Aug 2026· Sleep Medicine Reviews· Vol 90, pp.
102360
· 0 citations· 100 references
Medicine
TL;DR
This review aims to summarize the current evidence linking sleep disturbances, circadian regulation, light exposure, seasonal variation, environmental temperature, and circadian desynchronization with skin physiology and some dermatoses.
Abstract
Sleep, circadian rhythms, light exposure, and environmental factors are increasingly recognized as important regulators of skin physiology. The skin contains peripheral clocks and exhibits circadian rhythmicity in barrier function, immune activity, pigmentation, temperature, blood flow, and repair processes. This review aims to summarize the current evidence linking sleep disturbances, circadian regulation, light exposure, seasonal variation, environmental temperature, and circadian desynchronization with skin physiology and some dermatoses. Sleep loss and disturbances in sleep duration may alter immune function and impair skin barrier integrity, potentially contributing to inflammatory dermatoses, including atopic dermatitis, psoriasis, and eczema. Light is the principal synchronizer of biological rhythms, whereas light at night, jet lag, and shift work may disrupt circadian organization, alter melatonin secretion, and impair central and peripheral clock regulation. These disturbances may be relevant to skin aging, impaired repair, inflammatory skin diseases, and potential skin carcinogenesis. Further studies are needed to better understand how circadian disruption influences skin homeostasis, repair processes, and disease development.
The circadian clock, located in the mammalian hypothalamus, regulates biological rhythms with a period of approximately 24 h, influencing nearly all body functions. Its timing is synchronised daily by external cues, primarily light, which align internal rhythms with the environmental cycle. Through this entrainment, th...
M. L. Mul Fedele, D. P. Cardinali· Clocks & Sleep· 0 citations
Biological timing systems, including circadian and seasonal rhythms, play a key role in regulating human physiology. The central circadian “body clock,” located in the suprachiasmatic nucleus, coordinates daily rhythms both centrally and via peripheral clocks in metabolic tissues. Seasonal rhythms, in turn, are shape...
D. Kanikowska, Maki Sato· Journal of Physiological Ant...· 0 citations
Background/Aim: Circadian rhythms regulate DNA repair, cell-cycle control, apoptosis, pigmentation, barrier function, and immune surveillance in skin, and their disruption may increase susceptibility to ultraviolet-induced carcinogenesis. Materials and Methods: This narrative review synthesizes mechanistic, experimenta...
Reed Popp, D. Elston· Anticancer Research· 0 citations
Rates of early-onset colorectal cancer (CRC) have increased among adults under age 50, encouraging
interest in environmental and lifestyle factors that may contribute to CRC more broadly. One emerging
area of interest is disruption of the circadian rhythm, the body’s internal biological clock. Modern
lifestyles can int...
Natalia Ali· American Journal of Student...· 0 citations
The skin is a temporally dynamic organ governed by intrinsic molecular clocks operating across multiple cell types. Circadian regulation influences epidermal renewal, barrier function, pigmentation, immune activity, DNA damage responses, and wound repair. This narrative review critically summarizes current mechanistic,...
Shift work and working during the night have emerged as major contributors to the disruption of our natural circadian rhythms. This integrative review synthesises evidence on shift-work induced circadian rhythm disruption and associated hormonal dysregulation. Eight databases were searched for relevant literature publi...
Nurullia Hanum Hilfida, Diah Priyantini, Divya Chapagain et al.· BIO Web of Conferences· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.