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首页> 外文期刊>ACS Omega >Epigallocatechin Gallate Protects Mice against Methionine–Choline-Deficient-Diet-Induced Nonalcoholic Steatohepatitis by Improving Gut Microbiota To Attenuate Hepatic Injury and Regulate Metabolism
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Epigallocatechin Gallate Protects Mice against Methionine–Choline-Deficient-Diet-Induced Nonalcoholic Steatohepatitis by Improving Gut Microbiota To Attenuate Hepatic Injury and Regulate Metabolism

机译:EpigallocaTechin Graphate通过改善肠道微生物,通过改善肠道损伤并调节代谢来保护小鼠免受蛋氨酸 - 胆碱缺乏饮食诱发的非酒精性脱皮肝炎

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Epigallocatechin gallate (EGCG) has been regarded as a protective bioactive polyphenol in green tea against nonalcoholic steatohepatitis (NASH), but the mechanism remains poorly deciphered. Herein, we assessed the role and mechanism of EGCG on gut microbiota and the metabolism in NASH development. Forty-eight male C57BL/6J mice were fed with either a methionine–choline-sufficient diet or a methionine–choline-deficient (MCD) diet with or without EGCG administration for 4 weeks. Liver injury, inflammation, lipid accumulation, and iron overload were examined. 16S ribosomal RNA sequencing was used to detect the fecal microbiome. In our research, we observed that EGCG notably improved MCD-diet-derived gut microbiota dysbiosis, as proved by a distinctively clustered separation from that of the MCD group and by the decrease of the Oxalobacter , Oscillibacter , Coprococcus_1, and Desulfovibrio genera and enrichment of norank_f__Bacteroidales_S24_7_group , Alloprevotella , and Bacteroides . Spearman-correlation heatmap analysis indicated that Bacteroides and Alloprevotella induced by EGCG were strongly negatively correlated with lipid accumulation. Functional enzymes of the gut microbiome were predicted by PICRUSt based on the operation classification unit. The results revealed that 1468 enzymes were involved in various metabolic pathways, and 371 enzymes showed distinct changes between untreated and EGCG-treated mice. Long-chain-fatty-acid-CoA ligase ACSBG played a distinct role in fatty acid metabolism and ferroptosis and was significantly negatively correlated with Bacteroides . Altogether, the salutary effect of EGCG on NASH might be via shifting gut flora and certain enzymes from genera. Our study thus takes a step toward NASH prevention and therapy.
机译:EpigallocaTechin gallate(EGCG)被认为是绿茶中的保护性生物活性多酚(NASH),但该机制仍然不良破译。在此,我们评估了EGCG对肠道微生物的作用和机制以及纳什开发中的代谢。将四十八只雄性C57BL / 6J小鼠用甲硫氨酸 - 胆碱 - 足够的饮食或甲硫氨酸 - 胆碱缺陷(MCD)饮食,或没有EGCG给药4周。检查肝损伤,炎症,脂质积累和铁过载。 16S核糖体RNA测序用于检测粪便微生物组。在我们的研究中,我们观察到EGCG显着改善了MCD-饮食衍生的肠道微生物症脱敏,所以通过从MCD组的明显分离和oisoxAlacter的降低而证明,散发杆菌, coprococcus_1,以及脱硫血管属,富集 norank_f_m_bacteroidales_s24_7_7_7_group, alloprevootella,和诱导。 Spearman-Colrelation Heatmap分析表明,EGCG诱导的菌株和与脂质积累强烈呈负相关。通过基于操作分类单元,通过Picrust预测肠道微生物组的功能酶。结果显示,参与各种代谢途径的1468个酶,371个酶在未处理和EGCG处理的小鼠之间显示出明显的变化。长链脂肪酸 - CoA连接酶ACSBG在脂肪酸代谢和脱叶裂中起着不同的作用,并且与拟杆菌显着呈负相关。总共,EGCG对腹部的良好作用可能是通过移位肠道菌群和来自属的某些酶。因此,我们的研究迈出了纳什预防和治疗的一步。

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