首页> 外文期刊>Analytical and Bioanalytical Chemistry >Orthogonal array design for optimization of hollow-fiber-based liquid-phase microextraction combined with high-performance liquid chromatography for study of the pharmacokinetics of magnoflorine in rat plasma
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Orthogonal array design for optimization of hollow-fiber-based liquid-phase microextraction combined with high-performance liquid chromatography for study of the pharmacokinetics of magnoflorine in rat plasma

机译:正交设计优化中空纤维液相微萃取结合高效液相色谱法研究厚朴素在大鼠血浆中的药代动力学

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摘要

In this work, a new sample-preparation method based on hollow-fiber liquid-phase microextraction (HF-LPME) was developed for analysis of magnoflorine in rat plasma. Analysis was accomplished by reversed-phase high-performance liquid chromatography (HPLC), with ultraviolet detection by use of a photodiode-array detector. An orthogonal array design (OAD) was found to be effective for optimization of major conditions which may affect the efficiency of HF-LPME. Under the optimized conditions (pH of donor and acceptor phases 12 and 2.0, respectively; extraction time 20 min; stirring speed 800 rpm; and addition of 10 % (w/v) salt), the preconcentration factor for magnoflorine was 355. Calibration curves with reasonable linearity (r 2 ≥ 0.9994) were obtained in the range 10–1000 ng mL−1. Intra-day and inter-day precision (RSD) were <5.5 % and the limit of detection (LOD) for the analyte was 3.0 ng mL−1 (S/N = 3). The validated method was successfully used for pharmacokinetic studies of magnoflorine in rat plasma after intravenous administration.
机译:在这项工作中,开发了一种基于中空纤维液相微萃取(HF-LPME)的新样品制备方法,用于分析大鼠血浆中的厚朴素。通过反相高效液相色谱(HPLC)进行分析,并使用光电二极管阵列检测器进行紫外线检测。发现正交阵列设计(OAD)可有效优化可能影响HF-LPME效率的主要条件。在优化的条件下(供体和受体相的pH分别为12和2.0;萃取时间为20分钟;搅拌速度为800 rpm;添加10%(w / v)盐),厚朴素的预浓缩系数为355。在10–1000 ng mL -1 范围内获得了具有合理线性(r 2 ≥0.9994)的线性。日内和日间精确度(RSD)<5.5%,分析物的检测极限(LOD)为3.0 ng mL -1 (S / N = 3)。经验证的方法已成功用于大鼠静脉输液后厚朴素的药代动力学研究。

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