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通过磺酰胺与酰胺的直接反应无金属合成药学相关的磺酰脲类化合物。

Metal-Free Synthesis of Pharmaceutically Relevant Sulfonylureas via Direct Reaction of Sulfonamides with Amides.

作者信息

Mondal Sahil, Sati Rakhi, Hashim Muhammed, Dash Rageshree, Nishad Chandra Shekhar, Banerjee Biplab

机构信息

Department of Chemistry, Central University of Punjab, Bathinda 151401, India.

出版信息

J Org Chem. 2024 Sep 20;89(18):13179-13191. doi: 10.1021/acs.joc.4c01304. Epub 2024 Aug 28.

DOI:10.1021/acs.joc.4c01304
PMID:39196632
Abstract

A metal-free process has been developed for the sustainable synthesis of medicinally important sulfonylureas in one pot via the direct reaction of sulfonamides with amides in green solvent (DMC). The reaction proceeded efficiently at room temperature, and the products were obtained in good to excellent yields. The use of readily accessible, inexpensive, and environmentally benign starting materials and reagents, metal-free mild reaction conditions, wide substrate scope, tolerance to air and moisture, operational simplicity, and good atom economy are the salient features of this reaction protocol. Gram-scale synthesis of antidiabetic drugs tolbutamide and chlorpropamide in excellent yields further revealed the practical utility of this procedure. Additionally, the synthetic value of this straightforward method is showcased by the late-stage modification of drug molecules, including drug-drug conjugation with good yields. Preliminary mechanistic studies indicated the generation of an isocyanate intermediate, which further reacts with sulfonamide to form sulfonylurea. As compared to other related methods reported for sulfonylurea synthesis, the current method obviates the requirement of traditional multistep protocols involving isolation of hazardous isocyanates and avoids the use of toxic phosgene.

摘要

已开发出一种无金属工艺,用于通过磺酰胺与酰胺在绿色溶剂(碳酸二甲酯)中直接反应,一锅法可持续合成具有药用价值的磺酰脲类化合物。该反应在室温下高效进行,产物收率良好至优异。使用易于获得、价格低廉且环境友好的起始原料和试剂、无金属温和反应条件、广泛的底物范围、对空气和水分的耐受性、操作简便以及良好的原子经济性是该反应方案的显著特点。以优异收率进行的抗糖尿病药物甲苯磺丁脲和氯磺丙脲的克级合成进一步揭示了该方法的实用性。此外,该直接方法的合成价值通过药物分子的后期修饰得以体现,包括药物与药物的共轭反应且收率良好。初步机理研究表明生成了异氰酸酯中间体,该中间体进一步与磺酰胺反应形成磺酰脲。与报道的其他磺酰脲合成相关方法相比,当前方法无需涉及分离危险异氰酸酯的传统多步方案,并且避免使用有毒的光气。

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