Electric light, particularly at night, disrupts human circadian rhythmicity: is that a problem?

Richard G Stevens, Yong Zhu

Journal: Philosophical transactions of the Royal Society of London. Series B, Biological sciences 2016;370(1667):20140120

PMID: 25780233

Abstract

Over the past 3 billion years, an endogenous circadian rhythmicity has developed in almost all life forms in which daily oscillations in physiology occur. This allows for anticipation of sunrise and sunset. This physiological rhythmicity is kept at precisely 24 h by the daily cycle of sunlight and dark. However, since the introduction of electric lighting, there has been inadequate light during the day inside buildings for a robust resetting of the human endogenous circadian rhythmicity, and too much light at night for a true dark to be detected; this results in circadian disruption and alters sleep/wake cycle, core body temperature, hormone regulation and release, and patterns of gene expression throughout the body. The question is the extent to which circadian disruption compromises human health, and can account for a portion of the modern pandemics of breast and prostate cancers, obesity, diabetes and depression. As societies modernize (i.e. electrify) these conditions increase in prevalence. There are a number of promising leads on putative mechanisms, and epidemiological findings supporting an aetiologic role for electric lighting in disease causation. These include melatonin suppression, circadian gene expression, and connection of circadian rhythmicity to metabolism in part affected by haem iron intake and distribution.

© 2015 The Author(s) Published by the Royal Society. All rights reserved.

Address: Department of Community Medicine, University of Connecticut Health Center, Farmington, CT, USA [email protected].; Department of Environmental Health Sciences, Yale University, New Haven, CT, USA.
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