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体外氧衍生物种对糖胺聚糖结构的化学修饰。

The chemical modification of glycosaminoglycan structure by oxygen-derived species in vitro.

作者信息

Moseley R, Waddington R, Evans P, Halliwell B, Embery G

机构信息

Department of Basic Dental Science, Dental School, University of Wales College of Medicine, Heath Park, Cardiff, UK.

出版信息

Biochim Biophys Acta. 1995 Jun 9;1244(2-3):245-52. doi: 10.1016/0304-4165(95)00010-9.

Abstract

The effect of reactive oxygen species (ROS) on the chemical structure of glycosaminoglycans (GAG) was studied in order to consider their role in connective tissue damage during an inflammatory disease state such as periodontal disease. GAG were exposed to a radical generating system for 1 h and analysed by gel filtration for fragmentation and chemically with respect to uronic acid, hexosamine and sulfate content. Non-sulfated GAG, hyaluronan and chondroitin, were most susceptible to depolymerisation and chemical modification of uronic acid and hexosamine residues by ROS. Depolymerisation and chemical modification of sulfated GAG, chondroitin 4-sulfate, dermatan sulfate and heparan sulfate was significantly less than for non-sulfated GAG. The highly sulfated GAG heparin showed minimal depolymerisation by ROS, but uronic acid residues were readily modified. Analysis of the ROS-exposed residues suggests that uronic acid is capable of degrading to a 3-carbon aldehyde, malondialdehyde. Chondroitin sulfate exposed to ROS resulted in marginal desulfation. The results suggest that the presence of sulfate on the GAG chain may protect the molecule against ROS attack. However, chemical modification of GAG may affect proteoglycan function and be of importance in considering connective tissue destruction in a variety of pathological situations, including periodontal disease.

摘要

为了探讨活性氧(ROS)在诸如牙周病等炎症性疾病状态下对结缔组织损伤中的作用,研究了ROS对糖胺聚糖(GAG)化学结构的影响。将GAG暴露于自由基生成系统1小时,通过凝胶过滤分析其片段化情况,并对其糖醛酸、己糖胺和硫酸盐含量进行化学分析。非硫酸化的GAG,即透明质酸和软骨素,最容易受到ROS导致的解聚以及糖醛酸和己糖胺残基的化学修饰。硫酸化的GAG,如硫酸软骨素4-硫酸盐、硫酸皮肤素和硫酸乙酰肝素,其解聚和化学修饰程度明显低于非硫酸化的GAG。高度硫酸化的GAG肝素受ROS导致的解聚作用最小,但糖醛酸残基很容易被修饰。对暴露于ROS后的残基分析表明,糖醛酸能够降解为三碳醛,即丙二醛。暴露于ROS的硫酸软骨素会导致轻微的脱硫。结果表明,GAG链上硫酸根的存在可能保护分子免受ROS攻击。然而,GAG的化学修饰可能会影响蛋白聚糖的功能,并且在考虑包括牙周病在内的各种病理情况下的结缔组织破坏时具有重要意义。

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