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Prevention of melatonin suppression by nocturnal lighting: relevance to cancer
Leonid Kayumov1, Alan Lowe, Shadab A Rahman
1Sleep Research Laboratory, University Health Network, University of Toronto, Ontario, Canada.
Abstract:
The decreased melatonin production in humans and animals caused by environmental lighting, especially short wavelength lighting (between 470 and 525 nm) has been shown to be associated with an increased risk of cancer. The purpose of this study was to investigate whether blocking light in this wavelength range under bright light may prevent the suppression of melatonin, which could help to prevent cancer. Optical filter lenses were designed, allowing selective exclusion of all wavelengths below 530 nm. Salivary melatonin levels were measured under dim light (<5 lux), bright light (800 lux) and filtered light (800 lux) at hourly intervals between 2000 and 0800 h in 11 healthy young male participants (mean age 23.5+/-1.5 years). The measurements were taken during three nonconsecutive nights over a 2-week period. The Dim Light Melatonin Onset test was used as a marker of circadian phase. Nine of the 11 participants demonstrated preserved melatonin levels in filtered light similar to their dim light secretion profile. With filtered light, the participants had a mean relative amount of melatonin of 91.2 (P>0.05 between dim light and experimental condition). Unfiltered bright light drastically suppressed melatonin production with a mean relative amount of melatonin of 25.4 (P<0.05 between dim light and experimental condition). Preventing melatonin deficiencies using lenses that block light of low wavelength from reaching the retina presents a cost-effective, practical solution to the problem of increased malignancy rates in shift workers.
Insights
Blocking blue light with special lenses preserves melatonin production under bright light, potentially reducing cancer risk for shift workers. This practical solution addresses light-induced melatonin suppression.
Area of Science:
- Chronobiology
- Ophthalmology
- Cancer Research
Background:
- Environmental light exposure, particularly short-wavelength light (470-525 nm), suppresses melatonin production.
- Reduced melatonin levels are linked to an increased risk of cancer in humans and animals.
- Shift work exacerbates light exposure, posing health risks.
Purpose of the Study:
- To investigate if blocking short-wavelength light prevents melatonin suppression under bright light conditions.
- To assess the potential of light filtering to mitigate cancer risk associated with melatonin deficiency.
Main Methods:
- Optical filter lenses were developed to exclude wavelengths below 530 nm.
- Salivary melatonin levels were measured in 11 healthy males under dim light, bright light, and filtered bright light.
- Measurements were taken hourly from 2000 to 0800 h over three nights, using the Dim Light Melatonin Onset test.
Main Results:
- Filtered light (800 lux) preserved melatonin levels in 9 out of 11 participants, showing a mean relative melatonin amount of 91.2%.
- Unfiltered bright light (800 lux) significantly suppressed melatonin production, with a mean relative amount of 25.4%.
- Filtered light melatonin levels were comparable to dim light levels (P>0.05).
Conclusions:
- Blocking short-wavelength light with optical filters effectively prevents melatonin suppression under bright light.
- This intervention offers a practical and cost-effective method to combat melatonin deficiency in at-risk populations.
- The findings suggest a potential strategy for reducing malignancy rates in shift workers.
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