Natural Product and Medicinal Chemistry Division, Indian Institute of Integrative Medicine (CSIR-IIIM), Canal Road, Jammu 180001, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
J Org Chem. 2023 May 5;88(9):5676-5686. doi: 10.1021/acs.joc.3c00146. Epub 2023 Apr 21.
A reaction of glycals with two different types of nucleophiles in the presence of SnCl enabled one-pot rapid access to 2-deoxy-3-thio pyranoses and their -glycosides. The process involves thioaryl substitution at C-3 with stereoretention and α-selective -glycosylation at C-1 from d-glycals, thus combining two reactions with three interventions. The present methodology features an attractive three-component coupling (1:1.2:1.5 ratio) with operational simplicity at 0 °C in 10-20 min. This stereoselective one-pot 1,3-difunctionalization approach of glycals is compatible with wide range of primary and secondary alcohols affording products in good to excellent yields. This methodology was successfully extended toward disaccharide synthesis. Several control experiments suggested a plausible reaction mechanism and rationale behind regio and stereoselectivity. The reaction strategy possesses an intrinsic ability for the synthesis of various natural products and drug molecules.
在 SnCl 的存在下,糖醛与两种不同类型的亲核试剂反应,可一锅法快速得到 2-脱氧-3-硫代吡喃糖及其糖苷。该过程涉及 C-3 的硫芳基取代,立体保留和 d-糖醛的 C-1 的 α-选择性糖苷化,从而将两个反应与三个干预结合在一起。本方法的特点是具有吸引力的三组分偶联(1:1.2:1.5 比),在 0°C 下操作简单,在 10-20 分钟内完成。糖醛的这种立体选择性的 1,3-双官能化方法适用于广泛的伯醇和仲醇,以良好至优异的收率得到产物。该方法成功扩展到二糖合成。几项对照实验提出了一种合理的反应机制和区域及立体选择性背后的原理。该反应策略具有内在的能力,可用于合成各种天然产物和药物分子。