Ouzounthanasis Konstantinos A, Glamočlija Jasmina, Ćirić Ana, Koumbis Alexandros E
Laboratory of Organic Chemistry, Department of Chemistry, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Department of Plant Physiology, Institute for Biological Research "Siniša Stanković"-National Institute of Republic of Serbia, University of Belgrade, 11060 Belgrade, Serbia.
Molecules. 2025 Jan 27;30(3):589. doi: 10.3390/molecules30030589.
Isoxazole derivatives (isoxazoles, isoxazolines, and isoxazolidines) are present in the structure of several natural products and/or pharmaceutically interesting compounds. In this work, a synthetic study for the preparation of fused isoxazoline/isoquinolinone hybrids is presented. The initial approach involving the sequential 1,3-dipolar cycloaddition of nitrile oxides to indenone (to obtain the isoxazoline ring) and a Beckmann rearrangement (to construct the isoquinolinone lactam system) was complicated by the formation of fragmentation products during the latter. Therefore, the desired hybrids were successfully reached by applying DDQ-mediated oxidation of the respective isoxazolidines. Based on the results, key observations were made regarding the mechanism of the Beckmann reaction. Moreover, selected isoxazole benzamides and fused isoxazoline/isoxazolidine isoquinolinones were in vitro evaluated against a series of fungi strains (including a 2D checkerboard assay with ketoconazole), revealing that some of these compounds exhibit promising antifungal activity.
异恶唑衍生物(异恶唑、异恶唑啉和异恶唑烷)存在于几种天然产物和/或具有药学意义的化合物的结构中。在这项工作中,展示了一种用于制备稠合异恶唑啉/异喹啉酮杂化物的合成研究。最初的方法涉及腈氧化物与茚满酮的顺序1,3 -偶极环加成反应(以获得异恶唑啉环)和贝克曼重排反应(以构建异喹啉酮内酰胺体系),但在后者过程中由于碎片产物的形成而变得复杂。因此,通过应用DDQ介导的相应异恶唑烷的氧化反应成功得到了所需的杂化物。基于这些结果,对贝克曼反应的机理进行了关键观察。此外,对选定的异恶唑苯甲酰胺和稠合异恶唑啉/异恶唑烷异喹啉酮进行了针对一系列真菌菌株的体外评估(包括与酮康唑的二维棋盘法测定),结果表明其中一些化合物表现出有前景的抗真菌活性。