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首页> 外文期刊>Anticancer Research: International Journal of Cancer Research and Treatment >Evaluation of Effectiveness of Ultraviolet Emitting Lamps on the Cutaneous Production of Vitamin D-3: Relationship of the Lamps Vitamin D-3 Producing Potential to the Production of 8-Hydroxy-2 '-Deoxyguanosine and Nitric Oxide
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Evaluation of Effectiveness of Ultraviolet Emitting Lamps on the Cutaneous Production of Vitamin D-3: Relationship of the Lamps Vitamin D-3 Producing Potential to the Production of 8-Hydroxy-2 '-Deoxyguanosine and Nitric Oxide

机译:紫外线发射灯对维生素D-3皮肤生产有效性的评价:灯维生素D-3生产潜力为8-羟基-2'-二氧杂环藻素和一氧化氮

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Background/Aim: To assess the effectiveness of three UV emitting lamps on the cutaneous production of vitamin D3, a marker of DNA damage and nitric oxide production in human skin. Materials and Methods: Human skin samples (skin types II, III and IV) obtained from surgery were exposed to three different UV emitting lamps for varying times and then extracted and chromatographed to determine the vitamin D-3 content. The skin samples exposed to the 3 UV emitting lamps were also evaluated for 8hydroxy-2'-deoxyguanosine (a marker of DNA damage) and nitric oxide production. Results: It was observed that the spectral output of the 3 lamps had different effects on the cutaneous production of vitamin D-3, 8-hydroxy-2'deoxyguanosine and nitric oxide production. One lamp demonstrated optimal production of vitamin D-3 with the least amount of DNA damage and intermediate production of nitric oxide suggesting that it could be developed into a device for treating vitamin D deficiency. Conclusion: The spectral output of the experimental UVB emitting lamps significantly influenced the cutaneous production of vitamin D3 8-hydroxy-2'-deoxyguanosine and nitric oxide.
机译:背景/目的:评估三个紫外线发射灯对维生素D3的皮肤生产的有效性,DNA损伤的标志物和人体皮肤中的一氧化氮产生。材料和方法:从手术获得的人体皮肤样品(Skin型II,III和IV)暴露于三种不同的UV发射灯以进行不同的时间,然后提取并色谱分离以确定维生素D-3含量。还评估了暴露于3 uV发射灯的皮肤样品对8羟基-2'-脱氧核苷酸(DNA损伤标志物)和一氧化氮产生。结果:观察到3盏灯的光谱输出对维生素D-3,8-羟基-2'deoxyguanote和一氧化氮产生的皮肤生产产生了不同的影响。一盏灯展示了维生素D-3的最佳生产,具有最少的DNA损伤和一氧化氮的中间产生,表明它可以发展成用于治疗维生素D缺乏的装置。结论:实验UVB发射灯的光谱输出显着影响了维生素D3 8-羟基-2'-脱氧竹苷和一氧化氮的皮肤生产。

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