摘要
原文 | 英語 |
---|---|
期刊 | Scientific Reports |
卷 | 5 |
DOIs | |
出版狀態 | 已發佈 - 2015 |
指紋
深入研究「Discovery of highly potent tyrosinase inhibitor, T1, with significant anti-melanogenesis ability by zebrafish in vivo assay and computational molecular modeling」主題。共同形成了獨特的指紋。引用此
- APA
- Standard
- Harvard
- Vancouver
- Author
- BIBTEX
- RIS
於: Scientific Reports, 卷 5, 2015.
研究成果: 雜誌貢獻 › 文章 › 同行評審
}
TY - JOUR
T1 - Discovery of highly potent tyrosinase inhibitor, T1, with significant anti-melanogenesis ability by zebrafish in vivo assay and computational molecular modeling
AU - Chen, Wang-Chuan
AU - Tseng, Tien-Sheng
AU - Hsiao, Nai-Wan
AU - Lin, Yun-Lian
AU - Wen, Zhi-Hong
AU - Tsai, Chin-Chuan
AU - Lee, Yu-Ching
AU - Lin, Hui-Hsiung
AU - Tsai, Keng-Chang
N1 - 被引用次數:2 Export Date: 28 March 2016 通訊地址: Tsai, K.-C.; National Research Institute of Chinese Medicine, Ministry of Health and WelfareTaiwan 參考文獻: Seo, S.Y., Sharma, V.K., Sharma, N., Mushroom tyrosinase: Recent prospects (2003) J Agric Food Chem, 51, pp. 2837-2853; Prota, G., Progress in the chemistry of melanins and related metabolites (1988) Med Res Rev, 8, pp. 525-556; Spritz, R.A., Hearing, Jr.V.J., Genetic disorders of pigmentation (1994) Adv Hum Genet, 22, pp. 1-45; Lindquist, N.G., Accumulation of drugs on melanin (1973) Acta Radiol Diagn (Stockh), 325, pp. 1-92; Solano, F., Briganti, S., Picardo, M., Ghanem, G., Hypopigmenting agents: An updated review on biological, chemical and clinical aspects (2006) Pigment Cell Res, 19, pp. 550-571; Briganti, S., Camera, E., Picardo, M., Chemical and instrumental approaches to treat hyperpigmentation (2003) Pigment Cell Res, 16, pp. 101-110; Pawelek, J.M., Korner, A.M., The biosynthesis of mammalian melanin (1982) Am Sci, 70, pp. 136-145; Passi, S., Nazzaro-Porro, M., Molecular basis of substrate and inhibitory specificity of tyrosinase: Phenolic compounds (1981) Br J Dermatol, 104, pp. 659-665; Solomon, E.I., Sundaram, U.M., MacHonkin, T.E., Multicopper Oxidases and Oxygenases (1996) Chem Rev, 96, pp. 2563-2606; Cabanes, J., Garcia-Canovas, F., Lozano, J.A., Garcia-Carmona, F., A kinetic study of the melanization pathway between L-tyrosine and dopachrome (1987) Biochim Biophys Acta, 923, pp. 187-195; Cass, A.E., Hill, H.A., Copper proteins and copper enzymes (1980) Ciba Found Symp, 79, pp. 71-91; Zhang, X., Hu, X., Hou, A., Wang, H., Inhibitory effect of 2, 4, 2', 4'-tetrahydroxy-3-(3-methyl-2-butenyl)-chalcone on tyrosinase activity and melanin biosynthesis (2009) Biol Pharm Bull, 32, pp. 86-90; Park, K.H., Inhibitory effect of ammonium tetrathiotungstate on tyrosinase and its kinetic mechanism (2006) Chem Pharm Bull (Tokyo), 54, pp. 1266-1270; Chen, Q.X., Kubo, I., Kinetics of mushroom tyrosinase inhibition by quercetin (2002) J Agric Food Chem, 50, pp. 4108-4112; Jones, K., Hughes, J., Hong, M., Jia, Q., Orndorff, S., Modulation of melanogenesis by aloesin: A competitive inhibitor of tyrosinase (2002) Pigment Cell Res, 15, pp. 335-340; Kubo, I., Kinst-Hori, I., Flavonols from saffron flower: Tyrosinase inhibitory activity and inhibition mechanism (1999) J Agric Food Chem, 47, pp. 4121-4125; Reish, O., Townsend, D., Berry, S.A., Tsai, M.Y., King, R.A., Tyrosinase inhibition due