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9-芴基甲基氯甲酸酯作为荧光标记试剂,用于液相色谱/串联质谱法衍生化丙戊酸钠的羧酸部分,用于结合特征描述:一项人体药代动力学研究。

9-fluorenylmethyl chloroformate as a fluorescence-labeling reagent for derivatization of carboxylic acid moiety of sodium valproate using liquid chromatography/tandem mass spectrometry for binding characterization: a human pharmacokinetic study.

机构信息

Medical Biology Research Center, Kermanshah University of Medical Sciences, Kermanshah, Iran.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2012 Jan 1;880(1):12-8. doi: 10.1016/j.jchromb.2011.11.009. Epub 2011 Nov 30.

Abstract

In High Performance Liquid Chromatographic (HPLC) determination of chemicals with acidic functions, different labeling agents are used to improve sensitivity of the assay. 9-Fluorenylmethyl chloroformate (FMOC-Cl), on the other hand, is a suitable labeling agent, which reacts with both primary and secondary amines and less readily with hydroxyl groups in alkaline conditions. However, the reagent has not been applied in labeling of chemicals with acidic function yet. In this study which is the first report on application of FMOC-Cl in derivatization and analysis of a drug with acidic function, valproic acid (VPA), one of a series of fatty carboxylic acids with anticonvulsant activity, was derivatized using the reagent and quantified in serum samples by HPLC with fluorescence detection. In addition, to document the reaction between the labeling agent and carboxylic acid moiety of the drug, we developed a liquid chromatography-tandem MS/MS (LC-MS/MS) method. Following liquid-liquid extraction, derivatization of the drug and an internal standard was achieved in alkaline medium. The elute was monitored by a fluorescence detector with respective excitation and emission wavelengths of 265 and 315 nm. The present method is more sensitive comparing with other published HPLC procedures for analysis of VPA. The assay is sensitive enough to measure drug levels obtained in human single dose studies with a limit of quantification of 0.01 μg/mL. Also the method is linear over the concentrations range of 0.01-32 μg/mL of VPA in human serum using 100 μL serum sample and 5 μL injection. The coefficient variation values of both inter and intra day analysis were less than 12% and the percentage error was less than 4%. The method performance was studied and the validated procedure applied in a randomized cross-over bioequivalence study of two different VPA preparations in 24 healthy volunteers.

摘要

在高效液相色谱(HPLC)分析具有酸性功能的化学物质时,会使用不同的标记试剂来提高分析的灵敏度。9-芴甲氧羰酰氯(FMOC-Cl)是一种合适的标记试剂,它可以与伯胺和仲胺反应,并且在碱性条件下与羟基的反应性较低。然而,该试剂尚未应用于具有酸性功能的化学物质的标记。在这项研究中,首次报告了 FMOC-Cl 在衍生化和分析具有酸性功能的药物中的应用,丙戊酸(VPA)是具有抗惊厥活性的一系列脂肪酸之一,用该试剂对其进行衍生化,并通过 HPLC 荧光检测法在血清样本中进行定量分析。此外,为了记录标记试剂与药物羧酸部分之间的反应,我们开发了一种液相色谱-串联质谱(LC-MS/MS)方法。在液-液萃取后,在碱性介质中对药物和内标物进行衍生化。通过荧光检测器以 265nm 和 315nm 的激发和发射波长监测洗脱液。与其他已发表的 HPLC 分析 VPA 的方法相比,本方法更为灵敏。该方法的灵敏度足以测量单次人体剂量研究中获得的药物水平,定量下限为 0.01μg/mL。此外,该方法在人血清中 VPA 的浓度范围为 0.01-32μg/mL 时具有线性关系,使用 100μL 血清样品和 5μL 进样量。日内和日间分析的变异系数值均小于 12%,误差百分比小于 4%。对方法性能进行了研究,并将验证程序应用于 24 名健康志愿者中两种不同 VPA 制剂的随机交叉生物等效性研究。

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