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Rapid preparation of rare ginsenosides by acid transformation and their structure-activity relationships against cancer cells

机译:通过酸转化快速制备人参皂苷及其与癌细胞的构效关系

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摘要

The anticancer activities of ginsenosides are widely reported. The structure-activity relationship of ginsenosides against cancer is not well elucidated because of the unavailability of these compounds. In this work, we developed a transformation method to rapidly produce rare dehydroxylated ginsenosides by acid treatment. The optimized temperature, time course, and concentration of formic acid were 120°C, 4 h and 0.01%, respectively. From 100 mg of Rh1, 8.3 mg of Rk3 and 18.7 mg of Rh4 can be produced by acid transformation. Similarly, from 100 mg of Rg3, 7.4 mg of Rk1 and 15.1 mg of Rg5 can be produced. From 100 mg of Rh2, 8.3 mg of Rk2 and 12.7 mg of Rh3 can be generated. Next, the structure-activity relationships of 23 ginsenosides were investigated by comparing their cytotoxic effects on six human cancer cells, including HCT-116, HepG2, MCF-7, Hela, PANC-1, and A549. The results showed that: (1) the cytotoxic effect of ginsenosides is inversely related to the sugar numbers; (2) sugar linkages rank as C-3 > C-6 > C-20; (3) the protopanaxadiol-type has higher activities; (4) having the double bond at the terminal C20-21 exhibits stronger activity than that at C20-22; and (5) 20(S)-ginsenosides show stronger effects than their 20(R)-stereoisomers.
机译:人参皂甙的抗癌活性已被广泛报道。人参皂苷与癌症之间的结构活性关系尚不清楚,因为这些化合物无法获得。在这项工作中,我们开发了一种通过酸处理快速生产稀有的脱羟基人参皂甙的转化方法。最优化的温度,时间过程和甲酸浓度分别为120°C,4 h和0.01%。通过酸转化,可以从100 mg的Rh1中产生8.3 mg的Rk3和18.7 mg的Rh4。同样,从100微克的Rg3,可以生产7.4微克的Rk1和15.1微克的Rg5。从100 mg的Rh2,可以生成8.3 mg的Rk2和12.7 mg的Rh3。接下来,通过比较23种人参皂苷对六种人类癌细胞(包括HCT-116,HepG2,MCF-7,Hela,PANC-1和A549)的细胞毒作用,研究了其结构活性关系。结果表明:(1)人参皂苷的细胞毒性作用与糖值成反比。 (2)糖键的排列顺序为C-3> C-6> C-20; (3)原人参二醇型具有较高的活性; (4)在C20-21末端具有双键的活性高于在C20-22处的双键的活性。 (5)20(S)-人参皂甙显示出比其20(R)-立体异构体更强的作用。

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