to interaction of homocyst(e)ine with copper: The mechanism for reversible hypopigmentation in homocystinuria due to cystathionine beta-synthase deficiency (1995) Am J Hum Genet, 57, pp. 127-132; Shimizu, K., Kondo, R., Sakai, K., Inhibition of tyrosinase by flavonoids, stilbenes and related 4-substituted resorcinols: Structure-activity investigations (2000) Planta Med, 66, pp. 11-15; Funasaka, Y., Komoto, M., Ichihashi, M., Depigmenting effect of alpha-tocopheryl ferulate on normal human melanocytes (2000) Pigment Cell Res, 13, pp. 170-174; Mishima, Y., Hatta, S., Ohyama, Y., Inazu, M., Induction of melanogenesis suppression: Cellular pharmacology and mode of differential action (1988) Pigment Cell Res, 1, pp. 367-374; Smith, C.J., O'Hare, K.B., Allen, J.C., Selective cytotoxicity of hydroquinone for melanocyte-derived cells is mediated by tyrosinase activity but independent of melanin content (1988) Pigment Cell Res, 1, pp. 386-389; Maeda, K.F.M., In vitro effectiveness of several whitening cosmetic components in human melanocytes (1991) J. Soc. Cosmet. Chem., 42, pp. 361-368; Arandt, K.A.F.T.B., Topical use of hydroquinine as a depigmenting agent (1965) J. Am. Med. Assoc., 194, pp. 117-119; Fitzpatrick, T.B., Arndt, K.A., El-Mofty, A.M., Pathak, M.A., Hydroquinone and psoralens in the therapy of hypermelanosis and vitiligo (1966) Arch Dermatol, 93, pp. 589-600; Kligman, A.M., Willis, I., A new formula for depigmenting human skin (1975) Arch Dermatol, 111, pp. 40-48; Heilgemeir, G.P., Balda, B.R., [Irreversible toxic depigmentation. Observations following use of hydroquinonemonobenzylether-containing skin bleaching preparations] (1981) MMW Munch Med Wochenschr, 123, pp. 47-48; Breathnach, A.C., Nazzaro-Porro, M., Passi, S., Zina, G., Azelaic acid therapy in disorders of pigmentation (1989) Clin Dermatol, 7, pp. 106-119; Verallo-Rowell, V.M., Verallo, V., Graupe, K., Lopez-Villafuerte, L., Garcialopez, M., Double-blind comparison of azelaic acid and hydroquinone in the treatment of melasma (1989) Acta Derm Venereol Suppl (Stockh), 143, pp. 58-61; Jimbow, K., N-acetyl-4-S-cysteaminylphenol as a new type of depigmenting agent for the melanoderma of patients with melasma (1991) Arch Dermatol, 127, pp. 1528-1534; Funayama, M., Effects of alpha-and beta-arbutin on activity of tyrosinases from mushroom and mouse melanoma (1995) Biosci Biotechnol Biochem, 59, pp. 143-144; Kim, Y.J., Uyama, H., Tyrosinase inhibitors from natural and synthetic sources: Structure, inhibition mechanism and perspective for the future (2005) Cellular and Molecular Life Sciences: CMLS, 62, pp. 1707-1723; Marrero-Ponce, Y., Prediction of tyrosinase inhibition activity using atom-based bilinear indices (2007) ChemMedChem, 2, pp. 449-478; Parvez, S., Survey and mechanism of skin depigmenting and lightening agents (2006) Phytother Res, 20, pp. 921-934; Curto, E.V., Inhibitors of mammalian melanocyte tyrosinase: In vitro comparisons of alkyl esters of gentisic acid with other putative inhibitors (1999) Biochem Pharmacol, 57, pp. 663-672; Hermanns, J.F., Pierard-Franchimont, C., Pierard, G.E., Skin colour assessment in safety testing of cosmetics. An overview (2000) Int J Cosmet Sci, 22, pp. 67-71; Fuyuno, I., Spotlight