法尼甾体X受体
胆固醇7α羟化酶
阿托伐他汀
胆汁酸
内科学
CYP8B1
脱氧胆酸
内分泌学
脂肪性肝炎
G蛋白偶联胆汁酸受体
胆酸
硼胆酸
鹅去氧胆酸
脂肪肝
胆固醇
化学
脂肪变性
脂质代谢
生物
医学
核受体
生物化学
受体
兴奋剂
疾病
转录因子
基因
作者
Silvia Marchianò,Michele Biagioli,Rosalinda Roselli,Angela Zampella,Cristina Di Giorgio,Martina Bordoni,Rachele Bellini,Elva Morretta,Maria Chiara Monti,Eleonora Distrutti,Stefano Fiorucci
标识
DOI:10.1096/fj.202101397r
摘要
Farnesoid-x-receptor (FXR) agonists, currently trialed in patients with non-alcoholic steatosis (NAFLD), worsen the pro-atherogenic lipid profile and might require a comedication with statin. Here we report that mice feed a high fat/high cholesterol diet (HFD) are protected from developing a pro-atherogenic lipid profile because their ability to dispose cholesterol through bile acids. This protective mechanism is mediated by suppression of FXR signaling in the liver by muricholic acids (MCAs) generated in mice from chenodeoxycholic acid (CDCA). In contrast to CDCA, MCAs are FXR antagonists and promote a CYP7A1-dependent increase of bile acids synthesis. In mice feed a HFD, the treatment with obeticholic acid, a clinical stage FXR agonist, failed to improve the liver histopathology while reduced Cyp7a1 and Cyp8b1 genes expression and bile acids synthesis and excretion. In contrast, treating mice with atorvastatin mitigated liver and vascular injury caused by the HFD while increased the bile acids synthesis and excretion. Atorvastatin increased the percentage of 7α-dehydroxylase expressing bacteria in the intestine promoting the formation of deoxycholic acid and litocholic acid, two GPBAR1 agonists, along with the expression of GPBAR1-regulated genes in the white adipose tissue and colon. In conclusion, present results highlight the central role of bile acids in regulating lipid and cholesterol metabolism in response to atorvastatin and provide explanations for limited efficacy of FXR agonists in the treatment of NAFLD.
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