α-Glucan-type exopolysaccharides with varied linkage patterns: Mitigating post-prandial glucose spike and prolonging the glycemic response

饭后 葡聚糖 血糖性 生物化学 升糖指数 2型糖尿病 乳糖 化学 食品科学 血糖负荷 联动装置(软件) 生物 糖尿病 内分泌学 基因
作者
Hae-eun Lim,Young-Bo Song,Hyun‐Wook Choi,Byung-Hoo Lee
出处
期刊:Carbohydrate Polymers [Elsevier]
卷期号:331: 121898-121898 被引量:4
标识
DOI:10.1016/j.carbpol.2024.121898
摘要

Microbial exopolysaccharides (EPSs) are traditionally known as prebiotics that foster colon health by serving as microbiota nutrients, while remaining undigested in the small intestine. However, recent findings suggest that α-glucan structures in EPS, with their varied α-linkage types, can be hydrolyzed by mammalian α-glucosidases at differing rates. This study explores α-glucan-type EPSs, including dextran, alternan, and reuteran, assessing their digestive properties both in vitro and in vivo. Notably, while fungal amyloglucosidase – a common in vitro tool for carbohydrate digestibility analysis – shows limited efficacy in breaking down these structures, mammalian intestinal α-glucosidases can partially degrade them into glucose, albeit slowly. In vivo experiments with mice revealed that various EPSs elicited a significantly lower glycemic response (p < 0.05) than glucose, indicating their nature as carbohydrates that are digested slowly. This leads to the conclusion that different α-glucan-type EPSs may serve as ingredients that attenuate post-prandial glycemic responses. Furthermore, rather than serving as mere dietary fibers, they hold the potential for blood glucose regulation, offering new avenues for managing obesity, Type 2 diabetes, and other related-chronic diseases.
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