JOURNAL OF COSMETIC SCIENCE 52 (11) T. Todokora, N. Kobayashi, B. Z. Zmudzka, S. Ito, K. Wakamtsu, Y. Yamaguchi, K. S. Korossy, S. A. Miller, J. Z. Beer, and V. J. Hearing, UV-induced DNA damage and melanin content in human skin differing in racial/ethnic origin, FASEB J., 17, 1177–1179 (2003). (12) Y. Yamaguchi, M. Brenner, and V. J. Hearing, The regulation of skin pigmentation, J. Biol. Chem., 282(38), 27557–27561 (2007). (13) M. S. Eller and B. A. Gilchrest, Tanning as part of the eukaryotic SOS response, Pigment Cell. Res., 13, 94–97 (2000). (14) B. A. Gilchrest, H. Y. Park, M. S. Eller, and M. Yaar, Mechanisms of ultraviolet induced pigmentation, Photochem. Photobiol., 63, 1–10 (1996). (15) S. G. Coelho, Y. Zhou, H. F. Bushar, S. A. Miller, B. Z. Zmudzka, V. J. Hearing, and J. Z. Beer, Long- lasting pigmentation of human skin, a new look at an overlooked response to UV, Pigment Cell Melanoma Res., 22, 238–241 (2009). (16) F. Soalno, S. Briganti, M. Picardo, and G. Ghanem, Hypopigmenting agents: An updated review on biological, chemical and clinical aspects, Pigment Cell. Res., 19, 550–571 (2006). (17) P. S. Kang, H. S. M. Chung, C. Cho, M. C. Hong, M. K. Shin, and H. Bae, Survey and mechanism of skin depigmenting and lightening agents, Phytother. Res., 20, 921–934 (2006). (18) H. S. Raper, The anaerobic oxidases, Physiol. Rev., 8, 245–282 (1928). (19) H. S. Mason, The chemistry of melanin. III. Mechanism of the oxidation of trihydroxy phenylalanine by tyrosinase, J. Biol. Chem., 172, 83–99 (1948). (20) T. B. Fitzpatrick, E. Calkins, and W. H. Summerson, Mammalian tyrosinase—Preparation and properties, J. Biol. Chem., 178, 185–189 (1949). (21) A. Palumbo, M. d’Ischia, and G. Misuraca, Mechanism of inhibition of melanogenesis by hydroqui- none, Biochim. Biophys. Acta, 1073, 85–90 (1991). (22) O. H. Mills. Jr. and A. M. Kligman, Further experience with a topical cream for depigmenting human skin, J. Soc. Cosmet. Chem, 29, 147–154 (1978). (23) J. Yukitake, H. Otake, S. Inoue, K. Wakamatsu, C. Olivares, F. Solano, K. Hasegawa, and S. Ito, Syn- thesis and selective in vitro anti-melanoma effect of enantiomeric (alpha)-methyl- and (alpha)-ethyl -4-S-cysteaminyl phenol, Melanoma Res., 13, 603–609 (2003). (24) T. Yamamura, J. Onishi, and T. Nishiyama, Anti-melanogenic activity of hydrocoumarins in cultured human melanocytes by stimulating intra cellular glutathione synthesis, Arch. Dermatol. Res., 294, 349–354 (2002). (25) S. Khatib, O. Nerya, R. Musa, M. Shmuel, S. Tamir, and J. Vaya, Chalcones as potent inhibitors: The importance of a 2,4- substituted resorcinol moiety, Bioorg. Med. Chem., 13, 433–441 (2005). (26) O. Nerya, R. Musa, S. Khatib, S. Tamir, and J. Vaya, Chalcones as potent tyrosinase inhibitors: The effect of hydroxyl positions and numbers, Phytochemistry, 65, 1389–1395 (2004). (27) Y. M. Kim, J. Yun, C. K. Lee, H. Lee, K. R. Min, and Y. Kim, Oxyresveratrol and hydroxy stillbene compounds, J. Biol. Chem, 277, 16340–16344 (2002). (28) K. I. Nihei, Y. Yamagiwa, T. Kamikawab, and I. Kubo, 2-Hydroxy-4-isopropylbenzaldehyde, a potent partial tyrosinase inhibitor, Bioorg. Med. Lett, 14, 