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題名:合成新穎麴酸希夫鹼衍生物及其作為酪胺酸酶抑制劑之生物評估
書刊名:弘光學報
作者:吳鈺慈廖若湘楊哿忻陳明仁
作者(外文):Wu, Yu-tzuLiao, Ruo-xiangYang, Ke-xinChen, Ming-jen
出版日期:2022
卷期:90
頁次:頁65-74
主題關鍵詞:麴酸希夫鹼酪胺酸酶抑制劑美白Kojic acidTyrosinase inhibitorSchiff baseWhitening
原始連結:連回原系統網址new window
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期刊論文
1.Solano, F.(2018)。On the metal cofactor in the tyrosinase family。International Journal of Molecular Sciences,19(2)。  new window
2.Park, J.-H.、Sung, N.-D.(2011)。3D-QSAR Analysis and molecular docking of thiosemicarbazone analogues as a potent tyrosinase inhibitor。Bulletin of the Korean Chemical Society,32(4)。  new window
3.Battaini, G.、Monzani, E.、Casella, L.、Santagostini, L.、Pagliarin, R.(2000)。Inhibition of the catecholase activity of biomimetic dinuclear copper complexes by kojic acid。Journal of Biological Inorganic Chemistry,5(2)。  new window
4.Xie, W.、Zhang, J.、Ma, X.、Yang, W.、Zhou, Y.、Tang, X.、Zou, Y.、Li, H.、He, J.、Xie, S.、Zhao, Y.、Liu, F.(2015)。Synthesis and biological evaluation of kojic acid derivatives containing 1,2,4-triazole as potent tyrosinase inhibitors。Chemical Biological & Drug Design,86(5),1087-1092。  new window
5.Yu, F.、Jia, Y.-L.、Wang, H.-F.、Zheng, J.、Cui, Y.、Fang, X.-Y.、Zhang, L.-M.、Chen, Q.-X.(2015)。Synthesis of triazole schiff's base derivatives and their inhibitory kinetics on tyrosinase activity。PLoS ONE,10(9)。  new window
6.Yi, W.、Cao, R.-H.、Chen, Z.-Y.、Yu, L.、Ma, L.、Song, H.-C.(2009)。Design, synthesis and biological evaluation of hydroxy- or methoxy-substituted phenylmethylenethiosemicarbazones as tyrosinase inhibitors。Chemical and Pharmaceutical Bulletin,57(11),1273-1277。  new window
7.Karama, M.(2009)。Chelation of Cu(II), Zn(II), and Fe(II) by Tannin Constituents of Selected Edible Nuts。International Journal of Molecular Sciences,10(12),5485-5497。  new window
8.Lineweaver, H.、Burk, D.(1934)。The determination of enzyme dissociation constants。Journal of the American Chemical Society,56(3),658-666。  new window
9.Chen, M.-J.、Hung, C.-C.、Chen, Y.-R.、Lai, S.-T.、Chan, C.-F.(2016)。Novel synthetic kojic acid-methimazole derivatives inhibit mushroom tyrosinase and melanogenesis。Journal of Bioscience and Bioengineeringy,122(6),666-672。  new window
10.Prakash, A.、Malhotra, R.(2018)。Synthesis, Characterization, DFT and Antimicrobial Study of Co(II), Ni(II), Cu(II) and Zn(II) Complexes of Novel Schiff Base Ligands Derived from 3-Amino-l,2,4-triazole-5-thiol。Asian Journal of Chemistry,30(12)。  new window
11.Mann, T.、Gerwat, W.、Batzer, J.、Eggers, K.、Scherner, C.、Wenck, H.、Stäb, F.、Hearing, Y. J.、Röhm, K.-H.、Kolbe, L.(2018)。Inhibition of human tyrosinase requires molecular motifs distinctively different from mushroom tyrosinase。Journal of Investigative Dermatology,138(7),1601-1608。  new window
12.Ying, Y. H.、Lee, S. J.、Chung, M. H.、Ying, H. J.、Suk, J. L.、Myung, H. C.(1999)。Aloesin and arbutin inhibit tyrosinase activity in a synergistic manner via a different action mechanism。Archives of Pharmacal Research,22(3),232-236。  new window
13.Sugimoto, K.、Nomura, K.、Nishimura, T.、Kiso, T.、Sugimoto, K.、Kuriki, T.(2005)。Syntheses of α-arbutin-α-glycosides and their inhibitory effects on human tyrosinase。Journal of Bioscience and Bioengineering,99(3),272-276。  new window
14.Lam, K. W.、Syahida, A.、Ul-Haq, Z.、Rahman, M. B. A.、Lajis, N. H.(2010)。Synthesis and biological activity of oxadiazole and triazolothiadiazole derivatives as tyrosinase inhibitors。Bioorganic & Medicinal Chemistry Letters,20(12),3755-3759。  new window
 
 
 
 
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