Curtis Clock Laboratory, School of Pharmacy and Biomolecular Sciences and Tissue Engineering Research Group (TERG), Royal College of Surgeons in Ireland RCSI, Dublin, Ireland.
The Wellcome Wolfson Institute for Experimental Medicine, Queen's University Belfast, 97 Lisburn Road, Belfast, BT9 7B, UK.
Drug Deliv Transl Res. 2024 Jul;14(7):1756-1775. doi: 10.1007/s13346-024-01539-4. Epub 2024 Feb 28.
Circadian rhythms influence a range of biological processes within the body, with the central clock or suprachiasmatic nucleus (SCN) in the brain synchronising peripheral clocks around the body. These clocks are regulated by external cues, the most influential being the light/dark cycle, in order to synchronise with the external day. Chrono-tailored or circadian drug delivery systems (DDS) aim to optimise drug delivery by releasing drugs at specific times of day to align with circadian rhythms within the body. Although this approach is still relatively new, it has the potential to enhance drug efficacy, minimise side effects, and improve patient compliance. Chrono-tailored DDS have been explored and implemented in various conditions, including asthma, hypertension, and cancer. This review aims to introduce the biology of circadian rhythms and provide an overview of the current research on chrono-tailored DDS, with a particular focus on immunological applications and vaccination. Finally, we draw on some of the key challenges which need to be overcome for chrono-tailored DDS before they can be translated to more widespread use in clinical practice.
昼夜节律影响着体内的一系列生物过程,大脑中的中央时钟或视交叉上核(SCN)同步身体周围的外周时钟。这些时钟受外部线索调节,最具影响力的是光/暗周期,以与外部日同步。量身定制的或昼夜节律药物输送系统(DDS)旨在通过在一天中的特定时间释放药物来与体内的昼夜节律相协调,从而优化药物输送。尽管这种方法相对较新,但它有可能提高药物疗效、最小化副作用并提高患者的依从性。量身定制的 DDS 已在各种情况下进行了探索和实施,包括哮喘、高血压和癌症。本综述旨在介绍昼夜节律的生物学,并概述当前关于量身定制的 DDS 的研究,特别关注免疫应用和疫苗接种。最后,我们借鉴了一些关键挑战,这些挑战需要在量身定制的 DDS 能够转化为更广泛的临床实践应用之前得到克服。