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Structural features of microbial exopolysaccharides in relation to their antioxidant activity

机译:微生物外碳与其抗氧化活性相关的结构特征

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Oxidative damage caused by free radicals is an inevitable and pervasive phenomenon that leads to cell damage and the emergence of diseases including ageing, cancer, diabetes, cardiovascular disease and neurodegenerative disorders. In this context, antioxidants play a significant role in encountering free radicals by delaying or reducing the oxidative damage of cells. Evidence suggests that synthetic antioxidants are double-edged swords wherefore the requirement for natural antioxidants is increasing globally. Exploring non-toxic, biodegradable and compatible natural molecules like exopolysaccharides can favour the current antioxidant limitations. Microbial exopolysaccharides represent a structurally diverse class of carbohydrate molecules secreted at the cell wall. Recently, bioprospecting exopolysaccharides for their astounding physiochemical properties and the reliable structure-activity relationship have motivated more research towards the investigation of their antioxidant properties. Here we propose that structural features of exopolysaccharides such as monosaccharide residues, branching, molecular weight, glycosidic linkage, functional groups, protein, selenium, and chemical modifications are likely to influence their antioxidant activity. To support this hypothesis we review the interdependence of structural features of exopolysaccharides to the observed antioxidant activity. In light of its importance, this review focuses on the understanding of the elimination of free radicals by microbial exopolysaccharides derived from marine and nonmarine sources during the last six years.
机译:自由基引起的氧化损伤是一种不可避免的和普遍存在的现象,导致细胞损伤和疾病的出现,包括老化,癌症,糖尿病,心血管疾病和神经变性障碍。在这种情况下,抗氧化剂在通过延迟或减少细胞的氧化损伤来遇到自由基的显着作用。证据表明,合成抗氧化剂是双刃剑,因此对天然抗氧化剂的要求在全球增加。探索无毒,可生物降解和兼容的天然分子,如外多糖可以赞成当前的抗氧化局限性。微生物脱果糖代表在细胞壁中分泌的结构各类的碳水化合物分子。最近,对其令人震惊的生理化学性质和可靠的结构 - 活性关系的生物掩模蛋白具有促进对其抗氧化特性的研究的促进。在这里,我们提出了脱核酸的结构特征,例如单糖残基,支化,分子量,糖苷键,官能团,蛋白质,硒和化学修饰可能影响其抗氧化活性。为了支持这一假设,我们审查了外核结构特征对观察到的抗氧化活性的相互依赖性。鉴于其重要性,本综述重点介绍了在过去六年期间通过衍生自海洋和非甲状腺素来源的微生物外碳消除自由基的理解。

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