Filatov Vadim, Kukushkin Maksim, Kuznetsova Juliana, Skvortsov Dmitry, Tafeenko Viktor, Zyk Nikolay, Majouga Alexander, Beloglazkina Elena
Moscow State University, Department of Chemistry Leninskie gory 1-3 Moscow 119991 Russia
Skolkovo Institute of Science and Technology 4 Alfred Nobel Street Skolkovo 143025 Russian Federation.
RSC Adv. 2020 Apr 6;10(24):14122-14133. doi: 10.1039/d0ra02374d.
A new synthetic approach for realizing biologically relevant bis-aryl spiro[azetidine-2,3'-indoline]-2',4-diones was developed based on Staudinger ketene-imine cycloaddition through the one-pot reaction of substituted acetic acids and Schiff bases in the presence of oxalyl chloride and an organic base. A series of [azetidine-2,3'-indoline]-2',4-diones were synthesized using this method. For comparison, the same compounds were obtained using a known technique, where ketene is generated from pre-synthesized acyl chloride. It was shown that the use of oxalyl chloride for ketene generation in the one-pot reaction at room temperature allows for the reversal of the diastereoselectivity of spiro-lactam formation, unlike previously described procedures.
基于施陶丁格烯酮-亚胺环加成反应,通过在草酰氯和有机碱存在下,使取代乙酸与席夫碱一锅反应,开发了一种实现具有生物学相关性的双芳基螺[氮杂环丁烷-2,3'-吲哚啉]-2',4-二酮的新合成方法。使用该方法合成了一系列[氮杂环丁烷-2,3'-吲哚啉]-2',4-二酮。为作比较,采用已知技术获得了相同的化合物,其中烯酮由预先合成的酰氯生成。结果表明,与先前描述的方法不同,在室温下的一锅反应中使用草酰氯生成烯酮可使螺内酰胺形成的非对映选择性发生反转。