Literature DB >> 6327830

Radical production during tyrosinase reaction, dopa-melanin formation, and photoirradiation of dopa-melanin.

Y Tomita, A Hariu, C Kato, M Seiji.   

Abstract

It has been suggested that superoxide anion (O2-) may be produced during eumelanin formation and during the photoirradiation of eumelanin , but no direct evidence for this has yet been reported (although O2- production during photoirradiation of pheomelanin has been shown). In this report, the production of O2- was investigated during the formation and photoirradiation of dopa-melanin, a synthetic eumelanin . It was found that cytochrome c was reduced during the tyrosinase reaction and dopa-melanin formation in vitro; this reduction could not be inhibited by superoxide dismutase (SOD). When dopa-melanin was irradiated by UV radiation or by visible light, high nitroblue tetrazolium (NBT) reduction was observed; this reduction was proportional to the light energy and the amount of dopa-melanin. NBT reduction by visible light could be slightly inhibited by SOD, but a 12% decrease of NBT reduction by UV radiation could be shown with the addition of SOD. These observations indicate that some radicals were produced during the tyrosinase reaction and dopa-melanin formation. Further, when dopa-melanin was irradiated, radicals were also produced, some of which were thought to consist of O2-, but others were unknown.

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Year:  1984        PMID: 6327830     DOI: 10.1111/1523-1747.ep12261311

Source DB:  PubMed          Journal:  J Invest Dermatol        ISSN: 0022-202X            Impact factor:   8.551


  6 in total

1.  Oxidative activity associated with a network of dendritic cells in the human epidermis.

Authors:  P W Ledger; B L Klarich; M Cormier
Journal:  Arch Dermatol Res       Date:  1991       Impact factor: 3.017

2.  Generation mechanism of radical species by tyrosine-tyrosinase reaction.

Authors:  Mika Tada; Masahiro Kohno; Shigenobu Kasai; Yoshimi Niwano
Journal:  J Clin Biochem Nutr       Date:  2010-08-20       Impact factor: 3.114

3.  5G Electromagnetic Radiation Attenuates Skin Melanogenesis In Vitro by Suppressing ROS Generation.

Authors:  Kyuri Kim; Young Seung Lee; Nam Kim; Hyung-Do Choi; Kyung-Min Lim
Journal:  Antioxidants (Basel)       Date:  2022-07-26

Review 4.  Melanocytes as instigators and victims of oxidative stress.

Authors:  Laurence Denat; Ana L Kadekaro; Laurent Marrot; Sancy A Leachman; Zalfa A Abdel-Malek
Journal:  J Invest Dermatol       Date:  2014-02-27       Impact factor: 8.551

5.  Aqueous Extract of Chrysanthemum morifolium ( Jú Huā) Enhances the Antimelanogenic and Antioxidative Activities of the Mixture of Soy Peptide and Collagen Peptide.

Authors:  Min Gui; Jun Du; Jianmin Guo; Baiquan Xiao; Wei Yang; Minjie Li
Journal:  J Tradit Complement Med       Date:  2014-07

6.  GSK-3β-Targeting Fisetin Promotes Melanogenesis in B16F10 Melanoma Cells and Zebrafish Larvae through β-Catenin Activation.

Authors:  Ilandarage Menu Neelaka Molagoda; Wisurumuni Arachchilage Hasitha Maduranga Karunarathne; Sang Rul Park; Yung Hyun Choi; Eui Kyun Park; Cheng-Yun Jin; Haiyang Yu; Wol Soon Jo; Kyoung Tae Lee; Gi-Young Kim
Journal:  Int J Mol Sci       Date:  2020-01-02       Impact factor: 5.923

  6 in total

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