154 JOURNAL OF COSMETIC SCIENCE (5) M. M. Hutter, R. E. Sievers, V. Barbosa, and C. L. Wolfe, Heat-shock protein induction in rat hearts: A direct correlation between the amount of heat-shock protein induced and the degree of myocardial protection, Circulation, 89, 355-360 (1994). (6) M. M. Simon, A. Reikerstorfer, A. Schwarz, C. Krone, T. A. Luger, M. Jaattela, and T. Schwarz, Heat shock protein 70 overexpression affects the response to ultraviolet light in murine fibroblasts: Evidence for increased cell viability and suppression of cytokine release,]. Clin. Invest., 95, 926-933 (1995). (7) M. T. Kiriyama, M. Oka, M. Takehana, and S. Kobayashi, Expression of a small heat shock protein 27 (HSP27) in mouse skin tumors induced by DVB-irradiation, Biol. Pharm. Bull., 24, 197-200 (2001). (8) S. I. Rattan, Repeated mild heat shock delays aging in cultured human skin fibroblasts, Biochem. Mol. Biol. Int., 45, 753-759 (1998). (9) G. C. Li, Induction of thermotolerance and enhanced heat shock protein synthesis in Chinese hamster fibroblasts by sodium arsenite and ethanol,]. Cell. Physiol., 115, 116-122 (1985). (10) G. C. Li and G. M. Hahn, Ethanol-induced tolerance to heat and to adriamycin, Nature, 274, 699-701 (1987). (11) G. C. Li and J. Y. Mak, Induction of heat shock protein synthesis in murine tumors during the development of thermotolerance, Cancer Res., 45, 3816-3824 (1985). (12) B. S. Palla, A. M. Healy, E. P. Amento, and S. M. Krane, 1,25-Dihydroxyvitamin D3 maintains adherence of human monocytes and protects them from thermal injury,]. Clin. Invest., 77, 1332-1339 (1986). (13) S. M. Krane, B. S. Palla, and J. V. Bonventre, 1,25-Dihydroxyvitamin D3 increases the toxicity of hydrogen peroxide: The role of calcium and heat shock, Exp. Gerontol., 25, 239-245 (1990). (14) S. Pillai, D. D. Bikle, and P. M. Elias, 1,25-Dihydroxyvitamin D production and receptor binding in human keratinocytes varies with differentiation,]. Biol. Chem., 263, 5390-5395 (1988). (15) K. Matsumoto, Y. Azuma, M. Kiyoki, H. Okumura, K. Hashimoto, and K. Yoshikawa, Involvement of endogenously produced 1,25-dihydroxyvitamin D-3 in the growth and differentiation of human keratinocytes, Biochim. Biophys. Acta, 1092, 311-318 (1991). (16) M. Sebag, W. Gulliver, and R. Kremer, Effect of 1,25 dihydroxyvitamin D3 and calcium on growth and differentiation and on c-fos and p53 gene expression in normal human keratinocytes,]. Invest. Dermatol., 103, 323-329 (1994). (1 7) Y. Kitano, N. Ikeda, and M. Okano, Suppression of proliferation of human epidermal keratinocytes by 1,25-dihydroxyvitamin D3. Analysis of its effect on psoriatic lesions and of its mechanism using human keratinocytes in culture, Eur.]. Clin. Invest., 21, 53-58 (1991). (18) 0. Garach-Jehoshua, A. Ravid, U. A. Liberman, and R. Koren, 1,25-Dihydroxyvitamin D3 increases the growth-promoting activity of autocrine epidermal growth factor receptor ligands in keratinocytes, Endocrinology, 140, 713-721 (1999). (19) W. B. Bollag, J. Ducote, and C. S. Harmon, Biphasic effect of 1,25-dihydroxyvitamin D3 on primary mouse epidermal keratinocyte proliferation,]. Cell. Physiol., 163, 248-256 (1995). (20) J. Lee and J. I. Youn, The photoprotective effect of 1,25-dihydroxyvitamin D3 on ultraviolet light B-induced damage in keratinocytes and its mechanism of action,]. Dermatol. Sci., 18, 11-18 (1998). (21) K. Hanada, D. Sawamura, H. Nakano, and I. Hashimoto, Possible role of 1,25-dihydroxyvitamin D3-induced metallothionein in photoprotection against UVB injury in mouse skin and cultured rat keratinocytes,j. Dermatol. Sci., 9, 203-208 (1995). (22) S. Ray, R. Ray, and M. F. Bolick, Metabolism of 3H-1 alpha, 25-dihydroxyvitamin D3 in cultured human keratinocytes,j. Cell. Biochem., 59, 117-122 (1995). (23) D. D. Bikle, M. K. Nemanic, E. Gee, and P. Elias, 1,25-Dihydroxyvitamin D3 production by human keratinocytes: Kinetics and regulation,]. Clin. Invest., 78, 557-566 (1986). (24) B. Lehmann, T. Genehr, P. Knuschke, J. Pietzsch, and M. Meurer, DVB-induced conversion of 7-dehydrocholesterol to 1 alpha, 25-dihydroxyvitamin D3 in an in vitro human skin equivalent model.,]. Invest. Dermatol., 117, 1179-1185 (2001). (25) S. Brunet and P. U. Giacomoni, Heat shock mRNA in mouse epidermis after UV irradiation, Mutat. Res., 219, 217-224 (1989). (26) F. Trautinger, I. Kindas-Mugge, R. M. Knobler, and H. Honigsmann, Stress proteins in the cellular response to ultraviolet radiation,]. Photochem. Photobiol. B, 35, 141-148 (1996). (27) E. V. Maytin, J. M. Wimberly, and K. S. Kane, Heat shock modulates DVB-induced cell death in human epidermal keratinocytes: Evidence for a hyperthermia-inducible protective response,]. Invest. Dermatol., 103, 547-553 (1994).
NHEK AND INCREASED HSPs 155 (28) F. Trautinger, I. Kindas-Mugge, B. Barlan, P. Neuner, and R. M. Knobler, 72-kD heat shock protein is a mediator of resistance to ultraviolet B light,]. Invest. Dermatol., 105, 160-162 (1995). (29) F. Trautinger, R. M. Knobler, H. Honigsmann, W. Mayr, and I. Kindas-Mugge, Increased expression of the 72-kDa heat shock protein and reduced sunburn cell formation in human skin after local hyperthermia,]. Invest. Dermatol., 107, 442-443 (1996). (30) S. B. Kwon, C. Young, D.S. Kim, H. 0. Choi, K. H. Kim,]. H. Chung, H. C. Eun, K. C. Park, C. K. Oh, and J. S. Seo, Impaired repair ability of hsp 70.1 KO mouse after UVB irradiation,]. Dermatol. Sci., 28, 144-151 (2002). (31) C. Bayerl and E. G. Jung, Microinjection of an antibody against HSP 72 in keratinocytes to study acute UV injury, Exp. Dermatol., 8, 247-253 (1999). (32) M. Karasawa, J. Hosoi, H. Hashiba, K. Nose, C. Tohyama, E. Abe, T. Suda, and T. Kuroki, Regulation of metallionein gene expression by 1 alpha, 25-dihydroxyvitamin D3 in cultured cells and in mice, Proc. Natl. Acad. Sci., 84, 8810-8813 (1987). (33) M. Garmym, T. Mammone, A. Pupe, D. Gan, L. Declercq, and D. Maes, Human keratinocytes respond to osmotic stress by p38 map kinase regulated induction of HSP70 and HSP27,]. Invest. Dermatol., 117, 1290-1295 (2001).
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