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极端环境微生物胞外多糖:工程策略与应用的回顾及新视角

Extremophilic exopolysaccharides: A review and new perspectives on engineering strategies and applications.

机构信息

Department of Chemical and Biological Engineering, South Dakota School of Mines and Technology, Rapid City, SD 57701, USA; BuG ReMeDEE consortium, South Dakota School of Mines and Technology, Rapid City, SD 57701, USA.

Department of Chemical and Biological Engineering, South Dakota School of Mines and Technology, Rapid City, SD 57701, USA; Department of Materials and Metallurgical Engineering, South Dakota School of Mines and Technology, Rapid City, SD 57701, USA; Composite and Nanocomposite Advanced Manufacturing - Biomaterials Center (CNAM-Bio Center), Rapid City, SD 57701, USA.

出版信息

Carbohydr Polym. 2019 Feb 1;205:8-26. doi: 10.1016/j.carbpol.2018.10.011. Epub 2018 Oct 9.

Abstract

Numerous microorganisms inhabiting harsh niches produce exopolysaccharides as a significant strategy to survive in extreme conditions. The exopolysaccharides synthesized by extremophiles possess distinctive characteristics due to the varied harsh environments which stimulate the microorganisms to produce these biopolymers. Despite many bioprocesses have been designed to yield exopolysaccharides, the production of exopolysaccharides by extremophiles is inefficient compared with mesophilic and neutrophilic exopolysaccharide producers. Meanwhile, the industrial development of novel extremophilic exopolysaccharides remains constrained due to the lack of exploration. In this review, we summarize the structure and properties of various exopolysaccharides produced by extremophiles, and also discuss potential metabolic and genetic engineering strategies for enhanced yield and modified structure of extremophilic exopolysaccharides. Special focus is given to the applications of extremophilic exopolysaccharides in the areas of biomedicine, food industry, and biomaterials via nano-techniques, casting and electrospinning.

摘要

许多栖息在恶劣小生境中的微生物会产生胞外多糖作为在极端条件下生存的重要策略。由于各种恶劣环境刺激微生物产生这些生物聚合物,因此极端微生物合成的胞外多糖具有独特的特性。尽管已经设计了许多生物工艺来生产胞外多糖,但与嗜温和嗜中性胞外多糖生产者相比,极端微生物生产胞外多糖的效率较低。同时,由于缺乏探索,新型极端微生物胞外多糖的工业发展仍然受到限制。在这篇综述中,我们总结了各种极端微生物产生的胞外多糖的结构和性质,并讨论了增强极端微生物胞外多糖产量和修饰结构的潜在代谢和遗传工程策略。特别关注通过纳米技术、铸造和静电纺丝将极端微生物胞外多糖应用于生物医药、食品工业和生物材料领域。

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