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肼的直接 N-杂环化反应制备苯乙烯基化吡唑:1,3,5-三取代吡唑和二氢吡唑的合成

Direct N-heterocyclization of hydrazines to access styrylated pyrazoles: synthesis of 1,3,5-trisubstituted pyrazoles and dihydropyrazoles.

作者信息

Venkateswarlu Vunnam, Kour Jaspreet, Kumar K A Aravinda, Verma Praveen Kumar, Reddy G Lakshma, Hussain Yaseen, Tabassum Aliya, Balgotra Shilpi, Gupta Sorav, Hudwekar Abhinandan D, Vishwakarma Ram A, Sawant Sanghapal D

机构信息

Medicinal Chemistry Division, CSIR-Indian Institute of Integrative Medicine Canal Road Jammu-180001 India

Academy of Scientific and Innovative Research (AcSIR) Anusandhan Bhawan, 2 Rafi Marg New Delhi 110001 India.

出版信息

RSC Adv. 2018 Jul 24;8(47):26523-26527. doi: 10.1039/c8ra04550j.

Abstract

A microwave-assisted method has been developed for the synthesis of tri-substituted pyrazoles direct N-heterocyclization of hydrazines with metal-acetylacetonate and -dibenzylideneacetonate without using any base or additives. Most importantly, the synthesis of 1-aryl-5-phenyl-3-styryl-1-pyrazoles was achieved in a single step using hydrochloride salt of various phenylhydrazines and this is the first report for direct construction of these molecules. The reaction medium and microwave conditions play a critical role for their selective product formation during the reaction. The present reaction explored the usage of metal-diketonic complexes as reaction substrates providing acetylacetone and dibenzylideneacetone moieties to directly participate in cyclization with hydrazines to form the corresponding pyrazoles in excellent yields. The present protocol introduces the important N-heterocyclic moieties in the final structures, giving the reaction great applications from a medicinal chemistry perspective, particularly in the late stage modification strategies in drug discovery.

摘要

已开发出一种微波辅助方法,用于合成三取代吡唑,即肼与金属乙酰丙酮化物和二苄叉丙酮直接进行N-杂环化反应,无需使用任何碱或添加剂。最重要的是,使用各种苯肼的盐酸盐一步合成了1-芳基-5-苯基-3-苯乙烯基-1-吡唑,这是关于直接构建这些分子的首次报道。反应介质和微波条件在反应过程中对其选择性产物形成起着关键作用。本反应探索了使用金属二酮配合物作为反应底物,提供乙酰丙酮和二苄叉丙酮部分直接参与与肼的环化反应,以优异的产率形成相应的吡唑。本方法在最终结构中引入了重要的N-杂环部分,从药物化学角度赋予该反应巨大的应用价值,特别是在药物发现的后期修饰策略中。

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