Literature DB >> 12692376

The role of oxidants and antioxidants in generalized vitiligo.

Mehmet Yildirim1, Vahide Baysal, H Serhat Inaloz, Demet Kesici, Namik Delibas.   

Abstract

Oxidative stress may be induced by increasing the generation of reactive oxygen species (ROS) and other free radicals. The generation of ROS is known to be associated with a decrease in antioxidant levels. In the present study, the role of oxidative stress was assessed in the pathogenesis of generalized vitiligo. Superoxide dismutase (SOD), glutathione peroxidase (GSH-Px), and glutathione (GSH) levels in erythrocytes and serum malondialdehyde (MDA) and nitric oxide (NO) levels were investigated in 24 patients with generalized vitiligo and 20 healthy controls. Our results indicated that significantly increased levels of erythrocyte SOD, serum MDA, and NO were associated with a marked reduction of erythrocyte GSH-Px and GSH activities in patients with generalized vitiligo (p<0.05). Our observations suggest that the presence of an imbalance in the oxidant-antioxidant system might play a role in the pathogenesis of vitiligo. Our results further support the concept that free radical-mediated damage may be the initial pathogenic event in melanocyte degeneration in generalized vitiligo.

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Year:  2003        PMID: 12692376     DOI: 10.1111/j.1346-8138.2003.tb00356.x

Source DB:  PubMed          Journal:  J Dermatol        ISSN: 0385-2407            Impact factor:   4.005


  21 in total

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2.  The nuclear factor (erythroid-derived 2)-like 2 (NRF2) antioxidant response promotes melanocyte viability and reduces toxicity of the vitiligo-inducing phenol monobenzone.

Authors:  Omotayo A Arowojolu; Seth J Orlow; Nada Elbuluk; Prashiela Manga
Journal:  Exp Dermatol       Date:  2017-07       Impact factor: 3.960

3.  Erythrocyte malondialdehyde and glutathione levels in vitiligo patients.

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Journal:  Ann Dermatol       Date:  2010-08-05       Impact factor: 1.444

4.  A role for tyrosinase-related protein 1 in 4-tert-butylphenol-induced toxicity in melanocytes: Implications for vitiligo.

Authors:  Prashiela Manga; David Sheyn; Fan Yang; Rangaprasad Sarangarajan; Raymond E Boissy
Journal:  Am J Pathol       Date:  2006-11       Impact factor: 4.307

5.  Vitiligo-inducing phenols activate the unfolded protein response in melanocytes resulting in upregulation of IL6 and IL8.

Authors:  Siavash Toosi; Seth J Orlow; Prashiela Manga
Journal:  J Invest Dermatol       Date:  2012-06-14       Impact factor: 8.551

6.  Understanding mechanisms of vitiligo development in Smyth line of chickens by transcriptomic microarray analysis of evolving autoimmune lesions.

Authors:  Fengying Shi; Byung-Whi Kong; Joon Jin Song; Jeong Yoon Lee; Robert L Dienglewicz; Gisela F Erf
Journal:  BMC Immunol       Date:  2012-04-13       Impact factor: 3.615

7.  Comparison of plasma malondialdehyde, glutathione, glutathione peroxidase, hydroxyproline and selenium levels in patients with vitiligo and healthy controls.

Authors:  I Cetin Ozturk; Kadir Batcioglu; Fikret Karatas; Ersoy Hazneci; Metin Genc
Journal:  Indian J Dermatol       Date:  2008       Impact factor: 1.494

8.  Oxidative stress in experimental vitiligo C57BL/6 mice.

Authors:  Akrem Jalel; Mrabet Yassine; Mohamed Hédi Hamdaoui
Journal:  Indian J Dermatol       Date:  2009-07       Impact factor: 1.494

9.  Dermal mesenchymal stem cells (DMSCs) inhibit skin-homing CD8+ T cell activity, a determining factor of vitiligo patients' autologous melanocytes transplantation efficiency.

Authors:  Miao-ni Zhou; Zhi-qing Zhang; Ji-long Wu; Fu-quan Lin; Li-fang Fu; Sui-qan Wang; Cui-ping Guan; Hong-lin Wang; Aie Xu
Journal:  PLoS One       Date:  2013-04-05       Impact factor: 3.240

10.  Oxidative stress in patients with acne vulgaris.

Authors:  Ozer Arican; Ergul Belge Kurutas; Sezai Sasmaz
Journal:  Mediators Inflamm       Date:  2005-12-14       Impact factor: 4.711

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