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一锅法、伸缩式方法用于取代苯并[]吡啶并/吡嗪并/哒嗪并[1,2-][1,2,4]噻二嗪二氧化物的化学选择性合成及其在生物系统中的意义†。

One-Pot, Telescopic Approach for the Chemoselective Synthesis of Substituted Benzo[]pyrido/pyrazino/pyridazino[1,2-][1,2,4]thiadiazine dioxides and Their Significance in Biological Systems †.

机构信息

Department of Chemistry, School of Advanced Sciences , Vellore Institute of Technology , Vellore - 632014 , India.

Chemistry Division, School of Advanced Sciences , Vellore Institute of Technology , Chennai - 600127 , India.

出版信息

J Org Chem. 2019 Sep 20;84(18):11382-11390. doi: 10.1021/acs.joc.9b00869. Epub 2019 Sep 4.

Abstract

The one-pot telescopic approach has been developed for the chemoselective synthesis of substituted benzo[]pyrido/pyrazino/pyridazino[1,2-][1,2,4]thiadiazine dioxides using readily available 2-aminopyridines/pyrazines/pyridazine and 2-chloro benzene sulfonyl chloride. This one-pot procedure involves the chemoselective sulfonylation of 2-aminopyridines/pyrazines/pyridazine with 2-chloro benzene sulfonyl chloride followed by a Cu(I)-catalyzed Ullmann-type C-N coupling reaction to obtain benzo[]pyrido/pyrazino/pyridazino[1,2-][1,2,4]thiadiazine dioxides with broad substrate scope and high functional group tolerance. The synthetic sequence merges well with the nucleophilic attack on the 2-amino group of pyridines/pyrazines/pyridazines on the 2-chloro benzene sulfonyl chloride, followed by Cu(I)-catalyzed ipso chloro displacement to C-N bond formation resulting in a more modular and straightforward approach. Moreover, the biological significance of the synthesized benzothiadiazine dioxides was evaluated by following their ability to bind to protein macromolecules and their anti-inflammatory activity.

摘要

本文开发了一种一锅法伸缩策略,用于通过使用易得的 2-氨基吡啶/吡嗪/哒嗪和 2-氯苯磺酰氯,选择性合成取代的苯并[]吡啶并/吡嗪并/哒嗪并[1,2-][1,2,4]噻二嗪二氧化物。此一锅法过程涉及 2-氨基吡啶/吡嗪/哒嗪与 2-氯苯磺酰氯的选择性磺酰化,然后进行 Cu(I)-催化的 Ullmann 型 C-N 偶联反应,以获得具有广泛底物范围和高官能团耐受性的苯并[]吡啶并/吡嗪并/哒嗪并[1,2-][1,2,4]噻二嗪二氧化物。合成序列很好地融合了吡啶/吡嗪/哒嗪上的 2-氨基对 2-氯苯磺酰氯的亲核攻击,然后是 Cu(I)-催化的间位氯取代到 C-N 键形成,导致更模块化和更直接的方法。此外,通过研究它们与蛋白质大分子结合的能力及其抗炎活性,评估了合成的苯并噻二嗪二氧化物的生物学意义。

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