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High-Throughput HPLC-MS/MS Method for Quantification of Ibuprofen Enantiomers in Human Plasma: Focus on Investigation of Metabolite Interference

机译:高通量HPLC-MS / MS方法测定人血浆中布洛芬对映异构体的浓度:重点研究代谢物干扰

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In this research, as a part of the development of fast and reliable HPLC-MS/MS method for quantification of ibuprofen (IBP) enantiomers in human plasma, the possibility of IBP acylglucoronide (IBP-Glu) back-conversion was assessed. This involved investigation of in source and in vitro back-conversion. The separation of IBP enantiomers, its metabolite and rac-IBP-d3 (internal standard), was achieved within 6 min using Chiracel OJ-RH chromatographic column (150 x 2.1 mm, 5 mu m). The followed selected reaction monitoring transitions for IBP-Glu (m/z 381.4. 205.4, m/z 381.4. 161.4 and m/z 205.4. 161.4) implied that under the optimized electrospray ionization parameters, in source back-conversion of IBP-Glu was insignificant. The results obtained after liquid-liquid extraction of plasma samples spiked with IBP-Glu revealed that the amount of IBP enantiomers generated by IBP-Glu back-conversion was far <20% of lower limit of quantification sample. These results indicate that the presence of IBP-Glu in real samples will not affect the quantification of the IBP enantiomers; thereby reliability of the method was improved. Additional advantage of the method is the short analysis time making it suitable for the large number of samples. The method was fully validated according to the EMA guideline and was shown to meet all requirements to be applied in a pharmacokinetic study.
机译:在这项研究中,作为定量测定人血浆中布洛芬(IBP)对映异构体的快速可靠HPLC-MS / MS方法的一部分,评估了IBP酰基葡糖醛酸(IBP-Glu)反向转化的可能性。这涉及对源和体外反向转换的研究。使用Chiracel OJ-RH色谱柱(150 x 2.1 mm,5μm)在6分钟内完成了IBP对映异构体,其代谢产物和rac-IBP-d3(内标)的分离。随后选择的IBP-Glu反应监测过渡(m / z 381.4。205.4,m / z 381.4。161.4和m / z 205.4。161.4)暗示了在优化的电喷雾电离参数下,IBP-Glu的源反转换是微不足道的。在对加有IBP-Glu的血浆样品进行液-液萃取后获得的结果表明,由IBP-Glu逆转换产生的IBP对映异构体的数量远低于定量样品下限的20%。这些结果表明,实际样品中IBP-Glu的存在不会影响IBP对映体的定量。从而提高了方法的可靠性。该方法的另一个优点是分析时间短,适用于大量样品。该方法已根据EMA指南进行了充分验证,并被证明符合在药代动力学研究中应用的所有要求。

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