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首页> 外文期刊>British Journal of Dermatology >Assessment of ultraviolet-radiation-induced DNA damage within melanocytes in skin of different constitutive pigmentation
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Assessment of ultraviolet-radiation-induced DNA damage within melanocytes in skin of different constitutive pigmentation

机译:紫外线对不同组成型色素沉着皮肤黑素细胞内DNA损伤的评估

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摘要

Background Melanoma incidence and pigmentary disorders are known to be related to the degree of skin pigmentation, but few data exist on the specific impact of ultraviolet radiation (UVR) on melanocytes in skin of different constitutive pigmentation. Objectives To analyse UVR-induced DNA damage within melanocytes in different skin-colour types. Methods Skin samples were objectively classified into light, intermediate, tan, brown and dark skin according to their individual typology angle (°ITA), based on colorimetric parameters. Samples were exposed to increasing doses of solar simulated radiation. Detection of DNA damage specifically in melanocytes was achieved by cyclobutane thymine dimer (CPD)-tyrosinase-related protein 1 double staining. Results For light, intermediate and tan skin, accumulation of CPDs in melanocytes was detected at the lowest dose, with a steep increase with dose. At estimated erythemally equivalent doses, around 80-100% of melanocytes were positive for CPDs in tan, intermediate and light skin types. In contrast, in dark and brown skin types, CPDs were found in only approximately 15% of melanocytes at the highest dose. Conclusions This work demonstrates that melanocytes from constitutively highly pigmented skin types are less impacted in terms of UVR-induced DNA damage than those from lighter skin types, even those that are moderately pigmented.
机译:背景技术已知黑色素瘤的发病率和色素异常与皮肤色素沉着程度有关,但是关于紫外线(UVR)对不同构成色素沉着的皮肤中黑素细胞的特定影响的数据很少。目的分析不同肤色类型的黑色素细胞内UVR诱导的DNA损伤。方法根据比色参数,根据皮肤个体的分类角度(°ITA)将皮肤样本客观地分为浅色,中度,棕褐色,棕色和深色皮肤。样品暴露于日增剂量的太阳模拟辐射下。通过环丁烷胸腺嘧啶二聚体(CPD)-酪氨酸酶相关蛋白1双重染色可检测到黑素细胞中DNA的特异性损伤。结果对于轻度,中度和棕褐色皮肤,在最低剂量下检测到CPD在黑素细胞中的积累,并随剂量的增加而急剧增加。在估计的红斑等效剂量下,大约80-100%的黑素细胞在棕褐色,中度和轻度皮肤类型中CPD呈阳性。相反,在深色和棕色皮肤类型中,最高剂量仅在约15%的黑素细胞中发现CPD。结论这项工作表明,色素沉着性强的皮肤类型的黑素细胞受到紫外线辐射诱导的DNA损害的影响要比肤色较浅的人(即使色素中度的皮肤)受到的影响小。

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