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来自灵芝的灵芝酸A改善高脂饮食喂养的高脂血症小鼠的脂质代谢并改变肠道微生物群组成。

Ganoderic acid A from Ganoderma lucidum ameliorates lipid metabolism and alters gut microbiota composition in hyperlipidemic mice fed a high-fat diet.

作者信息

Guo Wei-Ling, Guo Jian-Bin, Liu Bin-Yu, Lu Jin-Qiang, Chen Min, Liu Bin, Bai Wei-Dong, Rao Ping-Fan, Ni Li, Lv Xu-Cong

机构信息

Institute of Food Science and Technology, College of Biological Science and Technology, Fuzhou University, Fuzhou, Fujian 350108, P. R. China.

出版信息

Food Funct. 2020 Aug 1;11(8):6818-6833. doi: 10.1039/d0fo00436g. Epub 2020 Jul 20.

Abstract

Ganoderic acid A (GA) is one of the most abundant triterpenoids in Ganoderma lucidum, and has been proved to possess a wide range of beneficial health effects. The aim of the current study is to investigate the amelioration effects and mechanism of GA on improving hyperlipidemia in mice fed a high-fat diet (HFD). The results showed that GA intervention significantly inhibited the abnormal growth of body weight and epididymal white adipose tissue (eWAT), prevented the hypertrophy of epididymal adipocytes, and ameliorated the biochemical parameters of serum and liver related to lipid metabolism in HFD-fed mice. Histological analysis also showed that the excessive accumulation of lipid droplets in the liver induced by HFD-feeding was greatly alleviated by GA intervention. In addition, GA intervention also increased the level of short chain fatty acids (SCFAs) in the intestine and promoted the excretion of bile acids (BAs) through feces. High-throughput sequencing of bacterial full-length 16S rDNA revealed that daily supplementation with GA made significant structural changes in the gut microbial population of mice fed with HFD, in particular modulating the relative abundance of some function related microbial phylotypes. The relationships between lipid metabolic parameters and gut microbial phylotypes were also revealed by correlation analysis based on a heatmap and network. The result showed that 46 key gut microbial phylotypes (OTUs) were markedly correlated with at least one lipid metabolic parameter. Moreover, UPLC-QTOF/MS-based liver metabolomics showed that 111 biomarkers (47 up-regulated metabolites and 64 down-regulated metabolites) were significantly changed after high-dose GA intervention (75 mg kg day), compared with the HFD-fed hyperlipidemic mice. Metabolic pathway enrichment analysis of the differential hepatic metabolites demonstrated that GA intervention had significant regulatory effects on primary bile acid biosynthesis, fatty acid biosynthesis, amino sugar and nucleotide sugar metabolism, inositol phosphate metabolism, and so on. In addition, GA intervention regulated the mRNA levels of hepatic genes involved in fatty acid metabolism and bile acid homeostasis. These findings present new evidence supporting that GA from G. lucidum has the potential to alleviate lipid metabolic disorders and ameliorate the imbalance of gut microflora in a positive way.

摘要

灵芝酸A(GA)是灵芝中含量最为丰富的三萜类化合物之一,已被证明具有广泛的有益健康作用。本研究旨在探讨GA对高脂饮食(HFD)喂养小鼠改善高脂血症的作用及机制。结果表明,GA干预显著抑制了体重和附睾白色脂肪组织(eWAT)的异常生长,防止了附睾脂肪细胞肥大,并改善了HFD喂养小鼠血清和肝脏中与脂质代谢相关的生化参数。组织学分析还表明,GA干预大大减轻了HFD喂养诱导的肝脏中脂滴的过度积累。此外,GA干预还增加了肠道中短链脂肪酸(SCFAs)的水平,并促进了胆汁酸(BAs)通过粪便的排泄。细菌全长16S rDNA的高通量测序显示,每日补充GA使HFD喂养小鼠的肠道微生物群发生了显著的结构变化,特别是调节了一些与功能相关的微生物系统型的相对丰度。基于热图和网络的相关性分析也揭示了脂质代谢参数与肠道微生物系统型之间的关系。结果显示,46个关键的肠道微生物系统型(OTUs)与至少一个脂质代谢参数显著相关。此外,基于超高效液相色谱-四极杆飞行时间质谱(UPLC-QTOF/MS)的肝脏代谢组学表明,与HFD喂养的高脂血症小鼠相比,高剂量GA干预(75 mg/kg/天)后有111个生物标志物(47个上调代谢物和64个下调代谢物)发生了显著变化。差异肝脏代谢物的代谢途径富集分析表明,GA干预对初级胆汁酸生物合成、脂肪酸生物合成、氨基糖和核苷酸糖代谢、肌醇磷酸代谢等有显著的调节作用。此外,GA干预调节了参与脂肪酸代谢和胆汁酸稳态的肝脏基因的mRNA水平。这些发现提供了新的证据,支持灵芝中的GA有可能以积极的方式缓解脂质代谢紊乱并改善肠道微生物群的失衡。

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