Grau Benedikt W, Kumar Praveen, Nilsen Aaron, Malhotra Sanjay V
Department of Cell, Development and Cancer Biology, Knight Cancer Institute, Oregon Health & Science University, Portland, OR, USA.
Center for Experimental Therapeutics, Knight Cancer Institute, Oregon Health & Science University, Portland, OR, USA.
Org Biomol Chem. 2025 Feb 12;23(7):1479-1532. doi: 10.1039/d4ob01589d.
The nitrogen-bridgehead is a common structural motif present in a multitude of natural products. As many of these abundant compounds exhibit biological activities, against cancer or bacteria, these derivatives are of high interest. While natural products are often associated with problematic characteristics, such as elaborate separation processes, high molecular complexity and limited room for derivatization, purely synthetic approaches can overcome these challenges. Many synthetic procedures have been reported for preparation of artificial nitrogen bridgehead compounds, however, to our surprise only a fraction of these has been tested for their bioactivity. This review is therefore meant to give an overview of existing synthetic methods that provide scaffolds containing bridgehead nitrogen atoms, covering the period from 2000 to 2023. Reviews which cover subunits of this topic are referenced as well.
氮桥头是众多天然产物中常见的结构基序。由于这些丰富的化合物中有许多具有抗癌或抗菌等生物活性,因此这些衍生物备受关注。虽然天然产物往往具有一些问题特性,如复杂的分离过程、高分子复杂性和有限的衍生化空间,但纯合成方法可以克服这些挑战。已经报道了许多用于制备人工氮桥头化合物的合成方法,然而,令我们惊讶的是,其中只有一小部分经过了生物活性测试。因此,本综述旨在概述2000年至2023年期间提供含桥头氮原子骨架的现有合成方法。同时也引用了涵盖该主题子单元的综述。