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系统时间治疗学

Systems Chronotherapeutics.

作者信息

Ballesta Annabelle, Innominato Pasquale F, Dallmann Robert, Rand David A, Lévi Francis A

机构信息

Warwick Medical School (A.B., P.F.I., R.D., F.A.L.) and Warwick Mathematics Institute (A.B., D.A.R.), University of Warwick, Coventry, United Kingdom; Warwick Systems Biology and Infectious Disease Epidemiological Research Centre, Senate House, Coventry, United Kingdom (A.B., P.F.I., R.D., D.A.R., F.A.L.); INSERM-Warwick European Associated Laboratory "Personalising Cancer Chronotherapy through Systems Medicine" (C2SysMed), Unité mixte de Recherche Scientifique 935, Centre National de Recherche Scientifique Campus, Villejuif, France (A.B., P.F.I., R.D., D.A.R., F.A.L.); and Queen Elisabeth Hospital Birmingham, University Hospitals Birmingham National Health Service Foundation Trust, Cancer Unit, Edgbaston Birmingham, United Kingdom (P.F.I., F.A.L.)

Warwick Medical School (A.B., P.F.I., R.D., F.A.L.) and Warwick Mathematics Institute (A.B., D.A.R.), University of Warwick, Coventry, United Kingdom; Warwick Systems Biology and Infectious Disease Epidemiological Research Centre, Senate House, Coventry, United Kingdom (A.B., P.F.I., R.D., D.A.R., F.A.L.); INSERM-Warwick European Associated Laboratory "Personalising Cancer Chronotherapy through Systems Medicine" (C2SysMed), Unité mixte de Recherche Scientifique 935, Centre National de Recherche Scientifique Campus, Villejuif, France (A.B., P.F.I., R.D., D.A.R., F.A.L.); and Queen Elisabeth Hospital Birmingham, University Hospitals Birmingham National Health Service Foundation Trust, Cancer Unit, Edgbaston Birmingham, United Kingdom (P.F.I., F.A.L.).

出版信息

Pharmacol Rev. 2017 Apr;69(2):161-199. doi: 10.1124/pr.116.013441.

Abstract

Chronotherapeutics aim at treating illnesses according to the endogenous biologic rhythms, which moderate xenobiotic metabolism and cellular drug response. The molecular clocks present in individual cells involve approximately fifteen clock genes interconnected in regulatory feedback loops. They are coordinated by the suprachiasmatic nuclei, a hypothalamic pacemaker, which also adjusts the circadian rhythms to environmental cycles. As a result, many mechanisms of diseases and drug effects are controlled by the circadian timing system. Thus, the tolerability of nearly 500 medications varies by up to fivefold according to circadian scheduling, both in experimental models and/or patients. Moreover, treatment itself disrupted, maintained, or improved the circadian timing system as a function of drug timing. Improved patient outcomes on circadian-based treatments (chronotherapy) have been demonstrated in randomized clinical trials, especially for cancer and inflammatory diseases. However, recent technological advances have highlighted large interpatient differences in circadian functions resulting in significant variability in chronotherapy response. Such findings advocate for the advancement of personalized chronotherapeutics through interdisciplinary systems approaches. Thus, the combination of mathematical, statistical, technological, experimental, and clinical expertise is now shaping the development of dedicated devices and diagnostic and delivery algorithms enabling treatment individualization. In particular, multiscale systems chronopharmacology approaches currently combine mathematical modeling based on cellular and whole-body physiology to preclinical and clinical investigations toward the design of patient-tailored chronotherapies. We review recent systems research works aiming to the individualization of disease treatment, with emphasis on both cancer management and circadian timing system-resetting strategies for improving chronic disease control and patient outcomes.

摘要

时辰治疗学旨在根据内源性生物节律治疗疾病,内源性生物节律可调节外源性物质代谢和细胞药物反应。单个细胞中存在的分子时钟涉及大约15个时钟基因,这些基因通过调节反馈环相互连接。它们由视交叉上核协调,视交叉上核是下丘脑起搏器,也将昼夜节律调整为环境周期。因此,许多疾病机制和药物作用都受昼夜节律计时系统控制。因此,在实验模型和/或患者中,近500种药物的耐受性根据昼夜节律安排变化高达五倍。此外,治疗本身会根据药物给药时间破坏、维持或改善昼夜节律计时系统。在随机临床试验中已证明基于昼夜节律的治疗(时辰疗法)可改善患者预后,尤其是对于癌症和炎症性疾病。然而,最近的技术进步凸显了患者之间昼夜节律功能的巨大差异,导致时辰疗法反应存在显著变异性。这些发现主张通过跨学科系统方法推进个性化时辰治疗学。因此,数学、统计、技术、实验和临床专业知识的结合正在塑造专用设备以及诊断和给药算法的开发,以实现治疗个体化。特别是,多尺度系统时辰药理学方法目前将基于细胞和全身生理学的数学建模与临床前和临床研究相结合,以设计针对患者的时辰疗法。我们综述了近期旨在实现疾病治疗个体化的系统研究工作,重点关注癌症管理以及用于改善慢性病控制和患者预后的昼夜节律计时系统重置策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf17/5394920/3c79bbe54069/pr.116.013441absf1.jpg

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