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奎宁类化合物研究进展
引用本文:车志平,杨进明,田月娥,刘圣明,姜佳,陈根强.奎宁类化合物研究进展[J].化学通报,2018,81(9):792-796,804.
作者姓名:车志平  杨进明  田月娥  刘圣明  姜佳  陈根强
作者单位:河南科技大学林学院天然产物与化学生物学实验室
基金项目:国家自然科学基金资助项目(U1604105);河南省自然科学基金(182300410043,182300410016)
摘    要:本文介绍了奎宁类化合物的发展历史,并分析了奎宁的化学结构。奎宁类化合物不仅可以作为催化剂,有效催化Michael/Mannich反应、Aza-Henry反应、环加成反应和不对称烯烃异构化反应,并且还可作为其他配体,已经成为不对称合成领域中的不可或缺成员。化学家为了寻找更有效的催化剂及配体,以奎宁类生物碱为前体,对其结构进行改造,改造位点主要集中在C-9位羟基、C-6'位甲氧基、奎宁双环的氮原子和环外烯键上,制备了众多催化剂及配体。此外,奎宁类化合物具有多种独特的生物效应,主要表现在抗疟原虫活性和杀虫活性研究方面。以奎宁为杀虫剂先导结构的优化与杀虫构效关系的系统研究将促进新农药创制学科的发展。

关 键 词:奎宁  化学结构  催化剂  生物效应  杀虫活性
收稿时间:2018/5/2 0:00:00
修稿时间:2018/6/30 0:00:00

Research Progress of Quinine Compounds
CHE Zhi-ping,YANG Jin-ming,TIAN Yue-e,LIU Sheng-ming,JIANG Jia and CHEN Gen-qiang.Research Progress of Quinine Compounds[J].Chemistry,2018,81(9):792-796,804.
Authors:CHE Zhi-ping  YANG Jin-ming  TIAN Yue-e  LIU Sheng-ming  JIANG Jia and CHEN Gen-qiang
Institution:Laboratory of Natural Products Chemical Biology,College of Forestry,Henan University of Science and Technology,Laboratory of Natural Products Chemical Biology,College of Forestry,Henan University of Science and Technology,Laboratory of Natural Products Chemical Biology,College of Forestry,Henan University of Science and Technology,Laboratory of Natural Products Chemical Biology,College of Forestry,Henan University of Science and Technology,Laboratory of Natural Products Chemical Biology,College of Forestry,Henan University of Science and Technology,Laboratory of Natural Products Chemical Biology,College of Forestry,Henan University of Science and Technology
Abstract:This paper reviews the development history of quinine compounds, and analyses the chemical structure of quinine. First, in order to discover more effective catalysts and ligand, the chemists used quinine as a precursor, and the modification of its structure. The sites of the modification of quinine mainly concentrated in the C-9 hydroxyl, C-6'' methoxyl, nitrogen atoms of dual ring and an out-ring double-bond, and the preparation of a number of catalyst and ligand. Quinine compounds, as catalysts and ligands, can effectively catalyze the reaction of Michael/Mannich, Aza-Henry, cycloaddition and asymmetric olefin isomerization, and can be used as other ligand, they have become a milestone. Second, quinine compounds have many unique biological effects, and main performance in antiparasite and insecticidal activity. The systematic research on structure optimizations and quantitative structure-activity relationship (QSAR) of quinine derivatives as insecticidal agents will promote development of new pesticide innovation.
Keywords:Quinine  Chemical  structure  Catalysis  Biological  effects  Insecticidal  activity
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