Literature DB >> 9579550

Supranuclear melanin caps reduce ultraviolet induced DNA photoproducts in human epidermis.

N Kobayashi1, A Nakagawa, T Muramatsu, Y Yamashina, T Shirai, M W Hashimoto, Y Ishigaki, T Ohnishi, T Mori.   

Abstract

Melanin can form supranuclear caps in human epidermis, suggesting that intracellular melanin reduces ultraviolet transmission to underlying cell nuclei and inhibits the formation of ultraviolet induced DNA photoproducts. The purpose of this study was to determine the photoprotective effect of epidermal melanin. We irradiated normal human skin explants with ultraviolet B and determined the formation of cyclobutane pyrimidine dimers and (6-4)photoproducts in individual epidermal cells by indirect immunofluorescence and by laser cytometry using monoclonal antibodies specific for cyclobutane dimers or for (6-4)photoproducts. We found that epidermal cells with supranuclear melanin caps had significantly less DNA photoproducts (both types) than epidermal cells without supranuclear melanin caps. Moreover, the protection factor against both types of photolesions correlated with melanin concentration in epidermal cells. These results indicate that melanin reduces ultraviolet induced DNA photoproducts in human epidermis in a concentration dependent manner.

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Year:  1998        PMID: 9579550     DOI: 10.1046/j.1523-1747.1998.00178.x

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


  47 in total

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Review 3.  Research Techniques Made Simple: Cell Biology Methods for the Analysis of Pigmentation.

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4.  Epidermal permeability barrier recovery is delayed in vitiligo-involved sites.

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5.  FOXQ1 controls the induced differentiation of melanocytic cells.

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7.  Non-invasive diffuse reflectance measurements of cutaneous melanin content can predict human sensitivity to ultraviolet radiation.

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8.  Melanin acts as a potent UVB photosensitizer to cause an atypical mode of cell death in murine skin.

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9.  UV light phototransduction activates transient receptor potential A1 ion channels in human melanocytes.

Authors:  Nicholas W Bellono; Laura G Kammel; Anita L Zimmerman; Elena Oancea
Journal:  Proc Natl Acad Sci U S A       Date:  2013-01-23       Impact factor: 11.205

10.  Oxidative stress-induced calreticulin expression and translocation: new insights into the destruction of melanocytes.

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