681–683 (2004). (29) I. Kubo and I. Kinst-Hori, 2-Hydroxy-4-methoxy benzaldehyde: A potent tyrosinase inhibitor from African medicinal plants, Planta Med., 65, 19–22 (1999). (30) Y. J. Kim, J. K. No, J. H. Lee., and H. Y. Chung, 4,4’-Dihydroxybiphenyl as a new potent tyrosinase inhibitor, Biol. Pharm. Bull., 28, 323–327 (2005). (31) K. Nakamura, M. Yoshida, H. Uchiwa, Y. Kawa, and M. Mizoguchi, Down regulation of melanin syn- thesis by a diphenyl derivative and its mechanism, Pigment Cell. Res., 16, 494–500 (2003). (32) T. S. Chang, H. Y. Ding, and H. C. Lin, Identifying 6,7,4’-trihydroxyisofl avone as a potent tyrosinase inhibitor, Biosci. Biotech. Biochem., 69, 1999–2001 (2005). (33) D. Kim, J. Park, J. Kim, C. Han, J. Yoon, N. Kim, J. Seo, and C. Lee, Flavanoids as mushroom tyrosi- nase inhibitors: A fl uorescent quenching study, J. Agric. Food. Chem, 54, 935–941 (2006). (34) V. M. Verallo-Rowell, V. Verallo, K. Graupe, L. Lopez-Villafuerte, and M. Garcia-Lopez, Double-blind comparison of azelaic acid and hydroquinone in the treatment of melasma., Acta Derm. Venereol. Suppl. (Stockh.), 143, 58–61 (1989). (35) S. Briganti, E. Camera, and M. Picardo, Chemical and instrumental approaches to treat hyperpigmenta- tion, Pigment Cell. Res., 16, 101–110 (2003). (36) A. Palumbo, M. d’Ischia, and G. Misuraca, Mechanism of inhibition of melanogenesis by hydroqui- none, Biochim. Biophys. Acta, 1073, 85–90 (1991). (37) M. D. Njoo, W. Westerhof, J. D. Bos, and P. M. Bossuyt, The development of guidelines for vitiligo, Arch. Dermatol., 135, 1514–1521 (1999).
SKIN-LIGHTENING COSMETIC INGREDIENTS 53 (38) P. A. Riley, Mechanism of pigment cell toxicity produced by hydroxyanisole, J. Pathol., 101, 163–169 (1970). (39) S. Naish-Byfi eld, C. J. Cooksey, A. M. Later, C. I. Johnson, and P. A. Riley, In vitro assessment of the structure activity relationship of tyrosinase dependent cytotoxicity of a series of substituted phenols, Melanoma Res., 1, 273–287 (1991). (40) K. Maeda and M. Fukuda, Arbutin: Mechanism of its depigmenting action in human melanocyte culture, J. Pharmacol. Exp. Ther., 276, 765–769 (1996). (41) A. K. Chakraborthy, Y. Funassaka, M. Komoto, and M. Ichihashi, Effect of arbutin on melanogenetic proteins in human melanocytes, Pigment Cell Res., 11, 206–212 (1998). (42) J. Cabanes, S. Chazzarra, and F. Garcia-Carmona, Kojic acid, a cosmetic skin whitening agent, is a slow- binding inhibitor of catecholase activity of tyrosinase, J. Pharm. Pharmacol., 46, 982–985 (1994). (43) M. Nakagawa and K. Kawai, Contact allergy to kojic acid in skin care products, Contact Dermatitis, 32, 9–13 (1995). (44) S. H. Lee, S. Y. Choi, H. Kin, J. S. Hwang, B. G. Lee, and J. J. Gao, Mulberoside F isolated from the leaves of Morus alba inhibits melanin biosythesis, Biol. Pharm. Bull., 25, 1045–1048 (2002). (45) K. Jones, J. Hughes, M. Hong, Q. Jia, and S. Orndorff, Modulation of melanogenesis by aloesin: A competitive inhibitor of tyrosinase, Pigment Cell Res., 15, 335–340 (2002). (46) I. Kubo and K. Hori, Flavanols from saffron fl ower: Tyrosinase inhibitory activity and inhibition mech- anism, J. Agric. Food Chem., 47, 