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小麦胚芽多糖通过体外批量粪便发酵和衰老小鼠模型与肠道微生物群相互作用:靶向富集均匀拟杆菌和双歧杆菌假长双歧杆菌。

Interactions between wheat germ polysaccharide and gut microbiota through in vitro batch fecal fermentation and an aging mice model: Targeting enrichment of Bacteroides uniformis and Bifidobacterium pseudocatenulatum.

机构信息

State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi 214122, China; School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu 214122, China.

State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi 214122, China; School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu 214122, China; National Engineering Research Center for Functional Food, Jiangnan University, Wuxi, Jiangsu 214122, China.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 8):127559. doi: 10.1016/j.ijbiomac.2023.127559. Epub 2023 Oct 19.

Abstract

The interaction between wheat germ polysaccharide (WGP) and gut microbiota remains relatively less investigated. Thus, this study explored their interaction via in vitro batch fecal fermentation. WGP elevated dramatically the relative abundances of Bacteroides (especially Ba. xylanisolvens, Ba. uniformis, and Ba. intestinalis), Bifidobacterium (especially Bi. pseudocatenulatum) and Eubacterium, and decreased Alistipes, Klebsiella, Bilophila and Sutterella. Moreover, the metabolomics and Spearman correlation results showed that these alterations in gut microbiota gave rise to over 13-fold augmentation in the quantities of short-chain fatty acids (SCFAs) and indole-3-lactic acid, as well as 7.17- and 4.23-fold increase in acetylcholine and GABA, respectively, at 24 h of fermentation. Interestingly, PICRUSt analysis showed that WGP markedly reduced aging pathway, and enriched nervous system pathway. Therefore, the D-gal-induced aging mice model was used to further verify these effects. The results demonstrated that WGP had a protective effect on D-gal-induced behavioral deficits, particularly in locomotor activity, and spatial and recognition memory. WGP elevated dramatically the relative abundances of Bacteroides (especially Ba. sartorii and Ba. uniformis), Bifidobacterium (especially Bi. pseudocatenulatum) and Parabacteroides, and decreased Alistipes and Candidatus Arthromitus. These findings highlight the potential utility of WGP as a dietary supplement for retarding the aging process and mitigating age-associated learning and memory decline via the targeted enrichment of Bacteroides and Bifidobacterium and the related metabolites.

摘要

小麦胚芽多糖(WGP)与肠道微生物群之间的相互作用仍相对较少被研究。因此,本研究通过体外批量粪便发酵来探索它们之间的相互作用。WGP 显著提高了拟杆菌(尤其是鲍氏梭菌、鲍氏真杆菌和肠道拟杆菌)、双歧杆菌(尤其是假双歧杆菌)和真杆菌的相对丰度,并降低了拟普雷沃氏菌、克雷伯氏菌、卟啉单胞菌和萨特氏菌的相对丰度。此外,代谢组学和 Spearman 相关性结果表明,这些肠道微生物群的变化导致短链脂肪酸(SCFAs)和吲哚-3-乳酸的含量增加了 13 倍以上,乙酰胆碱和 GABA 分别增加了 7.17 倍和 4.23 倍,在发酵 24 小时时。有趣的是,PICRUSt 分析表明,WGP 显著降低了衰老途径,并丰富了神经系统途径。因此,使用 D-半乳糖诱导的衰老小鼠模型进一步验证了这些作用。结果表明,WGP 对 D-半乳糖诱导的行为缺陷具有保护作用,特别是在运动活性、空间和识别记忆方面。WGP 显著提高了拟杆菌(尤其是鲍氏梭菌和鲍氏真杆菌)、双歧杆菌(尤其是假双歧杆菌)和副拟杆菌的相对丰度,并降低了拟普雷沃氏菌和 Candidatus Arthromitus 的相对丰度。这些发现强调了 WGP 作为膳食补充剂的潜力,通过靶向富集拟杆菌和双歧杆菌及其相关代谢物,可减缓衰老过程并减轻与年龄相关的学习和记忆下降。

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