BACKGROUND: Research suggests that ultraviolet (UV) exposure of mice placed on a high fat diet can reduce incidence of metabolic disease. However, current research had primarily focused on male mice with UV outside level of terrestrial sunlight. OBJECTIVES: Here we attempt to address this imbalance, with a pilot study presented wherein female mice C57Bl6 mice are included, with UV exposure at level comparable to low dose (non-burning) sunlight exposure. METHODS: 2% UV-B and 98% UV-At a dose of 1.83âJ/cm(2) with UV-A and 0.04âJ/ cm(2) UV-B were delivered over a 10-min timeframe twice weekly. Mice were placed on a low-fat diet or high fat diet, with the high fat diet cohort either exposed twice weekly to UV light or sham exposed. RESULTS: Non-significant trends are observed for weight amelioration in UV exposed mice across both sexes at study endpoint, whereas in the liver, a reduction of lipid droplet size due to UV exposure is observed. Assessment of vitamin D status at study endpoint shows that the high fat diet increases 25(OH)D level in both sexes, more so in female mice, with further non-significant rises due to UV exposure. CONCLUSIONS: This study supports previous evidence that non-vitamin D mediated pathways may be responsible for the outcomes reported in this study. The UV exposures used in this study also resulted in minimal damage to ex vivo skin or in vitro cells, as assessed by cyclobutene-pyrimidine dimers (CPD's) (characteristic signature mutations induced by UV), and double stranded breaks, further demonstrating the potential benefit of such exposures. This study supports and builds on current evidence that non-vitamin D pathways mediated through UV exposure may be beneficial in slowing weight gain and liver disease progression.
Ultraviolet exposure of mice fed a high fat diet reduces weight gain and markers of liver disease progression.
对喂食高脂肪食物的小鼠进行紫外线照射,可减少其体重增加和肝脏疾病进展的标志物
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作者:Hazell Gareth, Khazova Marina, Mancey Hannah, Shek Raymond, O'Mahoney Paul
| 期刊: | International Journal of Obesity | 影响因子: | 3.800 |
| 时间: | 2025 | 起止号: | 2025 Jul;49(7):1373-1381 |
| doi: | 10.1038/s41366-025-01779-5 | ||
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