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无保护基全合成的演变:研究(-)-palmyrolide A 这种神经活性海洋大环内酯的途径。

Evolution of a protecting-group-free total synthesis: studies en route to the neuroactive marine macrolide (-)-palmyrolide A.

机构信息

Department of Chemistry and Biochemistry, New Mexico State University, Las Cruces, New Mexico 88003, USA.

出版信息

J Org Chem. 2012 Jul 20;77(14):6271-89. doi: 10.1021/jo301121f. Epub 2012 Jul 5.

Abstract

A full account of our synthetic work toward the first total synthesis of the neuroactive marine macrolide (-)-palmyrolide A is described. Our first-generation approach aimed to unlock the unknown C(5)-C(7) stereochemical relationship via the synthesis of four diastereomers of palmyrolide A aldehyde, a known degradation product. When these efforts provided inconclusive results, recourse to synthesizing all possible stereocombinations of the 15-membered macrolide was undertaken. These studies were critical in confirming the absolute stereochemistry, yielding the first total synthesis of (+)-ent-palmyrolide A. Subsequent to this work, the first protecting-group-free total synthesis of natural (-)-palmyrolide A is also reported.

摘要

我们详细描述了全合成具有神经活性的海洋大环内酯(-)-palmyrolide A 的工作。我们的第一代方法旨在通过合成已知降解产物 palmyrolide A 醛的四个非对映异构体来揭示未知的 C(5)-C(7)立体化学关系。当这些努力没有得出明确的结果时,我们转而合成了 15 元大环内酯的所有可能的立体异构体。这些研究对于确定绝对立体化学结构至关重要,从而实现了(+)-ent-palmyrolide A 的首次全合成。在此工作之后,还报道了天然(-)-palmyrolide A 的首例无保护基全合成。

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