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首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >The application of electrochemistry to pharmaceutical stability testing - Comparison with in silico prediction and chemical forced degradation approaches
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The application of electrochemistry to pharmaceutical stability testing - Comparison with in silico prediction and chemical forced degradation approaches

机译:电化学在药物稳定性测试中的应用-与计算机预测和化学强制降解方法的比较

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The aim of this study was to evaluate the use of electrochemistry to generate oxidative degradation products of a model pharmaceutical compound. The compound was oxidized at different potentials using an electrochemical flow-cell fitted with a glassy carbon working electrode, a Pd/H-2 reference electrode and a titanium auxiliary electrode. The oxidative products formed were identified and structurally characterized by LC-ESI-MS/MS using a high resolution Q-TOF mass spectrometer. Results from electrochemical oxidation using electrolytes of different pH were compared to those from chemical oxidation and from accelerated stability studies. Additionally, oxidative degradation products predicted using an in silico commercially available software were compared to those obtained from the various experimental methods. The electrochemical approach proved to be useful as an oxidative stress test as all of the final oxidation products observed under accelerated stability studies could be generated; previously reported reactive intermediate species were not observed most likely because the electrochemical mechanism differs from the oxidative pathway followed under accelerated stability conditions. In comparison to chemical degradation tests electrochemical degradation has the advantage of being much faster and does not require the use of strong oxidizing agents. Moreover, it enables the study of different operating parameters in short periods of time and optimisation of the reaction conditions (pH and applied potential) to achieve different oxidative products mixtures. This technique may prove useful as a stress test condition for the generation of oxidative degradation products and may help accelerate structure elucidation and development of stability indicating analytical methods. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究的目的是评估电化学的使用,以产生模型药物化合物的氧化降解产物。使用装有玻璃碳工作电极,Pd / H-2参比电极和钛辅助电极的电化学流通池,将化合物在不同电势下氧化。使用高分辨率Q-TOF质谱仪通过LC-ESI-MS / MS对形成的氧化产物进行鉴定和结构表征。将使用不同pH值的电解质进行电化学氧化的结果与化学氧化和加速稳定性研究得到的结果进行了比较。另外,将使用计算机上可商业获得的软件预测的氧化降解产物与从各种实验方法获得的氧化降​​解产物进行了比较。事实证明,电化学方法可用作氧化应力测试,因为可以生成在加速稳定性研究中观察到的所有最终氧化产物。由于电化学机理不同于在加速稳定性条件下遵循的氧化途径,因此极不可能观察到先前报道的反应性中间物种。与化学降解测试相比,电化学降解具有更快的优势,并且不需要使用强氧化剂。而且,它使得能够在短时间内研究不同的操作参数并优化反应条件(pH和施加电势)以实现不同的氧化产物混合物。该技术可能被证明是用于氧化降解产物生成的压力测试条件,并且可以帮助加快结构阐明和发展表明分析方法的稳定性。 (C)2015 Elsevier B.V.保留所有权利。

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