Engstrom Kenneth M, Baize Amanda L, Franczyk Thaddeus S, Kallemeyn Jeffrey M, Mulhern Mathew M, Rickert Robert C, Wagaw Seble
Global Pharmaceutical R&D, Process Research & Development, Abbott Laboratories, 1401 Sheridan Road, North Chicago, Illinois 60064-6290, USA.
J Org Chem. 2009 May 15;74(10):3849-55. doi: 10.1021/jo9003772.
Two syntheses of 3-substituted-4-amino-[3,2-c]thienopyridines have been developed to replace the standard literature route to these compounds, which uses unattractive conditions involving azide and high temperatures. The first synthesis utilizes a Friedel-Crafts reaction as its key ring-forming step, whereas the second route relies on an unprecedented intramolecular reductive cyclization between a nitroolefin and a nitrile as its key ring-forming step. The development and optimization of each 3-substituted-4-amino-[3,2-c]thienopyridine synthesis is discussed and a comparison of the routes is presented.
已经开发出两种合成3-取代-4-氨基-[3,2-c]噻吩并吡啶的方法,以取代合成这些化合物的标准文献路线,该标准路线使用了涉及叠氮化物和高温的不理想条件。第一种合成方法利用傅克反应作为其关键的成环步骤,而第二种路线则依赖于硝基烯烃和腈之间前所未有的分子内还原环化作为其关键的成环步骤。本文讨论了每种3-取代-4-氨基-[3,2-c]噻吩并吡啶合成方法的开发和优化,并对这些路线进行了比较。