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Microbial production of scleroglucan and downstream processing

机译:硬葡聚糖的微生物生产和下游加工

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摘要

Synthetic petroleum-based polymers and natural plant polymers have the disadvantage of restricted sources, in addition to the non-biodegradability of the former ones. In contrast, eco-sustainable microbial polysaccharides, of low-cost and standardized production, represent an alternative to address this situation. With a strong global market, they attracted worldwide attention because of their novel and unique physico-chemical properties as well as varied industrial applications, and many of them are promptly becoming economically competitive. Scleroglucan, a β-1,3-β-1,6-glucan secreted by Sclerotium fungi, exhibits high potential for commercialization and may show different branching frequency, side-chain length, and/or molecular weight depending on the producing strain or culture conditions. Water-solubility, viscosifying ability and wide stability over temperature, pH and salinity make scleroglucan useful for different biotechnological (enhanced oil recovery, food additives, drug delivery, cosmetic and pharmaceutical products, biocompatible materials, etc.), and biomedical (immunoceutical, antitumor, etc.) applications. It can be copiously produced at bioreactor scale under standardized conditions, where a high exopolysaccharide concentration normally governs the process optimization. Operative and nutritional conditions, as well as the incidence of scleroglucan downstream processing will be discussed in this chapter. The relevance of using standardized inocula from selected strains and experiences concerning the intricate scleroglucan scaling-up will be also herein outlined.
机译:合成石油基聚合物和天然植物聚合物的缺点是,除了前者的不可生物降解性外,还具有来源受限的缺点。相反,低成本和标准化生产的生态可持续的微生物多糖是解决这种情况的替代方法。凭借强大的全球市场,它们以其新颖独特的理化性质以及多样的工业应用吸引了全世界的关注,其中许多正迅速在经济上变得具有竞争力。菌核聚糖,一种由菌核真菌分泌的β-1,3-β-1,6-葡聚糖,具有很高的商业化潜力,并且根据生产菌株或培养物的不同,其分支频率,侧链长度和/或分子量可能不同。条件。水溶性,增粘能力以及在温度,pH和盐度下的广泛稳定性使硬葡聚糖可用于不同的生物技术(提高采油率,食品添加剂,药物递送,化妆品和药品,生物相容性材料等)和生物医学(免疫,抗肿瘤,抗肿瘤)等)的应用程序。它可以在标准条件下以生物反应器规模大量生产,其中高胞外多糖浓度通常控制工艺优化。本章将讨论手术和营养条件以及硬葡聚糖下游加工的发生率。本文还将概述使用来自选定菌株的标准化接种物的相关性以及涉及复杂的硬葡聚糖放大的经验。

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