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红茶通过调节肠道微生物群和宿主组织中的基因表达来减少小鼠的饮食诱导肥胖。

Black Tea Reduces Diet-Induced Obesity in Mice via Modulation of Gut Microbiota and Gene Expression in Host Tissues.

机构信息

School of Traditional Chinese Pharmacy, Shenyang Pharmaceutical University, Wenhua Road 103, Shenyang 110016, China.

出版信息

Nutrients. 2022 Apr 14;14(8):1635. doi: 10.3390/nu14081635.

Abstract

Black tea was reported to alter the microbiome populations and metabolites in diet-induced obese mice and displays properties that prevent obesity, but the underlying mechanism of the preventative effect of black tea on high-fat diet (HFD) induced obesity has not been elucidated. Epigenetic studies are a useful tool for determining the relationship between obesity and environment. Here, we show that the water extract of black tea (Lapsang souchong, LS) reverses HFD-induced gut dysbiosis, alters the tissue gene expression, changes the level of a major epigenetic modification (DNA methylation), and prevents obesity in HFD feeding mice. The anti-obesity properties of black tea are due to alkaloids, which are the principal active components. Our data indicate that the anti-obesity benefits of black tea are transmitted via fecal transplantation, and the change of tissue gene expression and the preventative effects on HFD-induced obesity in mice of black tea are dependent on the gut microbiota. We further show that black tea could regulate the DNA methylation of imprinted genes in the spermatozoa of high-fat diet mice. Our results show a mechanistic link between black tea, changes in the gut microbiota, epigenetic processes, and tissue gene expression in the modulation of diet-induced metabolic dysfunction.

摘要

红茶被报道能改变饮食诱导肥胖小鼠的微生物群和代谢物,并具有预防肥胖的特性,但红茶对高脂肪饮食(HFD)诱导肥胖的预防作用的潜在机制尚未阐明。表观遗传学研究是确定肥胖与环境之间关系的有用工具。在这里,我们表明红茶(正山小种,LS)的水提取物能逆转 HFD 诱导的肠道菌群失调,改变组织基因表达,改变主要表观遗传修饰(DNA 甲基化)的水平,并能预防 HFD 喂养小鼠的肥胖。红茶的抗肥胖特性归因于生物碱,它是主要的活性成分。我们的数据表明,红茶的抗肥胖益处是通过粪便移植传递的,而红茶对组织基因表达的改变和对 HFD 诱导肥胖的预防作用依赖于肠道微生物群。我们进一步表明,红茶可以调节高脂肪饮食小鼠精子中的印记基因的 DNA 甲基化。我们的结果显示了红茶、肠道微生物群变化、表观遗传过程和组织基因表达在调节饮食诱导的代谢功能障碍中的机制联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8906/9027533/d7b45c4d56ce/nutrients-14-01635-g001.jpg

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