线粒体DNA
线粒体
自噬
线粒体呼吸链
癌症
癌症研究
生物
瓦博格效应
肝癌
氧化磷酸化
活性氧
细胞凋亡
生物信息学
靶向治疗
药品
精密医学
药物开发
医学
呼吸链
癌细胞
线粒体ROS
药理学
药物代谢
机制(生物学)
转移
肝肿瘤
氧化应激
肿瘤进展
个性化医疗
肝损伤
抗药性
靶向给药
作者
Maomao Li,Siyao Liang,Le Chang,Binfeng Lu,Jiahua Cheng,Tian Yang,Ying Wu,Yuhong Lyu,Xiaochan He,Changwu Yue
标识
DOI:10.20892/j.issn.2095-3941.2025.0180
摘要
The occurrence and progression of liver cancer are closely associated with mitochondrial dysfunction. Mitochondria exhibit characteristics, such as decreased oxidative phosphorylation efficiency, abnormal accumulation of reactive oxygen species in liver cancer and promoting tumor proliferation and drug resistance through the Warburg effect, as the core of energy metabolism and apoptosis regulation. Mutations in mitochondrial DNA (mtDNA) and dysregulation of mitochondrial autophagy (mitophagy) further enhance the invasive and metastatic capabilities of liver cancer. Current targeted therapeutic strategies focus on modulating the activity of respiratory chain complexes, regulating calcium homeostasis, repairing mtDNA, and activating mitochondrial apoptotic pathways. Although these approaches have shown therapeutic effects, challenges persist, such as tumor heterogeneity, insufficient drug specificity, and drug resistance. Future research needs to integrate the concept of precision medicine by focusing on breakthroughs in the molecular mechanisms underlying mitochondrial dysfunction, development of targeted delivery systems, optimization of combination therapy regimens, and screening of biomarkers to provide new pathways for individualized treatment. With advances in technology, targeting mitochondrial dysfunction is expected to become an important breakthrough for improving the prognosis of liver cancer.
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