Analysis of the antimelanogenic activity of zinc and selenium in vitro
- 12.08.2023
- ORIGINAL PAPER
- Verfasst von
- Ana Cleia Cardoso da Silva
- Milena Mariano Ribeiro
- Nayara de Souza da Costa
- Maria Eduarda Andrade Galiciolli
- Júlia Vicentin Souza
- Ana Carolina Irioda
- Cláudia Sirlene Oliveira
- Erschienen in
- Archives of Dermatological Research | Ausgabe 10/2023
Abstract
Melasma is an acquired chronic condition characterized by hyperchromic patches in photo-exposed areas. The search for new compounds for the treatment of melasma without side effects is constant. In this context, the aim of this study was to investigate the in vitro cytotoxic and antimelanogenic effects of the trace elements Zinc (Zn) and Selenium (Se). In this study, we evaluated the effects of 30 µM hydroquinone, this concentration did not alter mitochondrial function (MTT assay), but increased the percentage of necrotic cells and levels of reactive species. Furthermore, it showed no influence on tyrosinase activity and melanin content. Unlike hydroquinone, exposure for 48 h to 100 µM Zn and 1 and 5 µM Se had no significant influence on the analysis of reactive species, as well as on the percentage of necrotic cells. Still, specifically in relation to 100 µM Zn, it decreased the melanin content. Given the above, the trace elements Zn and Se did not show toxicity at the concentrations tested and Zn showed a promising effect, however, the mechanism needs to be better explored in order to contribute to new and updated research in the fight against melasma with a perspective of therapeutic use.
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- Titel
- Analysis of the antimelanogenic activity of zinc and selenium in vitro
- Verfasst von
-
Ana Cleia Cardoso da Silva
Milena Mariano Ribeiro
Nayara de Souza da Costa
Maria Eduarda Andrade Galiciolli
Júlia Vicentin Souza
Ana Carolina Irioda
Cláudia Sirlene Oliveira
- Publikationsdatum
- 12.08.2023
- Verlag
- Springer Berlin Heidelberg
- Erschienen in
-
Archives of Dermatological Research / Ausgabe 10/2023
Print ISSN: 0340-3696
Elektronische ISSN: 1432-069X - DOI
- https://doi.org/10.1007/s00403-023-02695-2
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