十二烷基肉碱通过增强脂肪酸β-氧化改善乙型肝炎病毒感染的肝脏线粒体功能障碍

Ye Sun, Qingling Chen, Yuxiao Liu, Mengfan Jiao, Zixing Dai, Xiaoxue Hou, Rui Liu, Yuwen Li, Chuanlong Zhu
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摘要

背景:慢性乙型肝炎患者代谢相关脂肪变性肝病的发病率逐年上升;然而,乙型肝炎病毒(HBV)感染与脂质代谢之间的相互作用尚不清楚。本研究试图阐明脂肪酸代谢调节是否可以减轻HBV感染引起的线粒体功能障碍。方法对人肝脏公共基因集进行分析,并对小鼠肝脏进行蛋白质组学分析,探讨HBV感染相关的代谢紊乱和受影响的细胞器。在体内和体外研究了十二烷基肉碱对脂肪酸β氧化和线粒体的影响。蛋白组学分析和Western blot证实了所涉及的途径。结果HBV感染可引起体内外脂肪酸β氧化紊乱和线粒体功能障碍。CPT1A过表达可改善肝细胞线粒体功能。此外,补充十二烷基肉碱可以激活CPT1A表达,从而改善脂肪酸代谢,修复线粒体功能障碍。小鼠肝脏的蛋白质组学分析表明,十二烷基肉碱刺激过氧化物酶体增殖物激活受体(PPAR)信号通路,其中PPARα最为重要。结论外源性补充十二烷基肉碱可部分恢复HBV感染引起的肝细胞脂肪酸代谢受损和线粒体功能障碍。它阐明了十二烷基肉碱对HBV感染的治疗潜力,并为线粒体功能障碍相关疾病的治疗提供了新的途径。
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Decanoylcarnitine improves liver mitochondrial dysfunction in hepatitis B virus infection by enhancing fatty acid β-oxidation
Background The incidence of metabolic-associated steatotic liver disease in patients with chronic hepatitis B is increasing annually; however, the interaction between hepatitis B virus (HBV) infection and lipid metabolism remains unclear. This study attempted to clarify whether fatty acid metabolism regulation could alleviate mitochondrial dysfunction caused by HBV infection. Methods Public gene set of human livers was analyzed, and a proteomic analysis on mouse livers was conducted to explore metabolic disorders and affected organelles associated with HBV infection. The effect of decanoylcarnitine on fatty acid β-oxidation and mitochondria was investigated in vivo and in vitro. The pathways involved were shown by proteomic analysis and confirmed by Western blot. Results HBV infection could cause fatty acid β-oxidation disorder and mitochondrial dysfunction in vivo and in vitro. CPT1A overexpression could improve mitochondrial function in hepatocytes. Furthermore, decanoylcarnitine supplementation could activate CPT1A expression, thus improving fatty acid metabolism and repairing mitochondrial dysfunction. Proteomic analysis of mouse livers suggests that decanoylcarnitine stimulates the peroxisome proliferator-activated receptor (PPAR) signaling pathway, and the PPARα was the most important among PPARs. Conclusions Impaired fatty acid metabolism and mitochondrial dysfunction in hepatocytes caused by HBV infection could be partially restored by exogenous supplementation of decanoylcarnitine. It elucidated the therapeutic potential of decanoylcarnitine in HBV infection and provided a new approach for diseases related to mitochondrial dysfunction.
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