Why does circadian timing of administration matter for immune checkpoint inhibitors’ efficacy?

昼夜节律 生物钟 免疫系统 免疫检查点 医学 癌症 耐受性 肿瘤微环境 时辰疗法(睡眠期) 时钟 肿瘤科 生物 内科学 免疫疗法 生物信息学 癌症研究 免疫学 不利影响
作者
Abdoulaye Karaboué,Pasquale F. Innominato,Nicholas I. Wreglesworth,Boris Duchemann,René Adam,Françis Lévi
出处
期刊:British Journal of Cancer [Springer Nature]
卷期号:131 (5): 783-796 被引量:52
标识
DOI:10.1038/s41416-024-02704-9
摘要

Abstract Background Tolerability and antitumour efficacy of chemotherapy and radiation therapy can vary largely according to their time of administration along the 24-h time scale, due to the moderation of their molecular and cellular mechanisms by circadian rhythms. Recent clinical data have highlighted a striking role of dosing time for cancer immunotherapy, thus calling for a critical evaluation. Methods Here, we review the clinical data and we analyse the mechanisms through which circadian rhythms can influence outcomes on ICI therapies. We examine how circadian rhythm disorders can affect tumour immune microenvironment, as a main mechanism linking the circadian clock to the 24-h cycles in ICIs antitumour efficacy. Results Real-life data from 18 retrospective studies have revealed that early time-of-day (ToD) infusion of immune checkpoint inhibitors (ICIs) could enhance progression-free and/or overall survival up to fourfold compared to late ToD dosing. The studies involved a total of 3250 patients with metastatic melanoma, lung, kidney, bladder, oesophageal, stomach or liver cancer from 9 countries. Such large and consistent differences in ToD effects on outcomes could only result from a previously ignored robust chronobiological mechanism. The circadian timing system coordinates cellular, tissue and whole-body physiology along the 24-h timescale. Circadian rhythms are generated at the cellular level by a molecular clock system that involves 15 specific clock genes. The disruption of circadian rhythms can trigger or accelerate carcinogenesis, and contribute to cancer treatment failure, possibly through tumour immune evasion resulting from immunosuppressive tumour microenvironment. Conclusions and perspective Such emerging understanding of circadian rhythms regulation of antitumour immunity now calls for randomised clinical trials of ICIs timing to establish recommendations for personalised chrono-immunotherapies with current and forthcoming drugs.
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