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Synthesis of novel, simplified, C-7 substituted eleutheside analogues with potent microtubule-stabilizing activity

机译:具有有效的微管稳定活性的新型,简化的,C-7取代的亮叶菊苷类似物的合成

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The synthesis of a number of novel, simplified, C-7 substituted eleutheside analogues with potent tubulin-assembling and microtubule-stabilizing properties is described, using ring closing metathesis as the key-step for obtaining the 6-10 fused bicyclic ring system. The RCM precursors were synthesized starting from aldehyde 3 [prepared in six steps on a multigram scale from R-(-)-carvone in 30% overall yield] via multiple stereoselective Hafner-Duthaler allyltitanations and/or Brown allylborations. 'Second generation' RCM-catalyst 15 gave the desired ring closed ten-membered carbocycles as single Z stereoisomers in good yields. The RCM stereochemical course (100% Z) is likely to reflect thermodynamic control. Molecular mechanics and semi-empirical calculations also show that the Z stereoisomers of these ten-membered carbocycles are consistently more stable than the E. The crucial role of the homoallylic and allylic substituents and of their protecting groups for the efficiency of the RCM reactions is discussed. In particular, we have found that p-methoxyphenyl (PMP) protected allylic alcohols, the products of a stereoselective oxyallylation, are compatible with the RCM reaction and give better yields than the corresponding free allylic alcohols. One of the simplified analogues of the natural product (44, lacking inter alia the C-4/C-7 ether bridge) retains potent microtubule-stabilizing activity. However, the cytotoxicity tests did not parallel the potent tubulin-assembling and microtubule-stabilizing properties: limited cytotoxicity was observed against three common tumor cell lines (human ovarian carcinoma, human colon carcinoma and human leukemia cell lines, IC50 in the muM range), approximately two orders of magnitude less than paclitaxel (IC50 in the nM range). The mechanism of cell cycle arrest induced by compound 44 is similar to that obtained with paclitaxel. (C) 2004 Elsevier Ltd. All rights reserved.
机译:使用闭环易位作为获得6-10稠合双环系统的关键步骤,描述了许多具有有效的微管蛋白组装和微管稳定特性的新颖的,简化的C-7取代的亮氨酸苷类似物的合成。通过多个立体选择性Hafner-Duthaler烯丙基钛酸酯化和/或Brown烯丙基硼酸酯化反应,从醛3 [从R-(-)-香芹酮以多克规模以六步制取,总产率为30%]合成RCM前体。 “第二代” RCM催化剂15以良好的收率得到了所需的闭环十元碳环,为单Z立体异构体。 RCM立体化学过程(100%Z)可能反映了热力学控制。分子力学和半经验计算还表明,这些十元碳环的Z立体异构体始终比E稳定。讨论了烯丙基和烯丙基取代基及其保护基对于RCM反应效率的关键作用。 。尤其是,我们发现对位甲氧基苯基(PMP)保护的烯丙醇(一种立体选择性的羟基烯丙基化产物)与RCM反应相容,并且比相应的游离烯丙醇具有更好的产率。天然产物的简化类似物之一(44,尤其缺乏C-4 / C-7醚桥)保留了有效的微管稳定活性。然而,细胞毒性测试并没有达到有效的微管蛋白组装和微管稳定特性:对三种常见的肿瘤细胞系(人类卵巢癌,人类结肠癌和人类白血病细胞系,IC50在muM范围内)观察到有限的细胞毒性,比紫杉醇(IC50在nM范围内)小大约两个数量级。化合物44诱导的细胞周期停滞机制与紫杉醇相似。 (C)2004 Elsevier Ltd.保留所有权利。

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