this review, the general physicochemical and biological properties of hyaluronan, and how these properties may be utilized in the various processes of wound healing: inflammation, granulation and reepithelization, are presented.

摘要

透明质酸是细胞外基质的主要碳水化合物成分,存在于皮肤、关节、眼睛以及大多数其他器官和组织中。它具有简单的、重复的二糖线性共聚物结构,在进化树的很大范围内完全保守,这表明其具有根本的生物学重要性。在细胞外基质分子中,它具有独特的吸湿、流变和粘弹性特性。透明质酸与许多其他细胞外基质分子结合,通过细胞表面受体特异性地与细胞体结合,并且具有独特的合成方式,即分子在形成后立即被挤出到细胞外空间。通过与基质成分和细胞的复杂相互作用,透明质酸利用其物理化学和生物学特性在生物学中发挥多方面的作用。这些生物学作用范围从在细胞外基质中的纯粹结构功能,到通过控制组织宏观和微观环境对细胞行为的影响以及通过直接受体介导的对基因表达的影响来进行发育调节。由于透明质酸在皮肤中大量存在,它也被认为在皮肤伤口愈合中具有重要的生物学作用。在伤口愈合过程中,肉芽组织中透明质酸的含量会进一步短暂升高。在这篇综述中,介绍了透明质酸的一般物理化学和生物学特性,以及这些特性如何在伤口愈合的各个过程(炎症、肉芽形成和再上皮化)中得到利用。

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