Mi Lanjuan, Zhang Hongquan
School of Life and Health Sciences, Huzhou College, Hu Zhou, China.
The First Affiliated Hospital of Huzhou University, Hu Zhou, China.
Open Life Sci. 2024 Nov 26;19(1):20220992. doi: 10.1515/biol-2022-0992. eCollection 2024.
Radiotherapy is a cornerstone in the treatment of various tumors, yet radioresistance often leads to treatment failure and tumor recurrence. Several factors contribute to this resistance, including hypoxia, DNA repair mechanisms, and cancer stem cells. This review explores the diverse elements that drive tumor radiotherapy resistance. Historically, resistance has been attributed to cellular repair and tumor repopulation, but recent research has expanded this understanding. The tumor microenvironment - characterized by hypoxia, immune evasion, and stromal interactions - further complicates treatment. Additionally, molecular mechanisms such as aberrant signaling pathways, epigenetic modifications, and non-B-DNA structures play significant roles in mediating resistance. This review synthesizes current knowledge, highlighting the interplay of these factors and their clinical implications. Understanding these mechanisms is crucial for developing strategies to overcome resistance and improve therapeutic outcomes in cancer patients.
放射治疗是各种肿瘤治疗的基石,但放射抗性常常导致治疗失败和肿瘤复发。有几个因素导致了这种抗性,包括缺氧、DNA修复机制和癌症干细胞。本综述探讨了导致肿瘤放射抗性的各种因素。从历史上看,抗性一直归因于细胞修复和肿瘤再增殖,但最近的研究扩展了这一认识。以缺氧、免疫逃逸和基质相互作用为特征的肿瘤微环境使治疗更加复杂。此外,异常信号通路、表观遗传修饰和非B-DNA结构等分子机制在介导抗性方面发挥着重要作用。本综述综合了当前的知识,强调了这些因素之间的相互作用及其临床意义。了解这些机制对于制定克服抗性的策略和改善癌症患者的治疗结果至关重要。