4-取代(1S,9aR)-1-[(1,2,3-三唑-1-基)甲基]八氢- 1h -喹啉氨酸的合成与结构

Z. Nurmaganbetov, S. Fazylov, K. M. Turdybekov, O. Nurkenov, D. M. Turdybekov, G.K. Mukusheva, Ye.V. Minayeva, G. Khabdolda
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引用次数: 1

摘要

本文介绍了一些生物碱羽豆碱的1,4-二取代1h -1,2,3-三唑衍生物的合成和结构特征的研究结果。在喹啉主链C-1位置的羟亚甲基上进行了狼氨酸修饰反应。研究表明,(八氢- 2h -喹啉-1-甲基)甲磺酸盐是由亮氨酸与甲磺酰氯在二氯甲烷中相互作用而形成的,产率高达93%。随后将该化合物与叠氮化钠在二甲基甲酰胺中加热处理,生成1-(叠氮多甲基)八氢- 2h -喹啉,收率为61%。新叠氮化物与不同性质的端炔在СuSO4和抗坏血酸钠水溶液存在下在二甲基甲酰胺中反应,可生成相应的4-取代(1S,9aR)-1-[(1,2,3-三唑-1-基)甲基]八氢- 1h -喹啉。在三唑环的C-4位置上含有不同芳基取代基的新的1,2,3-三唑衍生物已经被制备出来。Sharpless催化剂的作用机理解释了反应的高选择性。通过x射线衍射分析,确定了4-芳基三唑基甲基八氢喹啉的分子空间结构。新化合物的x射线结构分析数据以CIF文件的形式存放在剑桥晶体学数据中心。
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Synthesis and structure of 4-substituted (1S,9aR)-1-[(1,2,3-triazol-1-yl)methyl]octahydro-1H-quinolysines of lupinine
The article presents results on the synthesis and investigation of the structural features of a number of 1,4-disubstituted 1H-1,2,3-triazole derivatives of the alkaloid lupinine. Lupinine modification reactions were carried out at the hydroxymethylene group in the C-1 position of the quinolysine backbone. It has been shown that (octahydro-2H-quinolysine-1-ylmethyl)methanesulfonate in high yield (93%) is formed by the interaction of lupinine with methanesulfonyl chloride in methylene chloride. Subsequent treatment of this compound with sodium azide in dimethylformamide on heating leads to the formation of 1-(azidomethyl)octahydro-2H-quinolysine in 61% yield. It has been found that the reaction of a new azide with terminal alkynes of various nature in the presence of aqueous СuSO4 and sodium ascorbate in dimethylformamide can form the corresponding 4-substituted (1S,9aR)-1-[(1,2,3-triazol-1-yl)methyl]octahydro-1H-quinolysines. New 1,2,3-triazole derivatives of lupinine containing various aryl substituents at the C-4 position of the triazole ring have been obtained. The high selectivity of the reaction is explained by the action mechanism of the Sharpless catalyst. The spatial structure of the molecules of lupinine methanesulfonate, 4-aryltriazolylmethyl-octahydro-quinolysines has been established by X-ray diffraction analysis. X-ray structural analysis data of new compounds have been deposited in the form of CIF files at the Cambridge Crystallographic Data Center.
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