turns on cosmetics for Asian skin (2004) Nature, 432, p. 938; Shimizu, K., Yasutake, S., Kondo, R., A new stilbene with tyrosinase inhibitory activity from Chlorophora excelsa (2003) Chemical & Pharmaceutical Bulletin, 51, pp. 318-319; Park, S.H., Terrein: A new melanogenesis inhibitor and its mechanism (2004) Cellular and Molecular Life Sciences: CMLS, 61, pp. 2878-2885; Zhong, S., Depigmentation of melanocytes by the treatment of extracts from traditional Chinese herbs: A cell culture assay (2006) Biol Pharm Bull, 29, pp. 1947-1951; Choi, S.Y., (4-Methoxy-benzylidene)-(3-methoxy-phenyl)-amine, a nitrogen analog of stilbene as a potent inhibitor of melanin production (2002) Chem Pharm Bull (Tokyo), 50, pp. 450-452; Baek, S., Inhibitory effect of dalbergioidin isolated from the trunk of Lespedeza cyrtobotrya on melanin biosynthesis (2008) J Microbiol Biotechnol, 18, pp. 874-879; Yanagihara, M., Inhibitory effect of gnetin C, a resveratrol dimer from melinjo (Gnetum gnemon), on tyrosinase activity and melanin biosynthesis (2012) Biol Pharm Bull, 35, pp. 993-996; Roh, J.S., Han, J.Y., Kim, J.H., Hwang, J.K., Inhibitory effects of active compounds isolated from safflower (Carthamus tinctorius L.) seeds for melanogenesis (2004) Biol Pharm Bull, 27, pp. 1976-1978; Kim, J.H., Kim, M.R., Lee, E.S., Lee, C.H., Inhibitory effects of calycosin isolated from the root of Astragalus membranaceus on melanin biosynthesis (2009) Biol Pharm Bull, 32, pp. 264-268; Kong, Y.H., Inhibitory effects of cinnamic acid on melanin biosynthesis in skin (2008) Biol Pharm Bull, 31, pp. 946-948; Cho, Y., Kim, K.H., Shim, J.S., Hwang, J.K., Inhibitory effects of macelignan isolated from Myristica fragrans HOUTT. on melanin biosynthesis (2008) Biol Pharm Bull, 31, pp. 986-989; Lee, M.Y., The melanin synthesis inhibition and radical scavenging activities of compounds isolated from the aerial part of Lespedeza cyrtobotrya (2010) J Microbiol Biotechnol, 20, pp. 988-994; Kim, J.P., Melanocins A, B and C, new melanin synthesis inhibitors produced by Eupenicillium shearii. I. Taxonomy, fermentation, isolation and biological properties (2003) J Antibiot (Tokyo), 56, pp. 993-999; Chen, L.G., Melanogenesis inhibition by gallotannins from Chinese galls in B16 mouse melanoma cells (2009) Biol Pharm Bull, 32, pp. 1447-1452; Kim, S.J., Son, K.H., Chang, H.W., Kang, S.S., Kim, H.P., Tyrosinase inhibitory prenylated flavonoids from Sophora flavescens (2003) Biol Pharm Bull, 26, pp. 1348-1350; Khan, S.B., Tyrosinase-inhibitory long-chain esters from Amberboa ramosa (2005) Chem Pharm Bull (Tokyo), 53, pp. 86-89; Nattapong, S., Omboon, L., A new source of whitening agent from a Thai Mulberry plant and its betulinic acid quantitation (2008) Nat Prod Res, 22, pp. 727-734; Hunt, K.J., Hung, S.K., Ernst, E., Botanical extracts as anti-aging preparations for the skin: A systematic review (2010) Drugs Aging, 27, pp. 973-985; Antignac, E., Nohynek, G.J., Re, T., Clouzeau, J., Toutain, H., Safety of botanical ingredients in personal care products/cosmetics (2011) Food Chem Toxicol, 49, pp. 324-341; Reuter, J., Merfort, I., Schempp, C.M., Botanicals in dermatology: An evidence-based review (2010) Am J Clin Dermatol, 