非酒精性脂肪肝
谷胱甘肽
微生物群
甘氨酸
三肽
β氧化
脂肪生成
化学
肠道微生物群
肠道菌群
亮氨酸
生物化学
脂肪酸
脂肪肝
药理学
医学
生物
内科学
生物信息学
新陈代谢
氨基酸
疾病
酶
作者
Oren Rom,Yuhao Liu,Zhipeng Liu,Ying Zhao,Jianfeng Wu,Alia Ghrayeb,Luis Villacorta,Yanbo Fan,Lin Chang,Lu Wang,Cai Liu,Dongshan Yang,Jun Song,Jason C. Rech,Yanhong Guo,Huilun Wang,Guizhen Zhao,Wenying Liang,Yui Koike,Haocheng Lu
标识
DOI:10.1126/scitranslmed.aaz2841
摘要
sensu stricto was markedly increased in mice with NASH and decreased after DT-109 treatment. DT-109 induced hepatic FAO pathways, lowered lipotoxicity, and stimulated de novo glutathione synthesis. In turn, inflammatory infiltration and hepatic fibrosis were attenuated via suppression of NF-κB target genes and TGFβ/SMAD signaling. Unlike its effects on the gut microbiome, DT-109 stimulated FAO and glutathione synthesis independent of NASH. In conclusion, impaired glycine metabolism may play a causative role in NAFLD. Glycine-based treatment attenuates experimental NAFLD by stimulating hepatic FAO and glutathione synthesis, thus warranting clinical evaluation.
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