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Synthesis of gypsogenin derivatives with capabilities to arrest cell cycle and induce apoptosis in human cancer cells

机译:石膏素合成衍生物具有阻滞细胞周期并诱导人癌细胞凋亡的能力

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摘要

Thirty-two gypsogenin derivatives were synthesized and screened for their cytotoxic activities. Their structures were established using IR, 1H NMR, 13C NMR, and LC-MS spectroscopic data. In MTT assays nearly all the compounds displayed good cytotoxicity in the low μM range for several human tumour cell lines (A549, LOVO, SKOV3 and HepG2). Low IC50 values were obtained especially for the carboxamides >7a–>7j, for an oxime derivative >3 and a (2,4-dinitrophenyl)hydrazono derivative >4. In particular, the IC50 values of compounds >4 (IC50 = 2.97 ± 1.13 µΜ) and >7 g (IC50 = 3.59 ± 2.04 µΜ) against LOVO cells were found to be much lower than those of the other derivatives and parent compound. These compounds were submitted to an extensive biological testing and proved compounds >4 and >7 g to act mainly by an arrest of the tumour cells in the S phase of the cell cycle. In addition, compounds >4 and >7 g triggered the apoptotic pathway in cancer cells, showing high apoptosis ratios.
机译:合成了32种石膏成分,并对其细胞毒活性进行了筛选。利用IR, 1 H NMR, 13 C NMR和LC-MS光谱数据确定了它们的结构。在MTT分析中,几乎所有化合物在几种人肿瘤细胞系(A549,LOVO,SKOV3和HepG2)的低μM范围内均显示出良好的细胞毒性。 IC50值较低,尤其是对于羧酰胺> 7a – > 7j ,肟衍生物> 3 和(2,4-二硝基苯基)肼基衍生物而言> 4 。特别地,发现化合物> 4 (IC50 = 2.97±1.13μm)和<7> g (IC50 = 3.59±2.04μm)的IC50值对LOVO细胞非常大。低于其他衍生物和母体化合物。这些化合物经过了广泛的生物学测试,证明了> 4 和> 7 g 化合物主要通过在细胞周期的S期阻滞肿瘤细胞发挥作用。此外,化合物> 4 和>7μg触发了癌细胞的凋亡途径,显示出高凋亡率。

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