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壳聚糖稳定的硒纳米颗粒通过调节肠道屏障功能和微生物群来减轻高脂饮食诱导的非酒精性脂肪性肝病(NAFLD)

Chitosan-Stabilized Selenium Nanoparticles Alleviate High-Fat Diet-Induced Non-Alcoholic Fatty Liver Disease (NAFLD) by Modulating the Gut Barrier Function and Microbiota.

作者信息

Luo Yuhang, Peng Shujiang, Cheng Jintao, Yang Hongli, Lin Lin, Yang Guiling, Jin Yuanxiang, Wang Qingchi, Wen Zhengshun

机构信息

School of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, China.

Xianghu Laboratory, Hangzhou 311231, China.

出版信息

J Funct Biomater. 2024 Aug 22;15(8):236. doi: 10.3390/jfb15080236.

Abstract

Low molecular weight chitosan selenium nanoparticles (LCS-SeNPs), a biologically active compound derived from selenium polysaccharides, have demonstrated potential in addressing obesity. However, the mechanism through which LCS-SeNPs alleviate high-fat diet (HFD)-induced non-alcoholic fatty liver disease (NAFLD) remains unclear. Our results elucidated that LCS-SeNPs significantly inhibited fat accumulation and markedly improved the intestinal barrier by increasing mucus secretion from goblet cells. Moreover, LCS-SeNPs reshaped intestinal flora composition by increasing the abundance of mucus-associated microbiota (, , and ) and decreasing the abundance of obesity-contributed bacterium (, , and ). The modulation of intestinal microbiota by LCS-SeNPs influenced several metabolic pathways, including bile acid secretion, purine metabolites, and tryptophan derivation. Meanwhile, glycocholic acid and tauro-beta-muricholic acid were significantly reduced in the LCS-SeNP group. Our study suggests the crucial role of intestinal microbiota composition and metabolism, providing a new theoretical foundation for utilizing selenium polysaccharides in the intervention of HFD-induced NAFLD.

摘要

低分子量壳聚糖硒纳米颗粒(LCS-SeNPs)是一种源自硒多糖的生物活性化合物,已显示出在解决肥胖问题方面的潜力。然而,LCS-SeNPs减轻高脂饮食(HFD)诱导的非酒精性脂肪性肝病(NAFLD)的机制仍不清楚。我们的结果表明,LCS-SeNPs通过增加杯状细胞的黏液分泌,显著抑制脂肪积累并明显改善肠道屏障。此外,LCS-SeNPs通过增加与黏液相关的微生物群(、和)的丰度并降低肥胖相关细菌(、和)的丰度来重塑肠道菌群组成。LCS-SeNPs对肠道微生物群的调节影响了几种代谢途径,包括胆汁酸分泌、嘌呤代谢产物和色氨酸衍生。同时,LCS-SeNP组中的甘氨胆酸和牛磺-β-鼠胆酸显著减少。我们的研究表明肠道微生物群组成和代谢的关键作用,为利用硒多糖干预HFD诱导的NAFLD提供了新的理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f50/11355332/17ff75bbfed0/jfb-15-00236-g001.jpg

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