肝保护
肠道菌群
肝损伤
炎症
化学
细胞外
脂肪肝
四氯化碳
肝移植
生物化学
平衡
脂肪酸
小泡
粪便细菌疗法
受体
生物
胃肠道
细胞内
失调
细胞生物学
短链脂肪酸
移植
肝细胞学
胞外囊泡
肠粘膜
作者
DanNa Wang,Shengquan Dai,D Li,Pei Du,Yuqi Zhao,Yuzhang Chen,Yuting Ye,Mengnan Zhou,Wanting Ren,Xuebo Liu,Beita Zhao
标识
DOI:10.1021/acs.jafc.5c12208
摘要
Chronic liver injury represents a core pathological substrate in a spectrum of hepatic disorders, wherein gut–liver axis homeostasis critically drives progression. Although bovine milk extracellular vesicles (mEVs) positively regulate intestinal homeostasis, the mechanisms underlying their gut microbiota-linked hepatoprotection remain unclear. Herein, we demonstrated that mEVs (0.6 mg/kg/d) effectively alleviated carbon tetrachloride (CCl 4, 1 mg/kg)-induced liver injury, as evidenced by reduced hepatic inflammation and fibrosis. Concurrently, mEVs also markedly attenuated colonic barrier disruption and inflammation concomitant with liver injury. Gut microbiota analysis revealed that mEVs notably enriched the relative abundances of Faecalibaculum and Lactobacillus, which correlated positively with mEV-enhanced colonic short-chain fatty acid (SCFA)/free fatty acid receptor (FFAR) signaling. Furthermore, a causal link between the mEV-reshaped gut microbiota and the resulting hepatoprotection was further established via fecal microbiota transplantation (FMT). In summary, these findings revealed that mEVs attenuated liver injury in a gut microbiota-dependent manner, offering valuable insights into microbiota-targeted and mEV-based therapeutic strategies for hepatic disorders.
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