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反相液相色谱-电喷雾电离质谱生物分析方法中的流动相pH值和有机改性剂:灵敏度评估、色谱分析以及保留时间与计算机辅助logD预测的相关性

Mobile phase pH and organic modifier in reversed-phase LC-ESI-MS bioanalytical methods: assessment of sensitivity, chromatography and correlation of retention time with in silico logD predictions.

作者信息

Silvester Steve

机构信息

Pre-clinical Bioanalysis & Toxicokinetics, Drug Safety & Metabolism, AstraZeneca R&D Alderley, Macclesfield, Cheshire, SK10 4TG, UK.

出版信息

Bioanalysis. 2013 Nov;5(22):2753-70. doi: 10.4155/bio.13.250.

Abstract

BACKGROUND

The aim of the work described herein was to undertake a systematic investigation of the effect of mobile phase pH and organic modifier in typical reversed-phase LC-MS methods with regard to ESI-MS response, chromatographic performance and correlation of retention time with in silico logD predictions.

RESULTS

For the test set of pharmaceutical analytes investigated, ESI-MS response was generally greater when employing methanol rather than acetonitrile as the organic modifier, and increases of up to tenfold were observed dependent on the pH-buffered mobile phase employed. Deleterious effects on chromatographic performance of protonated basic analyte were observed under conditions of neutral to weakly basic pH. A qualitative correlation between plots of predicted logD and observed retention time against pH was demonstrated.

CONCLUSION

In the absence of a simple and/or predictive dependence of analyte ESI-MS response on the mobile phase pH, a practical evaluation should be undertaken when absolute sensitivity is paramount. The use of in silico predictions of analyte logD to direct the development of bioanalytical assays is broadly valid, but further scrutiny is recommended in predicting the retention of ionized analyte.

摘要

背景

本文所述工作的目的是针对典型的反相液相色谱 - 质谱联用方法,系统研究流动相pH值和有机改性剂对电喷雾电离质谱(ESI-MS)响应、色谱性能以及保留时间与计算机模拟logD预测值之间相关性的影响。

结果

在所研究的药物分析物测试集中,当使用甲醇而非乙腈作为有机改性剂时,ESI-MS响应通常更大,并且根据所采用的pH缓冲流动相,观察到响应增加高达十倍。在中性至弱碱性pH条件下,观察到质子化碱性分析物对色谱性能有有害影响。证明了预测logD与观察到的保留时间相对于pH的曲线之间存在定性相关性。

结论

在分析物ESI-MS响应对流动相pH不存在简单和/或预测性依赖关系的情况下,当绝对灵敏度至关重要时,应进行实际评估。使用分析物logD的计算机模拟预测来指导生物分析方法的开发具有广泛的有效性,但在预测离子化分析物的保留时建议进行进一步审查。

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