Cinchona Alkaloids-Derivatives and Applications.

Q1 Biochemistry, Genetics and Molecular Biology Alkaloids: Chemistry and Biology Pub Date : 2019-01-01 Epub Date: 2019-02-22 DOI:10.1016/bs.alkal.2018.11.001
Przemysław J Boratyński, Mariola Zielińska-Błajet, Jacek Skarżewski
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引用次数: 20

Abstract

Major Cinchona alkaloids quinine, quinidine, cinchonine, and cinchonidine are available chiral natural compounds (chiral pool). Unlike many other natural products, these alkaloids are available in multiple diastereomeric forms which are separated on an industrial scale. The introduction discusses in short conformational equilibria, traditional separation scheme, biosynthesis, and de novo chemical syntheses. The second section concerns useful chemical applications of the alkaloids as chiral recognition agents and effective chiral catalysts. Besides the Sharpless ethers and quaternary ammonium salts (chiral PTC), the most successful bifunctional organocatalysts are based on 9-amino derivatives: thioureas and squaramides. The third section reports the main transformations of Cinchona alkaloids. This covers reactions of the 9-hydroxyl group with the retention or inversion of configuration. Specific Cinchona rearrangements enlarging [2.2.2]bicycle of quinuclidine to [3.2.2] products are connected to the 9-OH substitution. The syntheses of numerous esterification and etherification products are described, including many examples of bi-Cinchona alkaloid ethers. Further derivatives comprise 9-N-substituted compounds. The amino group is introduced via an azido function with the inversion of configuration at the stereogenic center C9. The 9-epi-amino-alkaloids provide imines, amides, imides, thioureas, and squaramides. The syntheses of 9-carbon-, 9-sulfur-, and 9-selenium-substituted derivatives are discussed. Oxidation of the hydroxyl group of any alkaloid gives ketones, which can be selectively reduced, reacted with Grignard reagents, or subjected to the Corey-Chaykovsky reaction. The alkaloids were also partially degraded by splitting C4'-C9 or N1-C8 bonds. In order to immobilize Cinchona alkaloids the transformations of the 3-vinyl group were often exploited. Finally, miscellaneous functionalizations of quinuclidine, quinoline, and examples of various metal complexes of the alkaloids are considered.

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金鸡纳生物碱衍生物及其应用。
金鸡纳主要生物碱奎宁、奎尼丁、金鸡纳宁和金鸡纳定是可用的手性天然化合物(手性库)。与许多其他天然产品不同,这些生物碱以多种非对映异构体形式存在,可在工业规模上分离。介绍了短构象平衡、传统分离方案、生物合成和新化学合成。第二部分介绍了生物碱作为手性识别剂和有效的手性催化剂的化学应用。除了Sharpless醚和季铵盐(手性PTC)外,最成功的双功能有机催化剂是基于9个氨基衍生物:硫脲和角酰胺。第三部分报道金鸡纳生物碱的主要转化。这包括具有构型保留或反转的9-羟基的反应。特定的Cinchona重排将喹那定的[2.2.2]环扩大到[3.2.2]产物与9-OH取代相连接。描述了许多酯化和醚化产物的合成,包括许多双金鸡纳生物碱醚的例子。进一步的衍生物包括9- n取代化合物。氨基是通过在立体中心C9的构型反转的叠氮函数引入的。9-表氨基生物碱提供亚胺、酰胺、亚胺、硫脲和角酰胺。讨论了9-碳、9-硫和9-硒取代衍生物的合成。任何生物碱的羟基氧化生成酮,酮可以选择性地还原,与格氏试剂反应,或进行科里-柴可夫斯基反应。生物碱也通过分裂C4'-C9或N1-C8键而部分降解。为了固定化金鸡纳生物碱,经常利用3-乙烯基的转化。最后,考虑了喹喹啉和喹啉的杂化,以及生物碱的各种金属配合物的例子。
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来源期刊
Alkaloids: Chemistry and Biology
Alkaloids: Chemistry and Biology Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
13.70
自引率
0.00%
发文量
21
期刊最新文献
Preface. Structural variety and pharmacological potential of naphthylisoquinoline alkaloids. Structure, biosynthesis and activity of indolactam alkaloids. The synthetic chemistry of sarpagine-ajmaline-type alkaloids. Chemistry and biology of ent-morphinan alkaloids.
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