Verma Avnish Kumar, Singh Sandeep, Rizvi Syed Ibrahim
Department of Biochemistry, University of Allahabad, Allahabad, 211002, India.
Biogerontology. 2025 Jun 27;26(4):132. doi: 10.1007/s10522-025-10281-4.
The circadian clocks of the cell orchestrate a daily transcriptional rhythm that schedules key activities of the cell to maintain homeostasis and support resilience. Circadian rhythm is driven by the periodic oscillations of transcriptional activators and translational repressors, occurring in both the central and peripheral clocks. Accumulating evidence shows that aging impairs the functional synchrony of the circadian system which further escalate age-related disorders. In addition, the technological aspects of modern society, including constant work schedules and extensive use of personal electronics, have led to a significant rise in circadian disorders. Circadian dysfunction seems to adversely impact aging and longevity in animal models. Therefore, it is essential to conduct comprehensive studies to identify factors that worsen with aging and to discover therapeutic options for promoting healthy aging. This review examines how aging affects circadian function and the reciprocal effects of circadian disruption (CD) on aging and longevity. Further, we highlight the recent findings on non-pharmacological aspects such as dietary restrictions and physical exercise as a regulator of circadian rhythms, aging attenuation, and extending lifespan in mammals. Thus, resetting the circadian clock may lead to better synchrony in cellular homeodynamics and physiology which offers healthy aging and increased life span.
细胞的生物钟协调每日的转录节律,安排细胞的关键活动以维持体内平衡并增强恢复力。昼夜节律由转录激活因子和翻译抑制因子的周期性振荡驱动,在中枢和外周生物钟中均会发生。越来越多的证据表明,衰老会损害昼夜节律系统的功能同步性,进而加剧与年龄相关的疾病。此外,现代社会的技术因素,包括固定的工作时间表和个人电子设备的广泛使用,导致昼夜节律紊乱显著增加。昼夜节律功能障碍似乎会对动物模型的衰老和寿命产生不利影响。因此,开展全面研究以确定随衰老而恶化的因素,并发现促进健康衰老的治疗方法至关重要。本综述探讨衰老如何影响昼夜节律功能,以及昼夜节律紊乱对衰老和寿命的相互影响。此外,我们强调了近期在非药物方面的研究发现,如饮食限制和体育锻炼作为昼夜节律、衰老减缓及延长哺乳动物寿命的调节因素。因此,重置生物钟可能会使细胞内环境动态平衡和生理机能更好地同步,从而实现健康衰老和延长寿命。