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Exopolysaccharides produced by marine bacteria and their applications as glycosaminoglycan-like molecules

机译:海洋细菌产生的胞外多糖及其作为糖胺聚糖样分子的应用

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摘要

Although polysaccharides are ubiquitous and the most abundant renewable bio-components, their studies, covered by the glycochemistry and glycobiology fields, remain a challenge due to their high molecular diversity and complexity. Polysaccharides are industrially used in food products; human therapeutics fall into a more recent research field and pharmaceutical industry is looking for more and more molecules with enhanced activities. Glycosaminoglycans (GAGs) found in animal tissues play a critical role in cellular physiological and pathological processes as they bind many cellular components. Therefore, they present a great potential for the design and preparation of therapeutic drugs. On the other hand, microorganisms producing exopolysaccharides (EPS) are renewable resources meeting well the actual industrial demand. In particular, the diversity of marine microorganisms is still largely unexplored offering great opportunities to discover high value products such as new molecules and biocatalysts. EPS-producing bacteria from the marine environment will be reviewed with a focus on marine-derived EPS from bacteria isolated from deep-sea hydrothermal vents. Information on chemical and structural features, putative pathways of biosynthesis, novel strategies for chemical and enzymatic modifications and potentialities in the biomedical field will be provided. An integrated approach should be used to increase the basic knowledge on these compounds and their applications; new clean environmentally friendly processes for the production of carbohydrate bioactive compounds should also be proposed for a sustainable industry.
机译:尽管多糖无处不在并且是最丰富的可再生生物成分,但是由于其分子多样性和复杂性,其糖化学和糖生物学领域的研究仍面临挑战。多糖在工业上用于食品中。人体疗法进入了较新的研究领域,制药行业正在寻找越来越多的具有增强活性的分子。动物组织中发现的糖胺聚糖(GAG)在细胞的生理和病理过程中起着至关重要的作用,因为它们结合了许多细胞成分。因此,它们为治疗药物的设计和制备提供了巨大的潜力。另一方面,产生胞外多糖(EPS)的微生物是可再生资源,可以很好地满足实际工业需求。特别是,海洋微生物的多样性仍在很大程度上未被开发,这为发现高价值产品(例如新分子和生物催化剂)提供了巨大的机会。将审查海洋环境中产生EPS的细菌,重点是从深海热液喷口中分离出的细菌从海洋中产生的EPS。将提供有关化学和结构特征,生物合成的假定途径,化学和酶促修饰的新策略以及生物医学领域潜力的信息。应采用综合方法来增加有关这些化合物及其应用的基本知识;还应该为可持续产业提出生产碳水化合物生物活性化合物的新的清洁环保方法。

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