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Synthetic optimization of rosiglitazone and related intermediates for industrial purposes

机译:罗格列酮及相关中间体的工业合成优化

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As an important newly Food and Drug Administration (FDA)-approved drug for treating diabetes, rosiglitazone (1) has received much attention from researchers in many areas. To search for an economical and convenient synthesis method for 1, we explored the reaction conditions and workup of a scalable five-step synthetic route by an orthogonal method to determine the best condition for each reaction step. The starting materials are commercially available, including 2-chloropyridine (2), N-methylethanolamine (3), 4-fluorobenzaldehyde (4a) or 4-hydroxybenzaldehyde (4b), and 1,3-thiazolidine-2,4-dione (5). The five sequential reaction steps are cyclization, alkylation, etherification, condensation, and reduction, having optimal yield of 90, 99, 59, 75, and 91 %, respectively. The best overall yield to synthesize rosiglitazone based on compound 2 was 40 %, being suitable for industrial purposes, using water as a green solvent and avoiding column chromatography during the last three reaction steps.
机译:罗格列酮(1)作为美国食品和药物管理局(FDA)最近批准的一种重要的治疗糖尿病的药物,受到了许多领域研究人员的广泛关注。为了寻找一种经济,方便的1合成方法,我们探索了反应条件,并通过正交方法探索了可扩展的五步合成路线,以确定每个反应步骤的最佳条件。起始原料可商购获得,包括2-氯吡啶(2),N-甲基乙醇胺(3),4-氟苯甲醛(4a)或4-羟基苯甲醛(4b)和1,3-噻唑烷-2,4-二酮(5 )。五个顺序的反应步骤是环化,烷基化,醚化,缩合和还原,最佳产率分别为90%,99%,59%,75%和91%。以水为绿色溶剂并避免在最后三个反应步骤中进行柱色谱分离,合成基于化合物2的罗格列酮的最佳总收率为40%,适用于工业用途。

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