4121–4125 (1999). (47) I. Parejo, F. Viladomat, J. Bastida, and C. Codina, Variation of the arbutin content in different wild populations of Arctostaphylos uva-ursi in Catalonia, Spain Journal of Herbs, Spices & Medicinal Plants, 9, 329–333 (2002). (48) B. Fu, H. Li, X. Wang, F. S. Lee, and S. Cui, Isolation and identifi cation of fl avonoids in licorice and a study of their inhibitory effects on tyrosinase, J. Agric. Food Chem., 53, 7408–7414 (2005). (49) J. K. No, D. Y. Soung, and Y. J. Kim, Inhibition of tyrosinase by green tea components, Life Sci., 65, 241–245 (1999). (50) A. Adhikari, H. P. Devkota, A. Takano, K. Masuda, T. Nakane, P. Basnet, N. Skalsko, and N. Basnet, Screening of Nepalese crude drugs traditionally used to treat hyperpigmentation: In vitro tyrosinase inhibition, Int. J. Cosmet. Sci., 30, 353–360 (2008). (51) C. Zhang, L. Tao, X. Tao, and X. Su, Tyrosinase inhibitory effects and inhibition mechanism of nobile- tin and hesperidin from citrus peel crude extracts, J. Enz. Inhib. Medicinal Chem., 22, 83–90 (2007). (52) M. Yoshimura, Y. Watanabe, K. Kasai, J. Yamakoshi, and T. Koga, Inhibitory effect of an ellagic acid rich pomegranate extract on tyrosinase activity and ultraviolet induced pigmentation, Biosci. Biotechmol. Biochem., 69, 2368–2373 (2005). (53) T. Shoji, S. Masumoto, N. Moriichi, M. Kobori, T. Kanda, H. Shinmoto, et al. Procyanidin trimers to pentamers fractionated from apple inhibit melangenesis in B16 mouse melanoma cells, J. Agric. Food. Chem., 53, 6105–6111 (2005). (54) H. S. Lee, Tyrosinase inhibitors of Pulsatilla cernua root derived materials, J. Agric. Food Chem, 50, 1400–1403 (2002). (55) I. Kubo and I. Kint-Hori, Tyrosinase inhibitors from cumin, J. Agric Food Chem., 46, 5338–5341 (1988). (56) S. E. Lee, M. O. Kim, S. G. Lee, Y. J. Ahn, and H. S. Lee, Inhibitory effects of Cinnamonum cassia bark derived materials on mushroom tyrosinase, Food Sci. Biotechnol., 9, 330–333 (2000). (57) P. Tengamnuay, K. Pengrungruangwong, I. Pheansri, and K. Likhitwitayawuid, Artocarpus lakoocha heartwood extract as a novel cosmetic ingredient: Evaluation of the in vitro anti-tyrosinase and in vivo skin whitening activities, Int. J. Cosmet. Sci., 28, 269–276 (2006). (58) A. B. Durkee, F. B. Johnston, P. A. Thivierge, and P. A. Poaps, Arbutin and a related glucoside in immature pear fruit, J. Food Sci., 33, 461–463 (1968). (59) H. Shimogaki, Y. Tanaka, H. Yamai, and M. Masuda, In vitro and in vivo evaluation of ellagic acid on melanogenesis inhibition, Int. J. Cosmet. Sci., 22, 291–303 (2000). (60) K. T. Lee, K. S. Lee, J. H. Jeong, B. K. Jo, M. Y. Heo, and H. P. Kim, Inhibitory effects of Ramulus mori extracts on melanogenesis, J. Cosmet. Sci., 54, 133–142 (2003). (61) J. Y. Lim, K. Ishiguro, and I. Kubo, Tyrosinase inhibitory effects of p-coumaric acid from ginseng leaves, Phytother. Res., 13, 371–375 (1999). (62) T. Hanamura, E. Uchida, and H. Aoki, Skin lightening effect of a polyphenol extract from Acreola (Malphigia emarginata DC) fruit on UV-induced pigmentation, Biosci. Biotechnol. Biochem., 72, 3211–3218 (2008).
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