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Synthesis of novel anticancer agents through opening of spiroacetal ring of diosgenln

机译:通过薯os皂苷元螺缩醛环的合成来合成新型抗癌药

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摘要

Diosgenin has been modified to furostane derivatives after opening the F-spiroacetal ring. The aldehyde group at C26 in derivative 8 was unexpectedly transformed to the ketone 9. The structure of ketone 9 was confirmed by spectroscopy and finally by X-ray crystallography. Five of the diosgenin derivatives showed significant anticancer activity against human cancer cell lines. The most potent molecule of this series i.e. compound 7, inhibited cellular growth by arresting the population at G0/Gi phase of cell division cycle. Cells undergo apoptosis after exposure to the derivative 7 which was evident by increase in sub Go population in cell cycle analysis. Docking experiments showed caspase-3 and caspase-9 as possible molecular targets for these compounds. This was further validated by cleavage of PARP, a caspase target in apoptotic pathway. Compound 7 was found non-toxic up to 1000 mg/kg dose in acute oral toxicity in Swiss albino mice.
机译:打开F-螺缩醛环后,薯os皂素已被修饰为呋喃斯坦衍生物。衍生物8中C26处的醛基意外地转化为酮9。酮9的结构通过光谱学确定,并最终通过X射线晶体学确认。薯gen皂苷元衍生物中的五种对人癌细胞系显示出显着的抗癌活性。该系列中最有效的分子,即化合物7,通过将种群停滞在细胞分裂周期的G0 / Gi期来抑制细胞生长。细胞暴露于衍生物7后经历凋亡,这在细胞周期分析中通过亚Go群体的增加而明显。对接实验表明,caspase-3和caspase-9是这些化合物的可能分子靶标。通过PARP的切割进一步证实了这一点,PARP是凋亡途径中的一种半胱天冬酶靶标。在瑞士的白化病小鼠中,化合物7的急性口服毒性高达1000 mg / kg,无毒。

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