Translational Radiation Biology and Oncology Laboratory, Centre for Cancer Research, Westmead Institute for Medical Research, Westmead, New South Wales, 2145, Australia.
Sydney Medical School, University of Sydney, Camperdown, New South Wales, Australia.
J Exp Clin Cancer Res. 2020 Jul 7;39(1):129. doi: 10.1186/s13046-020-01639-2.
Radiotherapy is the cornerstone of treatment of high-grade gliomas (HGGs). It eradicates tumor cells by inducing oxidative stress and subsequent DNA damage. Unfortunately, almost all HGGs recur locally within several months secondary to radioresistance with intricate molecular mechanisms. Therefore, unravelling specific underlying mechanisms of radioresistance is critical to elucidating novel strategies to improve the radiosensitivity of tumor cells, and enhance the efficacy of radiotherapy. This review addresses our current understanding of how hypoxia and the hypoxia-inducible factor 1 (HIF-1) signaling pathway have a profound impact on the response of HGGs to radiotherapy. In addition, intriguing links between hypoxic signaling, circadian rhythms and cell metabolism have been recently discovered, which may provide insights into our fundamental understanding of radioresistance. Cellular pathways involved in the hypoxic response, DNA repair and metabolism can fluctuate over 24-h periods due to circadian regulation. These oscillatory patterns may have consequences for tumor radioresistance. Timing radiotherapy for specific times of the day (chronoradiotherapy) could be beneficial in patients with HGGs and will be discussed.
放射治疗是高级别神经胶质瘤(HGGs)治疗的基石。它通过诱导氧化应激和随后的 DNA 损伤来根除肿瘤细胞。不幸的是,由于复杂的分子机制,几乎所有的 HGGs 在几个月内都会局部复发,这是由于放射抵抗。因此,揭示放射抵抗的特定潜在机制对于阐明提高肿瘤细胞放射敏感性和增强放射治疗效果的新策略至关重要。这篇综述探讨了我们目前对缺氧和缺氧诱导因子 1(HIF-1)信号通路如何对 HGGs 对放射治疗的反应产生深远影响的理解。此外,最近发现了缺氧信号、昼夜节律和细胞代谢之间的有趣联系,这可能为我们对放射抵抗的基本理解提供了新的见解。由于昼夜节律的调节,参与缺氧反应、DNA 修复和代谢的细胞途径可能会在 24 小时内波动。这些波动模式可能对肿瘤放射抵抗有影响。在一天的特定时间进行放射治疗(时间放射治疗)可能对 HGG 患者有益,我们将对此进行讨论。