Bermúdez-Guzmán Luis, Blanco-Saborío Alejandro, Ramírez-Zamora Juliana, Lovo Eduardo
Robotic Radiosurgery Center, International Cancer Center, San José, Costa Rica.
International Cancer Center, Diagnostic Hospital, San Salvador, El Salvador.
Front Oncol. 2021 May 11;11:687672. doi: 10.3389/fonc.2021.687672. eCollection 2021.
Five decades ago, Franz Halberg conceived the idea of a circadian-based therapy for cancer, given the differential tolerance to treatment derived from the intrinsic host rhythms. Nowadays, different experimental models have demonstrated that both the toxicity and efficacy of several anticancer drugs vary by more than 50% as a function of dosing time. Accordingly, it has been shown that chemotherapeutic regimens optimally timed with the circadian cycle have jointly improved patient outcomes both at the preclinical and clinical levels. Along with chemotherapy, radiation therapy is widely used for cancer treatment, but its effectiveness relies mainly on its ability to damage DNA. Notably, the DNA damage response including DNA repair, DNA damage checkpoints, and apoptosis is gated by the circadian clock. Thus, the therapeutic potential of circadian-based radiotherapy against cancer is mainly dependent upon the control that the molecular clock exerts on DNA repair enzymes across the cell cycle. Unfortunately, the time of treatment administration is not usually considered in clinical practice as it varies along the daytime working hours. Currently, only a few studies have evaluated whether the timing of radiotherapy affects the treatment outcome. Several of these studies show that it is possible to reduce the toxicity of the treatment if it is applied at a specific time range, although with some inconsistencies. In this Perspective, we review the main advances in the field of chronoradiotherapy, the possible causes of the inconsistencies observed in the studies so far and provide some recommendations for future trials.
五十年前,弗朗茨·哈尔伯格基于内在宿主节律产生的治疗耐受性差异,提出了一种基于昼夜节律的癌症治疗理念。如今,不同的实验模型表明,几种抗癌药物的毒性和疗效会因给药时间的不同而相差超过50%。因此,研究表明,与昼夜节律周期最佳同步的化疗方案在临床前和临床水平上都共同改善了患者的治疗效果。除了化疗,放射治疗也广泛用于癌症治疗,但其有效性主要依赖于其损伤DNA的能力。值得注意的是,包括DNA修复、DNA损伤检查点和细胞凋亡在内的DNA损伤反应受昼夜节律时钟的调控。因此,基于昼夜节律的放射治疗对癌症的治疗潜力主要取决于分子时钟在整个细胞周期对DNA修复酶的控制。不幸的是,临床实践中通常不考虑治疗给药时间,因为它会随着白天的工作时间而变化。目前,只有少数研究评估了放射治疗的时间是否会影响治疗结果。其中一些研究表明,如果在特定的时间范围内进行放射治疗,有可能降低治疗的毒性,尽管存在一些不一致之处。在这篇观点文章中,我们回顾了时辰放疗领域的主要进展、迄今为止在研究中观察到的不一致现象的可能原因,并为未来的试验提供了一些建议。