Kim Do Hyun, Kim Su Jeong, Ullah Sultan, Yun Hwi Young, Chun Pusoon, Moon Hyung Ryong
College of Pharmacy, Pusan National University, Busan.
College of Pharmacy, Inje University, Gimhae, South Korea.
Drug Des Devel Ther. 2017 Mar 16;11:827-836. doi: 10.2147/DDDT.S131538. eCollection 2017.
The authors designed and synthesized 17 (2-substituted phenyl-1,3-dithiolan-4-yl) methanol (PDTM) derivatives to find a new chemical scaffold, showing excellent tyrosinase-inhibitory activity. Their tyrosinase-inhibitory activities were evaluated against mushroom tyrosinase at 50 μM, and five of the PDTM derivatives (PDTM3, PDTM7-PDTM9, and PDTM13) were found to inhibit mushroom tyrosinase more than kojic acid or arbutin, the positive controls. Of seventeen PDTMs, PDTM3 (half-maximal inhibitory concentration 13.94±1.76 μM), with a 2,4-dihydroxyphenyl moiety, exhibited greatest inhibitory effects (kojic acid half-maximal inhibitory concentration 18.86±2.14 μM). Interestingly, PDTM compounds with no hydroxyl group, PDTM7-PDTM9, also had stronger inhibitory activities than kojic acid. In silico studies of interactions between tyrosinase and the five PDTMs suggested their binding affinities were closely related to their tyrosinase-inhibitory activities. Cell-based experiments performed using B16F10 mouse-skin melanoma cells showed that PDTM3 effectively inhibited melanogenesis and cellular tyrosinase activity. A cell-viability study conducted using B16F10 cells indicated that the antimelanogenic effect of PDTM3 was not attributable to its cytotoxicity. Kinetic studies showed PDTM3 competitively inhibited tyrosinase, indicating binding to the tyrosinase-active site. We found that PDTM3 with a new chemical scaffold could be a promising candidate for skin-whitening agents, and that the 1,3-dithiolane ring could be used as a chemical scaffold for potent tyrosinase inhibition.
作者设计并合成了17种(2-取代苯基-1,3-二硫戊环-4-基)甲醇(PDTM)衍生物,以寻找一种新的化学骨架,这些衍生物显示出优异的酪氨酸酶抑制活性。在50 μM浓度下针对蘑菇酪氨酸酶评估了它们的酪氨酸酶抑制活性,发现5种PDTM衍生物(PDTM3、PDTM7 - PDTM9和PDTM13)对蘑菇酪氨酸酶的抑制作用超过阳性对照曲酸或熊果苷。在17种PDTM中,带有2,4 - 二羟基苯基部分的PDTM3(半数最大抑制浓度为13.94±1.76 μM)表现出最大的抑制效果(曲酸半数最大抑制浓度为18.86±2.14 μM)。有趣的是,没有羟基的PDTM化合物PDTM7 - PDTM9也具有比曲酸更强的抑制活性。酪氨酸酶与这5种PDTM之间相互作用的计算机模拟研究表明,它们的结合亲和力与酪氨酸酶抑制活性密切相关。使用B16F10小鼠皮肤黑色素瘤细胞进行的基于细胞的实验表明,PDTM3有效地抑制了黑色素生成和细胞酪氨酸酶活性。使用B16F10细胞进行的细胞活力研究表明,PDTM3的抗黑色素生成作用并非归因于其细胞毒性。动力学研究表明,PDTM3竞争性抑制酪氨酸酶,表明其与酪氨酸酶活性位点结合。我们发现具有新化学骨架的PDTM3可能是一种有前途的皮肤美白剂候选物,并且1,3 - 二硫戊环环可作为有效的酪氨酸酶抑制的化学骨架。