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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Easy and fast LC-MS/MS determination of lidocaine and MEGX in plasma for therapeutic drug monitoring in neonates with seizures
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Easy and fast LC-MS/MS determination of lidocaine and MEGX in plasma for therapeutic drug monitoring in neonates with seizures

机译:简便,快速的LC-MS / MS测定血浆中的利多卡因和MEGX,以监测新生儿癫痫发作中的治疗药物

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摘要

A fast liquid chromatography-tandem mass spectrometry with electrospray ionization method was developed and validated for simultaneous quantification of lidocaine and its active metabolite MEGX in 10 μL of plasma of neonates with seizures. The sample preparation consists of an easy protein precipitation sample pre-treatment with methanol. Chromatographic separation was achieved on a Alltima HP C18-EPS 150 mm × 2.1 mm column with an isocratic mobile phase of 0.1% (v/v) ammonium acetate in purified water-0.1% (v/v) formic acid in acetonitrile (70:30, v/v). The analytes were detected with a Thermo Scientific triple quadrupole Quantum Access with positive ionization. Ions monitored in the selected reaction monitoring (SRM) mode were m/ z 235.2 → 86.6 for lidocaine (at 3.35. min), m/. z 207.1 → 58.8 for MEGX (at 2.75 min) and 280.1 → 86.7 for 3-nitrolidocaine (internal standard, at 3.20 min). The method was validated over a linear range of 0.2-18.0 mg/L for lidocaine and MEGX, using 3-nitrolidocaine as the internal standard. The lower limit of quantification (LLQ) was 0.2 mg/L for lidocaine and MEGX. The within-run and between-run CV (%) were lower than 6.9% for both lidocaine and MEGX. Recoveries were in the range of 99.4% to103.6%. Observed LC-MS/MS matrix effects were -6.2% for MEGX (ion suppression) and were negligible for lidocaine and the internal standard (i.e. <0.1%). Compared to other bioanalytical articles published in medical literature (PubMed) during the last 15 years that described LC-MS/MS methods for quantification of lidocaine in human plasma, our method uses less plasma, has a shorter and more simple sample pre-treatment and has a short run time.
机译:开发了一种采用电喷雾电离方法的快速液相色谱-串联质谱法,并已验证其可用于定量检测10μL癫痫新生儿血浆中的利多卡因及其活性代谢物MEGX。样品前处理由易于蛋白质沉淀的样品用甲醇预处理组成。在Alltima HP C18-EPS 150 mm×2.1 mm色谱柱上进行色谱分离,等度流动相为0.1%(v / v)乙酸铵的纯水-0.1%(v / v)甲酸的乙腈溶液(70: 30,v / v)。使用具有正电离功能的Thermo Scientific三重四极杆Quantum Access检测分析物。在选定的反应监测(SRM)模式下,利多卡因的离子监测值为m / z 235.2→86.6(3.35 min时),m /。对于MEGX(在2.75分钟时)为207.1→58.8,对于3-硝基利多卡因(内部标准在3.20分钟时)为280.1→86.7。使用3-硝基利多卡因作为内标,对利多卡因和MEGX在0.2-18.0 mg / L的线性范围内验证了该方法。利多卡因和MEGX的定量下限(LLQ)为0.2 mg / L。利多卡因和MEGX的批次内和批次间CV(%)均低于6.9%。回收率在99.4%至103.6%之间。观察到的LC-MS / MS基质对MEGX(离子抑制)的影响为-6.2%,对于利多卡因和内标物的影响可忽略不计(即<0.1%)。与最近15年发表在医学文献(PubMed)上的其他生物分析文章相比,该文章描述了用LC-MS / MS方法定量人血浆中利多卡因的方法,我们的方法使用的血浆更少,样品预处理更短,更简单,并且运行时间短。

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