11, pp. 247-267; Baumann, L., Woolery-Lloyd, H., Friedman, A., ''Natural'' ingredients in cosmetic dermatology (2009) J Drugs Dermatol, 8, pp. s5-9; Huang, N.K., Neuroprotective principles from Gastrodia elata (2007) J Nat Prod, 70, pp. 571-574; Kang, T.C., Effect of vigabatrin on glutamate dehydrogenase in the hippocampus of seizure prone gerbils (2003) Neurosci Lett, 340, pp. 115-118; Kim, H.J., Moon, K.D., Oh, S.Y., Kim, S.P., Lee, S.R., Ether fraction of methanol extracts of Gastrodia elata, a traditional medicinal herb, protects against kainic acid-induced neuronal damage in the mouse hippocampus (2001) Neurosci Lett, 314, pp. 65-68; Kim, H.J., Lee, S.R., Moon, K.D., Ether fraction of methanol extracts of Gastrodia elata, medicinal herb protects against neuronal cell damage after transient global ischemia in gerbils (2003) Phytother Res, 17, pp. 909-912; Huang, N.K., Lin, Y.L., Cheng, J.J., Lai, W.L., Gastrodia elata prevents rat pheochromocytoma cells from serum-deprived apoptosis: The role of the MAPK family (2004) Life Sci, 75, pp. 1649-1657; Hsieh, C.L., Anticonvulsive and free radical scavenging activities of Gastrodia elata Bl. in kainic acid-treated rats (2001) Am J Chin Med, 29, pp. 331-341; Hsieh, C.L., Anticonvulsive and free radical scavenging activities of vanillyl alcohol in ferric chloride-induced epileptic seizures in Sprague-Dawley rats (2000) Life Sci, 67, pp. 1185-1195; Takahashi, M., Takara, K., Toyozato, T., Wada, K., A novel bioactive chalcone of Morus australis inhibits tyrosinase activity and melanin biosynthesis in B16 melanoma cells (2012) J Oleo Sci, 61, pp. 585-592; Kumar, K.J., Yang, J.C., Chu, F.H., Chang, S.T., Wang, S.Y., Lucidone, a novel melanin inhibitor from the fruit of Lindera erythrocarpa Makino (2010) Phytotherapy Research: PTR, 24, pp. 1158-1165; Kramer, H.J., Malassezin, a novel agonist of the aryl hydrocarbon receptor from the yeast Malassezia furfur, induces apoptosis in primary human melanocytes (2005) Chembiochem, 6, pp. 860-865; Wang, K.H., Cosmetic applications of selected traditional Chinese herbal medicines (2006) J Ethnopharmacol, 106, pp. 353-359; Choi, T.Y., Zebrafish as a new model for phenotype-based screening of melanogenic regulatory compounds (2007) Pigment Cell Research/sponsored by the European Society for Pigment Cell Research and the International Pigment Cell Society, 20, pp. 120-127; Wang, H.M., Chen, C.Y., Wen, Z.H., Identifying melanogenesis inhibitors from Cinnamomum subavenium with in vitro and in vivo screening systems by targeting the human tyrosinase (2011) Exp Dermatol, 20, pp. 242-248; Chen, Q.X., Ke, L.N., Song, K.K., Huang, H., Liu, X.D., Inhibitory effects of hexylresorcinol and dodecylresorcinol on mushroom (Agaricus bisporus) tyrosinase (2004) Protein J, 23, pp. 135-141; Ghani, U., Ullah, N., New potent inhibitors of tyrosinase: Novel clues to binding of 1, 3, 4-thiadiazole-2(3H)-thiones, 1, 3, 4-oxadiazole-2(3H)-thiones, 4-amino-1, 2, 4-triazole-5(4H)-thiones, and substituted hydrazides to the dicopper active site (2010) Bioorganic & Medicinal Chemistry, 18, pp. 4042-4048; Veldman, M.B., Lin, S., Zebrafish as a developmental model organism for pediatric research (2008) Pediatr Res, 64, pp. 