Institute of Biomedicine (IBIOMED), University of León, 24071, León, Spain.
Department of Gastroenterology. Complejo Asistencial Universitario de León, 24008, León, Spain.
Mol Nutr Food Res. 2019 Apr;63(8):e1800930. doi: 10.1002/mnfr.201800930. Epub 2019 Feb 4.
Modulation of intestinal microbiota has emerged as a new therapeutic approach for non-alcoholic fatty liver disease (NAFLD). Herein, it is addressed whether gut microbiota modulation by quercetin and intestinal microbiota transplantation can influence NAFLD development.
Gut microbiota donor mice are selected according to their response to high-fat diet (HFD) and quercetin in terms of obesity and NAFLD-related biomarkers. Germ-free recipients displayed metabolic phenotypic differences derived from interactions between microbiota transplanted, diets, and quercetin. Based on the evaluation of hallmark characteristics of NAFLD, it is found that gut microbiota transplantation from the HFD-non-responder donor and the HFD-fed donor with the highest response to quercetin results in a protective phenotype against HFD-induced NAFLD, in a mechanism that involves gut-liver axis alteration blockage in these receivers. Gut microbiota from the HFD-responder donor predisposed transplanted germ-free mice to NAFLD. Divergent protective and deleterious metabolic phenotypes exhibited are related to definite microbial profiles in recipients, highlighting the predominant role of Akkermansia genus in the protection from obesity-associated NAFLD development.
The results provide scientific support for the prebiotic capacity of quercetin and the transfer of established metabolic profiles through gut microbiota transplantation as a protective strategy against the development of obesity-related NAFLD.
肠道微生物群的调节已成为非酒精性脂肪性肝病 (NAFLD) 的一种新的治疗方法。本文旨在探讨槲皮素对肠道微生物群的调节作用和肠道微生物群移植是否会影响 NAFLD 的发生。
根据肥胖和与 NAFLD 相关生物标志物对高脂肪饮食 (HFD) 和槲皮素的反应,选择肠道微生物群供体小鼠。无菌受体表现出代谢表型差异,这些差异源于移植的微生物群、饮食和槲皮素之间的相互作用。基于对 NAFLD 特征标志的评估,发现来自 HFD 无应答供体和对槲皮素反应最强的 HFD 喂养供体的肠道微生物群移植可防止 HFD 诱导的 NAFLD,其机制涉及阻断这些受体中的肠道-肝脏轴改变。来自 HFD 应答供体的肠道微生物群使移植的无菌小鼠易患 NAFLD。在受体中表现出不同的保护和有害代谢表型与特定的微生物群有关,这突出了阿克曼氏菌属在预防肥胖相关的 NAFLD 发展中的主要作用。
这些结果为槲皮素的益生元能力以及通过肠道微生物群移植转移已建立的代谢特征提供了科学依据,这是一种预防肥胖相关 NAFLD 发展的保护策略。