Park Ki Duk, Lee Sul Gi, Kim Sung Uk, Kim Sung Han, Sun Won Suck, Cho Sung Jin, Jeong Do Hyeon
Laboratory of Cellular Function Modulator, Korea Research Institute of Bioscience and Biotechnology, Yusung, Taejon 305-333, Korea.
Bioorg Med Chem Lett. 2004 Oct 18;14(20):5189-92. doi: 10.1016/j.bmcl.2004.07.063.
By changing the structure or replacing the gallate group of (-)-ECG, 3-O-acyl and alkyl-(-)-epicatechin derivatives were synthesized to be screen as anticancer agents using the MTT assay in vitro against cancer cell lines (PC3, SKOV3, U373MG). 3-O-Acyl and alkyl-(-)-epicatechin derivatives (4-25) exhibited better anticancer activity than (-)-ECG and specially, compounds 6-8, 17-19, which were modified aliphatic chains with moderate sizes (C8-C12) showed strong anticancer activity (IC50=6.4-31.2 microM). The introduction of an alkyloxy group on 3-O-hydroxyl instead of an acyloxy group significantly enhanced inhibitory activity. Consequently, the compound that showed the most potency as anticancer agents were 3-O-decyl-(-)-epicatechin (18) (IC50=8.9, 7.9, 6.4 microM against PC3, SKOV3, U373MG, respectively), which modified the appropriate lipophilic group on the C-3 hydroxyl as an alkyloxy group.
通过改变(-)-表儿茶素的结构或取代其没食子酸基团,合成了3-O-酰基和烷基-(-)-表儿茶素衍生物,并利用MTT法在体外针对癌细胞系(PC3、SKOV3、U373MG)进行筛选以作为抗癌剂。3-O-酰基和烷基-(-)-表儿茶素衍生物(4-25)表现出比(-)-表儿茶素更好的抗癌活性,特别地,用中等大小(C8-C12)的脂肪链修饰的化合物6-8、17-19表现出较强的抗癌活性(IC50 = 6.4-31.2微摩尔)。在3-O-羟基上引入烷氧基而非酰氧基显著增强了抑制活性。因此,作为抗癌剂表现出最强效力的化合物是3-O-癸基-(-)-表儿茶素(18)(对PC3、SKOV3、U373MG的IC50分别为8.9、7.9、6.4微摩尔),其在C-3羟基上修饰了合适的亲脂性基团作为烷氧基。