470-476; Shin, N.H., Oxyresveratrol as the potent inhibitor on dopa oxidase activity of mushroom tyrosinase (1998) Biochem Biophys Res Commun, 243, pp. 801-803; Lee, Y.C., Phage Display-Mediated Discovery of Novel Tyrosinase-Targeting Tetrapeptide Inhibitors Reveals the Significance of N-Terminal Preference of Cysteine Residues and Their Functional Sulfur Atom (2014) Molecular Pharmacology; Hsiao, N.W., Serendipitous discovery of short peptides from natural products as tyrosinase inhibitors (2014) Journal of Chemical Information and Modeling, 54, pp. 3099-3111
PY - 2015
Y1 - 2015
N2 - Tyrosinase is involved in melanin biosynthesis and the abnormal accumulation of melanin pigments leading to hyperpigmentation disorders that can be treated with depigmenting agents. A natural product T1, bis(4-hydroxybenzyl)sulfide, isolated from the Chinese herbal plant, Gastrodia elata, is a strong competitive inhibitor against mushroom tyrosinase (IC 50 = 0.53 μM, Ki = 58 ± 6 nM), outperforms than kojic acid. The cell viability and melanin quantification assay demonstrate that 50 μM of T1 apparently attenuates 20% melanin content of human normal melanocytes without significant cell toxicity. Moreover, the zebrafish in vivo assay reveals that T1 effectively reduces melanogenesis with no adverse side effects. The acute oral toxicity study evidently confirms that T1 molecule is free of discernable cytotoxicity in mice. Furthermore, the molecular modeling demonstrates that the sulfur atom of T1 coordinating with the copper ions in the active site of tyrosinase is essential for mushroom tyrosinase inhibition and the ability of diminishing the human melanin synthesis. These results evident that T1 isolated from Gastrodia elata is a promising candidate in developing pharmacological and cosmetic agents of great potency in skin-whitening.
AB - Tyrosinase is involved in melanin biosynthesis and the abnormal accumulation of melanin pigments leading to hyperpigmentation disorders that can be treated with depigmenting agents. A natural product T1, bis(4-hydroxybenzyl)sulfide, isolated from the Chinese herbal plant, Gastrodia elata, is a strong competitive inhibitor against mushroom tyrosinase (IC 50 = 0.53 μM, Ki = 58 ± 6 nM), outperforms than kojic acid. The cell viability and melanin quantification assay demonstrate that 50 μM of T1 apparently attenuates 20% melanin content of human normal melanocytes without significant cell toxicity. Moreover, the zebrafish in vivo assay reveals that T1 effectively reduces melanogenesis with no adverse side effects. The acute oral toxicity study evidently confirms that T1 molecule is free of discernable cytotoxicity in mice. Furthermore, the molecular modeling demonstrates that the sulfur atom of T1 coordinating with the copper ions in the active site of tyrosinase is essential for mushroom tyrosinase inhibition and the ability of diminishing the human melanin synthesis. These results evident that T1 isolated from Gastrodia elata is a promising candidate in developing pharmacological and cosmetic agents of great potency in skin-whitening.
U2 - 10.1038/srep07995
DO - 10.1038/srep07995
M3 - Article
SN - 2045-2322
VL - 5
JO - Scientific Reports
JF - Scientific Reports
ER -