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Published on: June 13, 2025
A single night light exposure acutely alters hormonal and metabolic responses in healthy participants
Mohammed S Albreiki1, Benita Middleton1, Shelagh M Hampton2
1Department of Biochemistry and PhysiologyCentre for Chronobiology, Faculty of Health and Medical Sciences, University of Surrey, Guildford, Surrey, UK.
Abstract:
Many animal studies have reported an association between melatonin suppression and the disturbance of metabolic responses; yet, few human studies have investigated bright light effects on metabolic and hormonal responses at night. This study investigated the impact of light on plasma hormones and metabolites prior to, and after, an evening meal in healthy participants. Seventeen healthy participants, 8 females (22.2 ± 2.59 years, mean ± s.d.) and 9 males (22.8 ± 3.5 years) were randomised to a two-way cross-over design protocol; dim light (DL) (<5 lux) and bright light (BL) (>500 lux) sessions, separated by at least seven days. Saliva and plasma samples were collected prior to and after a standard evening meal at specific intervals. Plasma non-esterified fatty acid (NEFA) levels were significantly higher pre-meal in DL compared to BL (P < 0.01). Plasma glucose and insulin levels were significantly greater post-meal in the BL compared to DL session (P = 0.02, P = 0.001), respectively. Salivary melatonin levels were significantly higher in the DL compared to those in BL session (P = 0.005). BL at night was associated with significant increases in plasma glucose and insulin suggestive of glucose intolerance and insulin insensitivity. Raised pre-prandial NEFA levels may be due to changes in insulin sensitivity or the presence of melatonin and/or light at night. Plasma triglyceride (TAG) levels were the same in both sessions. These results may explain some of the health issues reported in shift workers; however, further studies are needed to elucidate the cause of these metabolic changes.
Insights
Bright light at night disrupts metabolic and hormonal responses in healthy adults, increasing glucose and insulin levels. This suggests potential links to glucose intolerance and insulin insensitivity, impacting overall metabolic health.
Area of Science:
- Endocrinology
- Metabolic Science
- Chronobiology
Background:
- Animal studies link melatonin suppression to metabolic disturbances.
- Human studies on nighttime light's metabolic effects are limited.
- Melatonin plays a role in regulating metabolic and hormonal functions.
Purpose of the Study:
- To investigate the impact of nighttime bright light exposure on plasma hormones and metabolites.
- To assess the effects of dim light versus bright light on metabolic responses before and after an evening meal in humans.
Main Methods:
- Seventeen healthy participants (8 female, 9 male) underwent a two-way crossover study.
- Participants were exposed to either dim light (DL) or bright light (BL) conditions.
- Saliva and plasma samples were collected pre- and post-meal for hormonal and metabolite analysis.
Main Results:
- Bright light (BL) at night significantly increased post-meal plasma glucose and insulin levels compared to dim light (DL).
- Salivary melatonin levels were significantly higher in the DL condition.
- Pre-meal non-esterified fatty acid (NEFA) levels were higher in DL, while plasma triglyceride (TAG) levels remained unchanged.
Conclusions:
- Nighttime bright light exposure is associated with impaired glucose metabolism and insulin sensitivity in healthy individuals.
- Elevated pre-prandial NEFA levels may be influenced by insulin sensitivity, melatonin, or light exposure.
- These findings may offer insights into metabolic health issues observed in populations with disrupted light-dark cycles, such as shift workers.
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