Department of Pharmaceutical Sciences, School of Pharmacy and Pharmaceutical Sciences, State University of New York at Buffalo, Buffalo, NY, 14214, USA.
Janssen, Pharmaceutical Companies of Johnson & Johnson, Spring House, PA, 19477, USA.
J Pharmacokinet Pharmacodyn. 2021 Jun;48(3):321-338. doi: 10.1007/s10928-021-09751-2. Epub 2021 Apr 1.
Circadian rhythms are ubiquitous phenomena that recur daily in a self-sustaining, entrainable, and oscillatory manner, and orchestrate a wide range of molecular, physiological, and behavioral processes. Circadian clocks are comprised of a hierarchical network of central and peripheral clocks that generate, sustain, and synchronize the circadian rhythms. The functioning of the peripheral clock is regulated by signals from autonomic innervation (from the central clock), endocrine networks, feeding, and other external cues. The critical role played by circadian rhythms in maintaining both systemic and tissue-level homeostasis is well established, and disruption of the rhythm has direct consequence for human health, disorders, and diseases. Circadian oscillations in both pharmacokinetics and pharmacodynamic processes are known to affect efficacy and toxicity of several therapeutic agents. A variety of modeling approaches ranging from empirical to more complex systems modeling approaches have been applied to characterize circadian biology and its influence on drug actions, optimize time of dosing, and identify opportunities for pharmacological modulation of the clock mechanisms and their downstream effects. In this review, we summarize current understanding of circadian rhythms and its influence on physiology, pharmacology, and therapeutic interventions, and discuss the role of chronopharmacometrics in gaining new insights into circadian rhythms and its applications in chronopharmacology.
昼夜节律是普遍存在的现象,以自我维持、可驯化和振荡的方式每天重复出现,并协调广泛的分子、生理和行为过程。昼夜节律钟由中央和外周时钟的层次网络组成,这些时钟产生、维持和同步昼夜节律。外周时钟的功能受到自主神经支配(来自中央时钟)、内分泌网络、进食和其他外部线索的信号调节。昼夜节律在维持全身和组织水平内稳态方面的关键作用已得到充分证实,节律的破坏对人类健康、疾病和疾病有直接影响。药代动力学和药效动力学过程中的昼夜波动已知会影响几种治疗药物的疗效和毒性。已经应用了从经验到更复杂的系统建模方法等各种建模方法来描述昼夜生物学及其对药物作用的影响,优化给药时间,并确定时钟机制及其下游效应的药理学调节的机会。在这篇综述中,我们总结了昼夜节律及其对生理学、药理学和治疗干预的影响的现有认识,并讨论了 chronopharmacometrics 在深入了解昼夜节律及其在 chronopharmacology 中的应用方面的作用。