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Total Synthesis of Discodermolide: Optimization of the Effective Synthetic Route

机译:Discodermolide的全合成:有效合成途径的优化

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摘要

An efficient and modulable total synthesis of discodermolide (DDM), a unique marine anticancer polyketide is described including related alternative synthetic approaches. Particularly notable is the repeated application of a crotyltitanation reaction to yield homoallylic (Z)-O-ene-carbamate alcohols with excellent selectivity. Advantage was taken of this reaction not only for the stereocontrolled building of the syn-anti methyl-hydroxy-methyl triads of DDM, but also for the direct construction of the terminal (Z)diene. Of particular interest is also the installation of the C13=C14 (Z)-double bond through a highly selective dyotropic rearrangement. The preparation of the middle C8-C14 fragment in two sequential stages and its coupling to the C1-C7 moiety was a real challenge and required careful optimization. Several synthetic routes were explored to allow high and reliable yields. Due to the flexibility and robust character of this approach, it might enable a systematic structural variation of DDM and, therefore, the elaboration and exploration of novel discodermolide structural analogues.
机译:一种高效,可调节的二甲蝶呤(DDM)的合成方法,一种独特的海洋抗癌聚酮化合物,包括相关的替代合成方法。尤其值得注意的是重复进行crotyltitanate反应以产生具有优异选择性的均烯丙基(Z)-O-烯-氨基甲酸酯醇。利用该反应不仅用于DDM的顺-反甲基-羟基-甲基三单元组的立体控制结构,而且还用于末端(Z)二烯的直接结构。还特别感兴趣的是通过高度选择性的致各向异性重排来安装C13 = C14(Z)-双键。在两个连续阶段中制备中间C8-C14片段并将其与C1-C7部分偶联是一个真正的挑战,需要仔细优化。探索了几种合成途径以实现高且可靠的产量。由于该方法的灵活性和鲁棒性,它可以实现DDM的系统结构变化,因此,可以开发和探索新颖的discodermolide结构类似物。

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