Chakraborty Sukriyo, Biju Akkattu T
Department of Organic Chemistry, Indian Institute of Science Bangalore, C.V. Raman Avenue, Bengaluru, 560 012, India.
Angew Chem Int Ed Engl. 2023 Apr 24;62(18):e202300049. doi: 10.1002/anie.202300049. Epub 2023 Mar 9.
The pyridine core is among the most common motifs found in pharmaceuticals and agrochemicals. Consequently, the C-H functionalization of pyridine is a prized reaction, as it can help access a broad spectrum of valuable chemicals. However, the intrinsic electronic properties of pyridines hinder their meta-C-H functionalization, requiring drastic conditions affecting functional group compatibility. A synthetic manoeuvre to overcome this challenge involves the temporary conversion of pyridines into electron-rich intermediates and subsequent regioselective electrophilic functionalization. This was recently accomplished by a ring-opening ring-closing sequence via Zincke imine intermediates by McNally and co-workers, and a dearomatization-rearomatization sequence via oxazino-pyridine intermediates by the Studer group. The mildness and simplicity of these protocols enable them to work with complex molecular setups for synthesizing natural products and bioactive molecules.
吡啶核心是药物和农用化学品中最常见的结构单元之一。因此,吡啶的C-H官能化是一种备受珍视的反应,因为它有助于获得各种各样有价值的化学品。然而,吡啶的固有电子性质阻碍了它们的间位C-H官能化,需要剧烈的条件,这会影响官能团的兼容性。克服这一挑战的一种合成策略是将吡啶暂时转化为富电子中间体,然后进行区域选择性亲电官能化。最近,麦克纳利及其同事通过经由津克烯胺中间体的开环-闭环序列,以及施图德小组通过经由恶嗪并吡啶中间体的去芳构化-再芳构化序列实现了这一点。这些方法的温和性和简便性使它们能够用于合成天然产物和生物活性分子的复杂分子结构。