(-)-αsantonin的立体控制分子内转化

IF 0.3 Q4 CHEMISTRY, MULTIDISCIPLINARY Chemical Bulletin of Kazakh National University Pub Date : 2022-01-21 DOI:10.15328/cb1251
A. Iskanderov, P. Vojtisek, S. Zhokizhanova, Aktoty Jadenova, N. Merkhatuly
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摘要

甾烷倍半萜γ-内酯的化学转化,得到新的生物活性化合物,已成为药物化学研究的重要方向。本文讨论了一种具有广泛生物活性的天然化合物(-)-α山莨菪碱的倍半萜γ-内酯的分子内立体转化。在室温氩气条件下,α-三冬氨酸在Me3CONa-DMF碱的存在下与甲基、乙基醇和烷基卤化物反应,立体选择性合成了新的具有实际意义的顺式缩合酮-丹参烯酯和乙基化三冬氨酸衍生物。结果表明,在该反应条件下,三冬氨酸碳离子形成的初始阶段引发了随后的分子内亲电重排,形成了烯酸盐离子,并进一步与亲核和亲电试剂发生立体选择性相互作用。结果表明,C4-α-乙基-三冬氨酸的合成具有扭曲椅椅结构的六元环构型,可以证实所提出的具有实际应用价值的6-酮-癸烷醚的形成机理。本文采用现代物化和光谱学(1H NMR、2D COZY NMR、NOESY、质谱和x射线结构分析)研究方法,建立了合成化合物的结构和空间结构。
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Stereocontrolled intramolecular transformations of (-)-α santonin
Chemical transformations of eudesmane sesquiterpene γ-lactones, leading to new biologically active compounds, have become an important direction in medicinal chemistry. This article discusses the stereoscopic intramolecular transformations of the sesquiterpene γ-lactone of the eudesmanic structure (-)-α santonin, a perspective natural compound characterized by a wide spectrum of biological activity.Stereoselective synthesis of new practically significant cis-condensed keto-eudesmane esters and ethylated santonin derivatives was carried out at room temperature in an argon atmosphere by the reaction of α-santonin with methyl and ethyl alcohols and alkyl halides in the presence of the Me3CONa-DMF base. It was revealed that, under the reaction conditions, the initial stage of santonin carbanion formation initiates subsequent stages of intramolecular electrophilic rearrangements with the formation of anenolate ion, which futhur interacts stereoselectively with nucleophilic and electrophilic reagents.It was shown that the synthesis of C4-α-ethyl-santonin with a six-membered ring configuration in the form of a distorted chair-chair can serve as a confirmation of the proposed mechanism of formation of practically valuable 6-keto-eudesmane ethers. In this article, the structure and spatial structure of the synthesized compounds is established using modern physicochemical and spectroscopic (1H NMR, 2D COZY NMR, NOESY, mass-spectrometry and X-ray structural analysis) research methods.
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