昼夜节律计时系统对药物代谢和解毒的作用:最新进展。

Alper Okyar, Dilek Ozturk Civelek, Yasemin Kubra Akyel, Saliha Surme, Zeliha Pala Kara, I Halil Kavakli
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引用次数: 0

摘要

导言:药物吸收、分布、代谢和消除(统称为药代动力学)的 24 小时变化从根本上受到分子钟调节的节律性生理过程的影响。最近的研究进展阐明了昼夜节律计时系统的复杂性,以及生物钟、酶和转运体之间在临床前水平上的分子相互作用:药物代谢酶和载体外流功能的昼夜节律对药物代谢和解毒起着重要作用。肠道和肝脏的外流和代谢功能似乎很重要。研究发现,ABC 和 SLC 转运体家族以及肠道、肝脏和肾脏中的细胞色素 p-450 系统在药物的昼夜节律解毒过程中发挥着主导作用。此外,还讨论了血脑屏障对药物外流的昼夜节律控制:昼夜节律时间系统对药物药代动力学的影响极大地影响了各种药物的疗效、不良反应和毒性。此外,新陈代谢和解毒过程中出现的与性别相关的昼夜节律变化也凸显了考虑药物耐受性和药理学中性别差异的重要性。更好地了解中枢时钟与昼夜代谢/转运之间的耦合关系有助于开发更合理的药物使用方法和实施时间疗法应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of the circadian timing system on drug metabolism and detoxification: an update.

Introduction: The 24-hour variations in drug absorption, distribution, metabolism, and elimination, collectively known as pharmacokinetics, are fundamentally influenced by rhythmic physiological processes regulated by the molecular clock. Recent advances have elucidated the intricacies of the circadian timing system and the molecular interplay between biological clocks, enzymes and transporters in preclinical level.

Area covered: Circadian rhythm of the drug metabolizing enzymes and carrier efflux functions possess a major role for drug metabolism and detoxification. The efflux and metabolism function of intestines and liver seems important. The investigations revealed that the ABC and SLC transporter families, along with cytochrome p-450 systems in the intestine, liver, and kidney, play a dominant role in the circadian detoxification of drugs. Additionally, the circadian control of efflux by the blood-brain barrier is also discussed.

Expert opinion: The influence of the circadian timing system on drug pharmacokinetics significantly impacts the efficacy, adverse effects, and toxicity profiles of various drugs. Moreover, the emergence of sex-related circadian changes in the metabolism and detoxification processes has underscored the importance of considering gender-specific differences in drug tolerability and pharmacology. A better understanding of coupling between central clock and circadian metabolism/transport contributes to the development of more rational drug utilization and the implementation of chronotherapy applications.

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