Faculty of Chemistry, Adam Mickiewicz University , Umultowska 89b, 61-614 Poznań, Poland.
Chem Rev. 2016 Oct 12;116(19):12369-12465. doi: 10.1021/acs.chemrev.6b00315. Epub 2016 Sep 29.
In the past decade, the asymmetric synthesis of chiral nonracemic isoquinoline alkaloids, a family of natural products showing a wide range of structural diversity and biological and pharmaceutical activity, has been based either on continuation or improvement of known traditional methods or on new, recently developed, strategies. Both diastereoselective and enantioselective catalytic methods have been applied. This review describes the stereochemically modified traditional syntheses (the Pictet-Spengler, the Bischler-Napieralski, and the Pomeranz-Fritsch-Bobbitt) along with strategies based on closing of the nitrogen-containing ring B of the isoquinoline core by the formation of bonds between C-N, N-C, C-N/N-C, and C-N/C-C atoms. Methods involving introduction of substituents at the C1 carbon of isoquinoline core along with syntheses applying various biocatalytic techniques have also been reviewed.
在过去的十年中,手性非外消旋异喹啉生物碱的不对称合成——具有广泛的结构多样性和生物及药物活性的天然产物家族——要么基于已知传统方法的延续或改进,要么基于新的、最近开发的策略。立体选择性和对映选择性催化方法都得到了应用。本文综述了立体化学修饰的传统合成方法(Pictet-Spengler、Bischler-Napieralski 和 Pomeranz-Fritsch-Bobbitt),以及通过 C-N、N-C、C-N/N-C 和 C-N/C-C 原子之间的键形成来封闭异喹啉核心的含氮环 B 的策略。还综述了涉及在异喹啉核心的 C1 碳原子上引入取代基的方法,以及应用各种生物催化技术的合成方法。