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Comparison of the QMS Analyzer With HPLC-UV for the Quantification of Lamotrigine Concentrations in Human Plasma Samples

机译:QMS分析仪与HPLC-UV定量分析人血浆样品中拉莫三嗪浓度的比较

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Background:Recently, a turbidimetric immunoassay method has been developed for use in the form of a QMS lamotrigine (LTG) commercial immunoassay. This study was designed to evaluate the performance of this immunoassay using a validated high-performance liquid chromatography-ultraviolet (HPLC-UV) method as the reference.Methods:The performance of QMS was initially tested using drug-free plasma spiked with different amounts of LTG and, subsequently, by analyzing 61 trough plasma samples from epileptic patients given the drug as part of their maintenance antiepileptic therapies.Results:The correlation between LTG concentrations measured by QMS and HPLC was good, with a Pearson coefficient of 0.968 (P < 0.0001). The Bland-Altman approach showed that LTG concentrations measured with QMS exceeded HPLC on an average by 15.6% (limits of agreement, -18% to +63%), with a concentration-dependent performance (mean percent bias, 49.5 8.2% and 0.6 +/- 12.7% for concentrations less than 2 mg/L and greater than 14.9 mg/L, respectively).Conclusions:The QMS provided acceptable analytical performance across a wide concentration range for routine LTG measurements, being at least comparable with the other commercial immunoassays. It could be, therefore, considered as a viable alternative to HPLC methods for routine LTG monitoring in the clinical practice, although its suitability for accurate analysis of samples with low concentration is limited.
机译:背景:最近,已经开发了一种浊度免疫测定方法,以QMS拉莫三嗪(LTG)商业免疫测定的形式使用。本研究旨在使用经过验证的高效液相色谱-紫外线(HPLC-UV)方法作为参考来评估此免疫测定的性能。方法:QMS的性能最初是使用加有不同量LTG以及随后通过分析61例癫痫患者的血浆样品(作为维持抗癫痫治疗药物的一部分)结果:通过QMS和HPLC测定的LTG浓度之间的相关性良好,皮尔森系数为0.968(P <0.0001 )。 Bland-Altman方法显示,用QMS测量的LTG浓度平均比HPLC高出15.6%(一致极限,-18%至+ 63%),并且具有浓度依赖性的性能(平均偏差百分比,49.5、8.2%和0.6)浓度分别小于2 mg / L和大于14.9 mg / L时为+/- 12.7%。)结论:QMS在宽范围的浓度范围内为常规LTG测量提供了可接受的分析性能,至少与其他商业产品相当免疫测定。因此,它在临床实践中被认为是常规LTG监测的HPLC方法的可行替代方法,尽管其对低浓度样品进行准确分析的适用性受到限制。

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