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Circadian timing in cancer treatments.

机译:癌症治疗中的生物钟时间安排。

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The circadian timing system is composed of molecular clocks, which drive 24-h changes in xenobiotic metabolism and detoxification, cell cycle events, DNA repair, apoptosis, and angiogenesis. The cellular circadian clocks are coordinated by endogenous physiological rhythms, so that they tick in synchrony in the host tissues that can be damaged by anticancer agents. As a result, circadian timing can modify 2- to 10-fold the tolerability of anticancer medications in experimental models and in cancer patients. Improved efficacy is also seen when drugs are given near their respective times of best tolerability, due to (a) inherently poor circadian entrainment of tumors and (b) persistent circadian entrainment of healthy tissues. Conversely, host clocks are disrupted whenever anticancer drugs are administered at their most toxic time. On the other hand, circadian disruption accelerates experimental and clinical cancer processes. Gender, circadian physiology, clock genes, and cell cycle critically affect outcome on cancer chronotherapeutics. Mathematical and systems biology approaches currently develop and integrate theoretical, experimental, and technological tools in order to further optimize and personalize the circadian administration of cancer treatments.
机译:昼夜节律计时系统由分子钟组成,可驱动异生物代谢和排毒,细胞周期事件,DNA修复,细胞凋亡和血管生成的24小时变化。细胞生物钟由内源性生理节律协调,因此它们在宿主组织中同步滴答,而宿主组织可能会被抗癌剂破坏。结果,在实验模型和癌症患者中,昼夜节律的定时可以将抗癌药物的耐受性提高2到10倍。当由于(a)固有的较差的昼夜节律性肿瘤夹带和(b)持续的健康组织的昼夜节律性夹带而在各自的最佳耐受时间附近给予药物时,疗效也得到改善。相反,只要在最有毒的时间服用抗癌药物,主机时钟就会中断。另一方面,昼夜节律的破坏会加速实验和临床癌症的进程。性别,昼夜节律生理,时钟基因和细胞周期严重影响癌症计时治疗的结果。当前,数学和系统生物学方法发展并整合了理论,实验和技术工具,以进一步优化和个性化生物钟对癌症治疗的管理。

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