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首页> 外文期刊>Journal of Medicinal Chemistry >Simplified Discodermolide Analogues: Synthesis and Biological Evaluation of 4-epi-7-Dehydroxy-14,16-didemethyl-(+)-discodermolides as Microtubule-Stabilizing Agents
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Simplified Discodermolide Analogues: Synthesis and Biological Evaluation of 4-epi-7-Dehydroxy-14,16-didemethyl-(+)-discodermolides as Microtubule-Stabilizing Agents

机译:简化的discodermolide类似物:4-epi-7-Dehydroxy-14,16-didemethyl-(+)-discodermolide作为微管稳定剂的合成与生物学评价

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摘要

Several novel analogues of (+)-discodermolide wee synthesized via a convergent strategy that used Witting reactions to append left and right side chains to a central scaffold and then tested for biological activity. Three of the analogues in the 4-epi-7-dehydroxy-14,16-didemethyl series, 6a-c, had interesting actions. The C3-methoxymethyl ether analogue 6b was more active in antiproliferative cell-based assays as well as in hypernucleation and paclitaxel site competition assays with isolated tubulin than the other analogues, including 6a, which contained a free hydroxyl group at the C3 position. The biological results validated the initial hypothesis that the C7 hydroxy group and the C14 and C16 methyl groups of (+)-discodermolide could be deleted without undermining activity. Although less potent than (+)-discodermolide and paclitaxel, compounds 6b and 6c both showed properties unique to (+)-discodermolide. These properties, particularly the capacity to cause hypernucleation of isolated tubulin at lower temperature than paclitaxel, as well as stabilizing preformed microtubules to cold disassembly, are considered mechanistically superior to those of paclitaxel. Other variations in the right and left sides of the discodermolide scaffold revealed additional structure/activity information.
机译:(+)-discodermolide的几种新型类似物通过收敛策略合成,该策略使用Witting反应将左侧和右侧链附加到中央支架上,然后进行生物学活性测试。 4-epi-7-dehydroxy-14,16-didemethyl系列中的三个类似物6a-c具有有趣的作用。 C3-甲氧基甲基醚类似物6b在基于抗增殖细胞的测定以及分离的微管蛋白的超核和紫杉醇位点竞争测定中比其他类似物(包括在c3位置含有游离羟基的6a)更具活性。生物学结果证实了最初的假设,即可以删除(+)-discodermolide的C7羟基以及C14和C16甲基而不会破坏活性。尽管化合物(6b和6c)的效力低于(+)-discodermolide和紫杉醇,但化合物6b和6c均显示了(+)-discodermolide所独有的特性。这些性质,特别是在比紫杉醇更低的温度下引起分离的微管蛋白超核的能力,以及稳定预先形成的微管以使其冷分解的能力,被认为在机械上优于紫杉醇。 Discodermolide支架的右侧和左侧的其他变化揭示了其他结构/活性信息。

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