Integrative multi-omics unravels the amelioration effects of Zanthoxylum bungeanum Maxim. on non-alcoholic fatty liver disease

肠道菌群 失调 转录组 脂肪肝 代谢组学 脂质代谢 代谢组 疾病 脂肪酸代谢 生物 脂肪酸 生物化学 医学 内科学 生物信息学 基因 基因表达
作者
Xu‐Feng Huang,Zhihua Yuan,Xiaojing Liu,Zhijia Wang,Jihui Lu,Linying Wu,Xiaoyu Lin,Yaozhi Zhang,Wenmin Pi,Desheng Cai,Fuhao Chu,Penglong Wang,Haimin Lei
出处
期刊:Phytomedicine [Elsevier BV]
卷期号:109: 154576-154576 被引量:16
标识
DOI:10.1016/j.phymed.2022.154576
摘要

The effect of Zanthoxylum bungeanum Maxim. (ZBM) on anti-obesity, lipid-lowering and liver protection has been identified, but the effect on the development of NAFLD induced by high-fat diet remains unclear.To evaluate the alleviation effect of ZBM on NAFLD in vivo and explore the mechanisms by analyzing the liver transcriptome, microbiota and fecal metabolites.NAFLD model was induced in C57BL/6J mice by feeding with high-fat diet (HFD). The potential mechanism of ZBM in improving NAFLD was studied by liver transcriptome analysis, real-time PCR, immunofluorescence, 16s rRNA sequencing and non-targeted metabonomics.ZBM has alleviation effects on HFD-induced NAFLD. The liver transcriptome, real-time PCR and immunofluorescence analysis showed that ZBM could efficiently regulate fatty acid and cholesterol metabolism. The 16S rRNA sequencing and LC-MS based metabonomic demonstrated that ZBM could rebalance gut microbiota dysbiosis and regulate metabolic profiles in HFD-induced NAFLD mice. Spearman correlation analysis revealed a strong correlation between gut microbiota and biochemical, pathological indexes and differential metabolic biomarkers.ZBM ameliorates HFD-induced NAFLD by regulating fatty acid and cholesterol metabolism, gut microbiota and metabolic profile.
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