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首页> 外文期刊>Helvetica Chimica Acta >The Biomimetic Synthesis and Final Structure Determination of (+)- and (−)-Centrolobine, Naturally Occurring Diarylheptanoid 2,6-cis-Disubstituted Tetrahydro-2H-pyrans
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The Biomimetic Synthesis and Final Structure Determination of (+)- and (−)-Centrolobine, Naturally Occurring Diarylheptanoid 2,6-cis-Disubstituted Tetrahydro-2H-pyrans

机译:(+)-和(-)-Centrolobine的仿生合成及最终结构测定,天然存在的二芳基庚烷2,6-顺式-二取代的Tetrahydro-2H-pyrans

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摘要

The enantiomerically pure title compounds were prepared by oxidative cyclization of their optically active diarylheptanoid precursors. The approach is considered as a biomimetic phenol oxidation via an intermediate quinone methide. The absolute configuration of the precursors is retained, and the transition state adopts the sterically most favorable diequatorial arrangement of the 2,6-substituents to afford the cis-configured natural products. The outcome unambiguously establishes the absolute configurations and the correlation with the chiroptical data. In addition, a problem of regioisomerism that had not been discussed before was solved, and the original assignment of the position of the MeO group in the natural centrolobines could be confirmed. As such the results are the experimental evidence for the corrections of long-term inconsistencies we had postulated in an earlier review article.
机译:对映体纯的标题化合物是通过它们的光学活性二芳基庚烷前体的氧化环化反应制备的。该方法被认为是通过中间体醌甲基化物的仿生苯酚氧化。保留了前体的绝对构型,并且过渡态采用了2,6-取代基的空间上最有利的二甲基排列,以提供顺式构型的天然产物。结果清楚地确定了绝对构型以及与脊骨疗法数据的相关性。另外,解决了以前未曾讨论过的区域异构问题,并且可以确认MeO基团在天然中心洛宾类中的位置的原始分配。因此,这些结果是纠正我们先前在一篇评论文章中假设的长期矛盾的实验证据。

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