Literature DB >> 12535195

Fas and c-kit are involved in the control of hair follicle melanocyte apoptosis and migration in chemotherapy-induced hair loss.

Andrei A Sharov1, Guang-Zhi Li, Tatyana N Palkina, Tatyana Y Sharova, Barbara A Gilchrest, Vladimir A Botchkarev.   

Abstract

Chemotherapy alters the structure and function of hair follicle melanocytes. Molecular mechanisms controlling melanocyte responses during chemotherapy-induced hair loss, however, remain largely unknown. Using immunohistology and multicolor confocal microscopy, we show here that cyclophosphamide administration to C57BL/6 mice alters the activity and fate of hair follicle melanocytes. After 24-48 h, hair bulb melanocytes expressing Fas undergo apoptosis. The number of apoptotic follicular melanocytes is significantly reduced (p<0.01) in cyclophosphamide-treated Fas knockout mice compared to wild-type controls, suggesting that Fas signaling contributes to chemotherapy-induced melanocyte death. After 3-5 d, surviving hair bulb melanocytes express c-kit receptor, proliferate, and appear to migrate up the outer root sheath. Tyrosinase-positive and melanogenically active cells then appear in the epidermis. By Western blotting and immunohistochemistry, expression levels of the c-kit ligand, stem cell factor, in skin and epidermis are strongly increased after cyclophosphamide treatment. Cyclophosphamide-induced migration of the hair follicle melanocytes into epidermis is completely abrogated by administration of c-kit neutralizing antibody. These data suggest that chemotherapy induces a complex response in the hair follicle melanocytes, which includes apoptosis, proliferation, and migration. Pharmacologic manipulation of Fas and c-kit signaling pathways might be useful for the correction of skin hyperpigmentation as a side-effect of chemotherapy.

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Year:  2003        PMID: 12535195     DOI: 10.1046/j.1523-1747.2003.12022.x

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


  11 in total

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Authors:  Tatyana Y Sharova; Krzysztof Poterlowicz; Natalia V Botchkareva; Nikita A Kondratiev; Ahmar Aziz; Jeffrey H Spiegel; Vladimir A Botchkarev; Andrey A Sharov
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Journal:  J Invest Dermatol       Date:  2017-06-06       Impact factor: 8.551

10.  Kit ligand promotes first polar body extrusion of mouse preovulatory oocytes.

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