首页> 外文期刊>Current topics in medicinal chemistry >Recent applications of olefin ring-closing metathesis (RCM) in the synthesis of biologically important alkaloids, terpenoids, polyketides and other secondary metabolites.
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Recent applications of olefin ring-closing metathesis (RCM) in the synthesis of biologically important alkaloids, terpenoids, polyketides and other secondary metabolites.

机译:烯烃闭环复分解(RCM)在生物重要生物碱,萜类化合物,聚酮化合物和其他次生代谢产物合成中的最新应用。

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摘要

With the commercial availability of well-defined ruthenium metathesis catalysts which combine high stability and broad functional group compatibility with undiminished activity, ring-closing metathesis (RCM) is now routinely integrated in the planning of natural product syntheses. Thus, ring sizes of practically any kind from five onward may be formed. The presence of heteroatoms such as oxygen and nitrogen is of minor importance. Ring-strain and the presence of additional double bonds may be overcome by judicious selection of conditions. A major drawback of macrocyclic RCM still is the lack of E/Z stereocontrol. Nevertheless, the current overview will demonstrate the overwhelming power and scope of RCM in the total synthesis of structurally demanding natural products.
机译:随着将高稳定性和宽泛的官能团相容性与不降低的活性相结合的定义明确的钌复分解催化剂的商业可得性,现在将闭环复分解(RCM)常规地整合到天然产物合成的计划中。因此,可以形成从五开始的几乎任何种类的环尺寸。杂原子如氧和氮的存在次要重要性。明智地选择条件可以克服环应变和其他双键的存在。大环RCM的主要缺点仍然是缺乏E / Z立体控制。然而,当前的概述将证明RCM在结构上要求严格的天然产物的全合成中具有压倒性的能力和范围。

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