Bian Chenbin, Zheng Zhuangzhuang, Su Jing, Wang Huanhuan, Chang Sitong, Xin Ying, Jiang Xin
Jilin Provincial Key Laboratory of Radiation Oncology & Therapy, The First Hospital of Jilin University, Changchun 130021, China.
Department of Radiation Oncology, The First Hospital of Jilin University, Changchun 130021, China.
Antioxidants (Basel). 2022 Nov 7;11(11):2202. doi: 10.3390/antiox11112202.
Radiotherapy failure and poor tumor prognosis are primarily attributed to radioresistance. Improving the curative effect of radiotherapy and delaying cancer progression have become difficult problems for clinicians. Glucose metabolism has long been regarded as the main metabolic process by which tumor cells meet their bioenergetic and anabolic needs, with the complex interactions between the mitochondria and tumors being ignored. This misconception was not dispelled until the early 2000s; however, the cellular molecules and signaling pathways involved in radioresistance remain incompletely defined. In addition to being a key metabolic site that regulates tumorigenesis, mitochondria can influence the radiation effects of malignancies by controlling redox reactions, participating in oxidative phosphorylation, producing oncometabolites, and triggering apoptosis. Therefore, the mitochondria are promising targets for the development of novel anticancer drugs. In this review, we summarize the internal relationship and related mechanisms between mitochondrial metabolism and cancer radioresistance, thus exploring the possibility of targeting mitochondrial signaling pathways to reverse radiation insensitivity. We suggest that attention should be paid to the potential value of mitochondria in prolonging the survival of cancer patients.
放射治疗失败和肿瘤预后不良主要归因于放射抗性。提高放射治疗的疗效和延缓癌症进展已成为临床医生面临的难题。长期以来,葡萄糖代谢一直被视为肿瘤细胞满足其生物能量和合成代谢需求的主要代谢过程,而线粒体与肿瘤之间的复杂相互作用却被忽视了。这种误解直到21世纪初才被消除;然而,参与放射抗性的细胞分子和信号通路仍未完全明确。线粒体除了是调节肿瘤发生的关键代谢位点外,还可以通过控制氧化还原反应、参与氧化磷酸化、产生致癌代谢物和触发细胞凋亡来影响恶性肿瘤的放射效应。因此,线粒体是开发新型抗癌药物的有前景的靶点。在这篇综述中,我们总结了线粒体代谢与癌症放射抗性之间的内在关系和相关机制,从而探索靶向线粒体信号通路以逆转放射不敏感性的可能性。我们建议应关注线粒体在延长癌症患者生存期方面的潜在价值。