ANTIOXIDANTS IN THE TREATMENT OF VITILIGO


如何引用文章

全文:

开放存取 开放存取
受限制的访问 ##reader.subscriptionAccessGranted##
受限制的访问 订阅或者付费存取

详细

The paper outlines the current understanding of the pathogenesis of vitiligo, presents in detail the data available in the literature on the impaired (weaker) skin antioxidant protection mechanisms in this pathology, and provides a rationale for the incorporation of antioxidant drugs into treatment regimens for this skin lesion. The authors give their data on the efficiency of this approach.

全文:

受限制的访问

作者简介

V. Lysenko

V.G. Korolenko City Clinical Hospital Fourteen

Email: i89163539842@mail.ru

Ya. Nartsissov

Research Institute of Cytochemistry and Molecular Pharmacology

Email: i89163539842@mail.ru

I. Korsunskaya

Center for Theoretical Problems of Physicochemical Pharmacology, Russian Academy of Sciences, Moscow

Email: i89163539842@mail.ru

参考

  1. Биохимия. Под ред. Е.С. Северина / М.: ГЭОТАР-МЕД. - 2003; с. 508.
  2. Бухарина Е. Гиперпигментация: причины и следствия // Kosmetic international. - 2004; 1: 4-8.
  3. Кошевенко Ю.Н. Кожа человека / Т. I. - М.: Медицина. - 2006; с. 27-9.
  4. Hristakiwa E., Gadjeva V. Oxydative stress in patients with vitiligo. Abstracts of the 10th Congress of the EADV. - Munich, 2001; 234.
  5. Диел К., Коляденко Е.В., Кравченко А.В. Витилиго: современное состояние проблемы. Новые этиологически обоснованные подходы к терапии // Косметология. - Вересень, 2005; 3.
  6. Schallreuter K., Moore J., Wood J. et al. In vivo and in vitro evidence for hydrogen peroxide (H2O2) accumulation in the epidermis of patients with vitiligo and its successful removal by a UVB_activated pseudocatalase // J. Invest. Dermatol. Symp. Proc. - 1999; 4: 91-6.
  7. Schallreuter K., Pittelkow M. Defective calcium uptake in keratinocytes cell cultures from vitiligo skin // Arch. Dermatol. Res.- 1988; 280: 137-9.
  8. Schallreuter K., Pittelkow M., Wood J. EF_hands calcium binding regulates the thioredoxin reductase/thioredoxin electron transfer in human keratinocytes // Biochem. Biophys. Res. Commun. - 1989; 162: 1311-6.
  9. Schallreuter K., Wood J., Berger J. Low catalase levels in the epidermis of patients with vitiligo // J. Invest. Dermatol. - 1991; 97: 1081-5.
  10. Park D., Na G., Lee S. et al. Department of Dermatology, Kyungpook National University School of Medicine, Daegu, Korea, Korean // J. Dermatol. -2003; 41 (5): 592-6.
  11. Prota G. Melanins and Melanogenesis. San-Diego, CA: Academic Press, 1992.
  12. Palumbo et al. Nitrite- and peroxide-dependent oxidation pathways of dopamine: 6-nitrodopamine and 6-hydroxydopamine formation as potential contributory mechanisms of oxidative stress- and nitric oxideinduced neurotoxicity in neuronal degeneration // Chem. Res. Toxicol. - 1999; 12: 1213-22.
  13. Kasraee B. et al. (2006), Retinoic acid synergistically enhances the melanocytotoxic and depigmenting effects of monobenzylether of hydroquinone in black guinea pig skin // Exp. Dermatol. - 2006; 15: 509-14.
  14. Ito S., Kato T., and Fujita K. (1988). Covalent binding of catechols to proteins through the sulfhydryl group // Biochem. Pharmacol. - 1988; 37: 1707-10.
  15. Vitiligo puzzle: the pieces fall in place. Wiete Westerhofl* and Marco d’Ischia Color Foundation, Landsmeer. The Netherlands Department of Organic Chemistry and Biochemistry, University of Naples Federico II, Naples, Italy // Pigment Cell Res. - 20; 345-59. Review article.

补充文件

附件文件
动作
1. JATS XML
##common.cookie##