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Preparation of imidazolidin-4-ones and their evaluation as hydrolytically cleavable precursors for the slow release of bioactive volatile carbonyl derivatives

机译:咪唑啉丁-4-酮的制备及其作为可水解裂解的生物活性挥发性羰基衍生物缓慢释放的前体的评估

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摘要

Imidazolidin-4-ones are suitable in practical applications as hydrolytically cleavable precursors for the controlled release of fragrant aldehydes and ketones. The corresponding profragrances were prepared by treating aliphatic carbonyl compounds with commercially available amino acid amines in the presence of a base to yield mixtures of diastereomers. The two diastereomers isolated from the reaction of glycinamide hydrochloride with (–)-menthone were separated by column chromatography. The absolute stereochemistry of the isomers was determined by NMR spectroscopy and confirmed by X-ray single crystal structure analysis. Under acidic conditions and in protic solvents, the two diastereomers slowly isomerized without releasing the ketone. The hydrolysis of the precursors was investigated by solvent extraction from buffered aqueous solutions and a cationic surfactant emulsion, as well as by dynamic headspace analysis after deposition onto a cotton surface. Generally, ketones were shown to be more readily released than aldehydes. Increasing the size of the substituents at C-5 decreased the rate of hydrolysis in solution and on the cotton surface. Glycinamide-based imidazolidin-4-ones were more efficient than the corresponding oxazolidin-4-ones or oxazolidines. Neither the release rates in solution, nor the hydrophobicity of the precursor structure (which influences deposition), nor the combination of these two parameters allowed easily predicting the performance of the delivery systems in application.
机译:咪唑烷丁-4-酮在实际应用中适合作为可水解裂解的前体,用于控制释放芳香醛和酮。通过在碱的存在下用市售氨基酸胺处理脂族羰基化合物以制备非对映异构体的混合物来制备相应的香料。通过柱色谱分离从甘氨酰胺盐酸盐与(-)-薄荷酮反应中分离出的两种非对映异构体。异构体的绝对立体化学通过NMR光谱测定,并通过X射线单晶结构分析证实。在酸性条件下和质子溶剂中,这两种非对映异构体缓慢异构化而未释放出酮。通过从缓冲水溶液和阳离子表面活性剂乳液中萃取溶剂,以及沉积到棉花表面后进行动态顶空分析,研究了前体的水解。通常,显示出酮比醛更容易释放。 C-5处取代基尺寸的增加会降低溶液中和棉表面上的水解速率。基于甘氨酰胺的咪唑啉丁-4-酮比相应的恶唑烷丁-4-酮或恶唑烷更有效。溶液中的释放速率,或前体结构的疏水性(影响沉积),或者这两个参数的组合,都不能轻易预测应用中输送系统的性能。

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