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流动相添加剂对液相色谱-四极杆飞行时间质谱联用分析人参皂苷的定性和定量分析的影响。

Effect of mobile phase additives on qualitative and quantitative analysis of ginsenosides by liquid chromatography hybrid quadrupole-time of flight mass spectrometry.

机构信息

State Key Laboratory of Natural Medicines, Key Lab of Drug Metabolism & Pharmacokinetics, China Pharmaceutical University, Tongjiaxiang 24, Nanjing 210009, China.

出版信息

J Chromatogr A. 2013 Jul 5;1297:29-36. doi: 10.1016/j.chroma.2013.04.001. Epub 2013 Apr 20.

Abstract

This study was to systematically investigate the effect of mobile phase additives, including ammonia water, formic acid, acetic acid, ammonium chloride and water (as a control), on qualitative and quantitative analysis of fifteen representative ginsenosides based on liquid chromatography hybrid quadrupole-time of flight mass spectrometry (LC-Q-TOF/MS). To evaluate the influence of mobile phase additives on qualitative performance, the quality of the negative mode MS/MS spectra of ginsenosides produced by online LC-Q-TOF/MS analyses, particularly the numbers and intensities of fragment ions, were compared under different adduct ion states, and found to be strongly affected by the mobile phase additives. When 0.02% acetic acid was added in the mobile phase, the deprotonated ginsenosides ions produced the most abundant product ions, while almost no product ion was observed for the chlorinated ginsenoside ions when 0.1mM ammonium chloride was used as the mobile phase additive. On the other hand, sensitivity, linear range and precision were adopted to investigate the quantitative performance affected by different mobile phase additives. Validation results of the LC-Q-TOF/MS-based quantitative performance for ginsenosides showed that ammonium chloride not only provided the highest sensitivity for all the target analytes, but also dramatically improved the linear ranges, the intra-day and inter-day precisions comparing to the results obtained using other mobile phase additives. Importantly, the validated method, using 0.1mM ammonium chloride as the mobile phase additive, was successfully applied to the quantitative analysis of ginsenosides in rat plasma after intragastric administration of Ginsenoside Extract at 200mg/kg. In conclusion, 0.02% acetic acid was deemed to be the most suitable mobile phase additive for qualitative analysis of ginsenosides, and 0.1mM ammonium chloride in mobile phase could lead to the best quantitative performance. Our results reveal that choosing the appropriate mobile phase additive is an important step in optimizing the analytical conditions, and the best quantitative method may not be suitable for the qualitative analysis.

摘要

本研究旨在系统地考察流动相添加剂(包括氨水、甲酸、乙酸、氯化铵和水(作为对照))对基于液相色谱-四极杆飞行时间质谱联用(LC-Q-TOF/MS)的 15 种代表性人参皂苷的定性和定量分析的影响。为了评估流动相添加剂对定性性能的影响,比较了在线 LC-Q-TOF/MS 分析产生的人参皂苷负离子模式 MS/MS 谱中加合物离子态下的谱图质量,特别是碎片离子的数量和强度,发现这些参数受流动相添加剂的强烈影响。当流动相中添加 0.02%乙酸时,产生的人参皂苷去质子化离子产生最丰富的产物离子,而当流动相添加剂为 0.1mM 氯化铵时,几乎观察不到氯化人参皂苷离子的产物离子。另一方面,采用灵敏度、线性范围和精密度来考察不同流动相添加剂对定量性能的影响。基于 LC-Q-TOF/MS 的人参皂苷定量性能的验证结果表明,氯化铵不仅为所有目标分析物提供了最高的灵敏度,而且与使用其他流动相添加剂获得的结果相比,显著改善了线性范围、日内和日间精密度。重要的是,该验证方法使用 0.1mM 氯化铵作为流动相添加剂,成功应用于 200mg/kg 灌胃给予人参皂苷提取物后大鼠血浆中人参皂苷的定量分析。总之,0.02%乙酸被认为是人参皂苷定性分析最适合的流动相添加剂,而流动相中 0.1mM 氯化铵可以带来最佳的定量性能。我们的结果表明,选择合适的流动相添加剂是优化分析条件的重要步骤,最佳的定量方法可能不适合定性分析。

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