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短乳杆菌M-14粗胞外多糖的体外模拟消化和发酵特性评估

Evaluation of in vitro simulated digestion and fermentation characteristics of the crude exopolysaccharide from Levilactobacillus brevis M-14.

作者信息

Wang Qi, Li Gen, Qin Wenjun, Cai Jin, Wang Nifei

机构信息

School of Life Science, Shanxi University, Taiyuan, Shanxi, China.

Nutritional Department, Shanxi Traditional Chinese Medical Hospital, Taiyuan, Shanxi, China.

出版信息

J Food Sci. 2024 Dec;89(12):9860-9878. doi: 10.1111/1750-3841.17467. Epub 2024 Oct 30.

DOI:10.1111/1750-3841.17467
PMID:39475350
Abstract

The present study employed an in vitro static digestion model to simulate the saliva-gastrointestinal digestion and fecal fermentation of exopolysaccharides (EPSs) extracted from Levilactobacillus brevis M-14, aiming to understand the dynamic changes in physicochemical properties, biological potential of EPS, as well as their impact on the human enteric microorganism. EPS was mainly composed of polysaccharides. The molecular weight (M) showed that EPS comprised two parts with a high M and a low M fraction of 42.81 × 10 and 1.23 × 10 Da, respectively. EPSs mainly consisted of mannose, rhamnose, galacturonic acid, glucose, and galactose in a molar ratio of 0.42∶0.13∶0.21∶0.13∶0.11. In the simulated digestion process, EPS was relatively stable. Furthermore, simulated digestion increased the antioxidant and hypoglycemic capacities of EPS. During the fermentation stage, the total carbohydrate contents of EPS decreased by 20.19%. The M of the two components of EPS decreased by 16.37% and 61.67%, respectively, and accompanied by the production of free monosaccharides. EPS had the potential to modulate the composition of gut microbiota, increasing the relative abundance of Enterococcus and Parabacteroides, while decreasing the relative abundance of Bacteroides. The pH decreased and total short-chain fatty acids contents increased, especially acetic acid and propionic acid. This research provided valuable insights into the potential application of EPS as a prebiotic agent.

摘要

本研究采用体外静态消化模型,模拟短乳杆菌M-14胞外多糖(EPS)的唾液-胃肠消化及粪便发酵过程,旨在了解EPS理化性质、生物活性的动态变化及其对人体肠道微生物的影响。EPS主要由多糖组成。分子量(M)表明,EPS由两部分组成,高M部分和低M部分的分子量分别为42.81×10和1.23×10 Da。EPS主要由甘露糖、鼠李糖、半乳糖醛酸、葡萄糖和半乳糖组成,摩尔比为0.42∶0.13∶0.21∶0.13∶0.11。在模拟消化过程中,EPS相对稳定。此外,模拟消化提高了EPS的抗氧化和降血糖能力。在发酵阶段,EPS的总碳水化合物含量下降了20.19%。EPS的两个组分的M分别下降了16.37%和61.67%,并伴有游离单糖的产生。EPS具有调节肠道微生物群组成的潜力,增加肠球菌和副拟杆菌的相对丰度,同时降低拟杆菌的相对丰度。pH值下降,总短链脂肪酸含量增加,尤其是乙酸和丙酸。本研究为EPS作为益生元制剂的潜在应用提供了有价值的见解。

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