Giovannelli Lisa, Bellandi Serena, Pitozzi Vanessa, Fabbri Paolo, Dolara Piero, Moretti Silvia
Department of Preclinical and Clinical Pharmacology, University of Florence, Viale Pieraccini 6, 50139 Firenze, Florence, Italy.
Mutat Res. 2004 Nov 22;556(1-2):101-6. doi: 10.1016/j.mrfmmm.2004.07.005.
Vitiligo is an acquired pigmentary disorder of the skin of unknown aetiology. The autocytotoxic hypothesis suggests that melanocyte impairment could be related to increased oxidative stress. Evidences have been reported that in vitiligo oxidative stress might also be present systemically. We used the comet assay (single cell alkaline gel electrophoresis) to evaluate DNA strand breaks and DNA base oxidation, measured as formamidopyrimidine DNA glycosylase (FPG)-sensitive sites, in peripheral blood cells from patients with active vitiligo and healthy controls. The basal level of oxidative DNA damage in mononuclear leukocytes was increased in vitiligo compared to normal subjects, whereas DNA strand breaks (SBs) were not changed. This alteration was not accompanied by a different capability to respond to in vitro oxidative challenge. No differences in the basal levels of DNA damage in polymorphonuclear leukocytes were found between patients and healthy subjects. Thus, this study supports the hypothesis that in vitiligo a systemic oxidative stress exists, and demonstrates for the first time the presence of oxidative alterations at the nuclear level. The increase in oxidative DNA damage shown in the mononuclear component of peripheral blood leukocytes from vitiligo patients was not particularly severe. However, these findings support an adjuvant role of antioxidant treatment in vitiligo.
白癜风是一种病因不明的后天性皮肤色素沉着紊乱疾病。自身细胞毒性假说认为黑素细胞损伤可能与氧化应激增加有关。已有证据表明,白癜风患者体内可能也存在系统性氧化应激。我们采用彗星试验(单细胞碱性凝胶电泳)评估活动期白癜风患者和健康对照者外周血细胞中的DNA链断裂和DNA碱基氧化情况,后者以甲酰胺嘧啶DNA糖基化酶(FPG)敏感位点来衡量。与正常受试者相比,白癜风患者单核白细胞中氧化性DNA损伤的基础水平有所升高,而DNA链断裂(SBs)未发生变化。这种改变并未伴随着对体外氧化应激刺激反应能力的差异。患者与健康受试者之间在多形核白细胞的DNA损伤基础水平上未发现差异。因此,本研究支持白癜风患者存在系统性氧化应激这一假说,并首次证明了在细胞核水平存在氧化改变。白癜风患者外周血白细胞单核成分中氧化性DNA损伤的增加并不特别严重。然而,这些发现支持抗氧化治疗在白癜风中的辅助作用。