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利用动力学同位素效应降低 DO/HO 混合物中头孢曲松的分解。

Utilization of a kinetic isotope effect to decrease decomposition of ceftriaxone in a mixture of DO/HO.

机构信息

Xellia Ltd., Slavonska avenija 24/6, Zagreb 10000, Croatia.

Xellia Ltd., Slavonska avenija 24/6, Zagreb 10000, Croatia.

出版信息

Eur J Pharm Sci. 2023 Aug 1;187:106461. doi: 10.1016/j.ejps.2023.106461. Epub 2023 May 7.

Abstract

The discovery of cephalosporin and demonstration of its improved stability in aqueous solution, as well as enhanced in vitro activity against penicillin-resistant organisms, were major breakthroughs in the development of β-lactam antibiotics. Although cephalosporins are more stable with respect to hydrolytic degradation than penicillins, they still experience a variety of chemical transformations. The present study offers an insight into the rates and mechanisms of ceftriaxone degradation at the therapeutic concentration in water, a mixture of water and deuterium oxide, and deuterium oxide itself at the neutral pH. Specific ceftriaxone degradation products were observed in aged samples (including a previously unreported dimer-type species), and by comparing the degradation rates in HO and DO, the observation of a kinetic isotope effect provided some valuable insight as to the nature of the initial ceftriaxone degradation. The effect of protium to deuterium isotope change on the degradation kinetics of ceftriaxone was evaluated using the method of initial rates based on HPLC analysis as well as by quantitative H NMR spectroscopy. Moreover, computational analysis was utilized to get a molecular insight into chemical processes governing the ceftriaxone degradation and to rationalize the stabilizing effect of replacing HO with DO.

摘要

头孢菌素的发现及其在水溶液中稳定性的提高,以及对青霉素耐药菌体外活性的增强,是β-内酰胺类抗生素发展的重大突破。尽管头孢菌素相对于青霉素的水解降解更稳定,但它们仍然会经历各种化学转化。本研究深入了解了头孢曲松在水、水和重水混合物以及中性 pH 值的重水自身中的治疗浓度下的降解速率和机制。在老化样品中观察到了特定的头孢曲松降解产物(包括以前未报道的二聚体型物质),并且通过比较 HO 和 DO 中的降解速率,观察到动力学同位素效应为头孢曲松的初始降解的性质提供了一些有价值的见解。使用基于 HPLC 分析的初始速率方法以及定量 H NMR 光谱法评估了氘代对头孢曲松降解动力学的影响。此外,还利用计算分析深入了解了控制头孢曲松降解的化学过程,并合理化了用 DO 替代 HO 的稳定作用。

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