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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 >Electrochemical oxidation coupled with liquid chromatography and mass spectrometry to study the oxidative stability of active pharmaceutical ingredients in solution: A comparison of off-line and on-line approaches
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Electrochemical oxidation coupled with liquid chromatography and mass spectrometry to study the oxidative stability of active pharmaceutical ingredients in solution: A comparison of off-line and on-line approaches

机译:电化学氧化与液相色谱和质谱联用,研究溶液中活性药物成分的氧化稳定性:离线方法与在线方法的比较

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摘要

Stability studies of pharmaceutical drug products and pharmaceutical active substances are important to research and development in order to fully understand and maintain product quality and safety throughout its shelf-life. Oxidative forced degradation studies are among the different types of stability studies performed by the pharmaceutical industry in order to understand the intrinsic stability of drug molecules. We have been comparing the use of electrochemistry as an alternative oxidative forced degradation method to traditional forced degradation and accelerated stability studies. Using the electrochemical degradation approach the substrate oxidation takes place in a commercially available electrochemical cell and the effluent of the cell can be either a) directly infused into the mass spectrometer orb) injected in a chromatographic column for separation of the different products formed prior to the mass spectrometry analysis. To enable the study of large numbers of different experimental conditions and molecules we developed a new dual pump automated electrochemical screening platform. This system used a HPLC pump and autosampler to load and wash the electrochemical cell and deliver the oxidized sample plug to a second injection loop. This system enabled the automatic sequential analyses of large numbers of different solutions under varied experimental conditions without need for operator intervention during the run sequence. Here we describe the system and evaluate its performance using a test molecule with well characterized stability and compare results to those obtained using an off-line electrochemistry approach. (C) 2016 Elsevier B.V. All rights reserved.
机译:药物产品和药物活性物质的稳定性研究对于研发至关重要,以便在整个保质期内充分了解并保持产品质量和安全性。为了了解药物分子的固有稳定性,氧化强迫降解研究是制药行业进行的不同类型的稳定性研究之一。我们一直在比较电化学方法作为传统强迫降解和加速稳定性研究的替代氧化强迫降解方法的用途。使用电化学降解方法,底物氧化发生在市售的电化学池中,并且池中的流出物可以是:a)直接注入质谱仪中;或b)注入色谱柱中,以分离在分离之前形成的不同产物。质谱分析。为了能够研究大量不同的实验条件和分子,我们开发了一种新的双泵自动电化学筛选平台。该系统使用HPLC泵和自动进样器加载和洗涤电化学池,并将氧化后的样品塞输送到第二个进样环。该系统能够在变化的实验条件下自动对大量不同溶液进行自动顺序分析,而无需操作人员在运行顺序中进行干预。在这里,我们描述该系统,并使用具有良好表征的稳定性的测试分子评估其性能,并将结果与​​使用离线电化学方法获得的结果进行比较。 (C)2016 Elsevier B.V.保留所有权利。

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