Programa de Pós-graduação em Bioquímica e Biologia Molecular, Departamento de Bioquímica, Universidade do Rio Grande do Norte (UFRN), Natal 59012-570, Brazil.
Department of Biochemistry and Systems Biology, ISMIB, University of Liverpool, Crown Street, Liverpool L69 7ZB, UK.
Molecules. 2021 Aug 27;26(17):5211. doi: 10.3390/molecules26175211.
The linear anionic class of polysaccharides, glycosaminoglycans (GAGs), are critical throughout the animal kingdom for developmental processes and the maintenance of healthy tissues. They are also of interest as a means of influencing biochemical processes. One member of the GAG family, heparin, is exploited globally as a major anticoagulant pharmaceutical and there is a growing interest in the potential of other GAGs for diverse applications ranging from skin care to the treatment of neurodegenerative conditions, and from the treatment and prevention of microbial infection to biotechnology. To realize the potential of GAGs, however, it is necessary to develop effective tools that are able to exploit the chemical manipulations to which GAGs are susceptible. Here, the current knowledge concerning the chemical modification of GAGs, one of the principal approaches for the study of the structure-function relationships in these molecules, is reviewed. Some additional methods that were applied successfully to the analysis and/or processing of other carbohydrates, but which could be suitable in GAG chemistry, are also discussed.
线性阴离子多糖类,糖胺聚糖(GAGs),在整个动物王国的发育过程和维持健康组织中都起着至关重要的作用。它们也作为影响生化过程的一种手段而受到关注。GAG 家族的一个成员肝素,在全球范围内被用作主要的抗凝药物,人们对其他 GAG 用于各种应用的潜力越来越感兴趣,从皮肤护理到神经退行性疾病的治疗,从微生物感染的治疗和预防到生物技术。然而,为了实现 GAG 的潜力,有必要开发能够利用 GAG 易受化学修饰的有效工具。在这里,对 GAG 化学修饰的现有知识进行了综述,这是研究这些分子结构-功能关系的主要方法之一。还讨论了一些成功应用于其他碳水化合物分析和/或处理的其他方法,但这些方法可能适用于 GAG 化学。