Kang Hyunkoo, Kim Byeongsoo, Park Junhyeong, Youn HyeSook, Youn BuHyun
Department of Integrated Biological Science, Pusan National University, Busan 46241, Republic of Korea.
Department of Integrative Bioscience and Biotechnology, Sejong University, Seoul 05006, Republic of Korea.
Biochim Biophys Acta Rev Cancer. 2023 Nov;1878(6):188988. doi: 10.1016/j.bbcan.2023.188988. Epub 2023 Sep 17.
The Warburg effect is a phenomenon in which cancer cells rely primarily on glycolysis rather than oxidative phosphorylation, even in the presence of oxygen. Although evidence of its involvement in cell proliferation has been discovered, the advantages of the Warburg effect in cancer cell survival under treatment have not been fully elucidated. In recent years, the metabolic characteristics of radioresistant cancer cells have been evaluated, enabling an extension of the original concept of the Warburg effect. In this review, we focused on the role of the Warburg effect in redox homeostasis and DNA damage repair, two critical factors contributing to radioresistance. In addition, we highlighted the metabolic involvement in the radioresistance of cancer stem cells, which is the root cause of tumor recurrence. Finally, we summarized radiosensitizing drugs that target the Warburg effect. Insights into the molecular mechanisms underlying the Warburg effect and radioresistance can provide valuable information for developing strategies to enhance the efficacy of radiotherapy and provide future directions for successful cancer therapy.
瓦伯格效应是一种即使在有氧存在的情况下,癌细胞主要依赖糖酵解而非氧化磷酸化的现象。尽管已经发现了其参与细胞增殖的证据,但瓦伯格效应在癌细胞治疗后存活中的优势尚未完全阐明。近年来,已对放射抗性癌细胞的代谢特征进行了评估,从而扩展了瓦伯格效应的原始概念。在本综述中,我们重点关注瓦伯格效应在氧化还原稳态和DNA损伤修复中的作用,这两个是导致放射抗性的关键因素。此外,我们强调了代谢在癌症干细胞放射抗性中的作用,而癌症干细胞是肿瘤复发的根本原因。最后,我们总结了靶向瓦伯格效应的放射增敏药物。对瓦伯格效应和放射抗性潜在分子机制的深入了解可为制定提高放疗疗效的策略提供有价值的信息,并为成功的癌症治疗提供未来方向。