首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >A high-molecular weight exopolysaccharide from the Cs-HK1 fungus: Ultrasonic degradation, characterization and in vitro fecal fermentation
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A high-molecular weight exopolysaccharide from the Cs-HK1 fungus: Ultrasonic degradation, characterization and in vitro fecal fermentation

机译:来自CS-HK1真菌的高分子量脱核:超声波降解,表征和体外粪便发酵

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摘要

This work was to examine the impact of power ultrasound (US) on the molecular properties of a high-molecular weight (MW) exopolysaccharide (EPS) from the Cs-HK1 medicinal fungus and the utilization, and prebiotic function of the US-treated EPS fractions in human fecal microflora in vitro. The US treatment caused notable reduction of intrinsic viscosity, average MW and aggregate size of EPS in water but no significant changes in the molecular structure. The US-treated EPS fractions were consumed more rapidly by the fecal microflora, resulting in a higher total level of short chain fatty acids. They also affected the relative abundance in the microflora more beneficially than the original EPS. The results suggest that power US is effective for modifying and improving the prebiotic properties of high-MW polysaccharides.
机译:这项工作是检查功率超声(美国)对来自CS-HK1药用真菌的高分子量(MW)外碳(EPS)的分子特性以及美国治疗的EPS的利用率和益生元功能 体外人粪便微生物的级分。 美国治疗导致内在粘度显着降低了水中的内在粘度,平均MW和EPS的总体大小,但分子结构没有显着变化。 粪便微氟氯罗拉迅速消耗了美国治疗的EPS级分,导致较高的短链脂肪酸总水平。 它们还影响微生物的相对丰度,比原来的eps更有利。 结果表明,发电机有效改变和改善高MW多糖的益生元特性。

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