无需色谱分离即可对人体血浆中的罗哌卡因和布比卡因进行定量质谱分析。

Nahla N Salama, Shudong Wang
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引用次数: 0

摘要

本研究采用飞行时间质谱法测定了布比卡因在真品、药用和加标人体血浆中的含量,以及其杂质 2,6-二甲基苯胺和碱性降解产物的含量。该方法基于飞行时间电子喷雾离子化质谱技术,无需初步色谱分离,并利用布比卡因作为罗哌卡因的内标,罗哌卡因作为布比卡因的内标。药物浓度与所分析物质的离子峰强度比之间建立了线性关系。两种药物在 23.8 至 2380.0 纳克毫升(-1)之间呈线性关系。在正品和加标人体血浆中的相关系数大于或等于 0.996。平均回收率在 95.39%-102.75% 之间。该方法准确度高(RE% < 5%),重现性好,测定内和测定间精密度(RSD% < 8.0%)良好。两种药物的定量限均为 23.8 ng mL(-1)。该方法不仅灵敏度高、选择性强,而且简便有效,可用于测定或鉴定真品和生物液体中的两种药物。该方法可用于所研究药物的纯度检测、质量控制和稳定性监测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Quantitative mass spectrometric analysis of ropivacaine and bupivacaine in authentic, pharmaceutical and spiked human plasma without chromatographic separation.

Quantitative mass spectrometric analysis of ropivacaine and bupivacaine in authentic, pharmaceutical and spiked human plasma without chromatographic separation.

Quantitative mass spectrometric analysis of ropivacaine and bupivacaine in authentic, pharmaceutical and spiked human plasma without chromatographic separation.

Quantitative mass spectrometric analysis of ropivacaine and bupivacaine in authentic, pharmaceutical and spiked human plasma without chromatographic separation.

The present study employs time of flight mass and bupivacaine in authentic, pharmaceutical and spiked human plasma as well as in the presence of their impurities 2,6-dimethylaniline and alkaline degradation product. The method is based on time of flight electron spray ionization mass spectrometry technique without preliminary chromatographic separation and makes use of bupivacaine as internal standard for ropivacaine, which is used as internal standard for bupivacaine. A linear relationship between drug concentrations and the peak intensity ratio of ions of the analyzed substances is established. The method is linear from 23.8 to 2380.0 ng mL(-1) for both drugs. The correlation coefficient was >or=0.996 in authentic and spiked human plasma. The average percentage recoveries in the ranges of 95.39%-102.75% was obtained. The method is accurate (% RE < 5%) and reproducible with intra- and inter-assay precision (RSD% < 8.0%). The quantification limit is 23.8 ng mL(-1) for both drugs. The method is not only highly sensitive and selective, but also simple and effective for determination or identification of both drugs in authentic and biological fluids. The method can be applied in purity testing, quality control and stability monitoring for the studied drugs.

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