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Synthesis and Biological Evaluation of Isomeric Methoxy Substitutions on Anti-Cancer Indolyl-Pyridinyl-Propenones: Effects on Potency and Mode of Activity

机译:异构吲哚甲氧基取代吲哚基-吡啶基-丙酮的合成及生物学评价:对效能和活性模式的影响

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摘要

Certain indolyl-pyridinyl-propenone analogues kill glioblastoma cells that have become resistant to conventional therapeutic drugs. Some of these analogues induce a novel form of non-apoptotic cell death called methuosis, while others primarily cause microtubule disruption. Ready access to 5-indole substitution has allowed characterization of this position to be important for both types of mechanisms when a simple methoxy group is present. We now report the syntheses and biological effects of isomeric methoxy substitutions on the indole ring. Additionally, analogues containing a trimethoxyphenyl group in place of the pyridinyl moiety were evaluated for anticancer activity. The results demonstrate that the location of the methoxy group can alter both the potency and the mechanism of cell death. Remarkably, changing the methoxy from the 5-position to the 6-position switched the biological activity from induction of methuosis to disruption of microtubules. The latter may therefore represent a prototype for a new class of mitotic inhibitors with potential therapeutic utility.
机译:某些吲哚基-吡啶基-丙烯酮类似物杀死已经对常规治疗药物产生抗性的胶质母细胞瘤细胞。这些类似物中的一些诱导了一种新形式的非凋亡细胞死亡,称为变态,而其他类似物则主要引起微管破坏。当存在一个简单的甲氧基时,容易获得5-吲哚取代的特性使得该位置的表征对于两种机理都很重要。现在,我们报告吲哚环上异构甲氧基取代的合成和生物学效应。另外,评估了含有三甲氧基苯基代替吡啶基部分的类似物的抗癌活性。结果表明,甲氧基的位置可以改变效力和细胞死亡的机制。值得注意的是,将甲氧基从5位改变为6位将生物学活性从诱导变态转变为破坏微管。因此,后者可以代表具有潜在治疗用途的新型有丝分裂抑制剂的原型。

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