首页> 外文期刊>Journal of nanotoxicology and nanomedicine. >Development and Validation of a GC-MS Method for the Quantitation of Nanoformulated Primaquine in Whole Blood and Plasma of Mouse Model
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Development and Validation of a GC-MS Method for the Quantitation of Nanoformulated Primaquine in Whole Blood and Plasma of Mouse Model

机译:GC-MS方法的开发和验证,用于定量小鼠模型的全血和等离子体中纳米成型的见于

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A Gas chromatography-mass spectrometry (GC/MS) method was developed and validated for the quantitation of the antimalarial drug, nanoformulated Primaquine (PQ), in whole blood and plasma. The analyte was extracted using a protein precipitation method followed by chromatographic separation on a Waters Xterra, RP C8,2.5mum, 50mm x 4.6mm analytical column with a mobile phase consisting of A: 0.5% Formic acid in 20mM NH_4COOH, B: Methanol pH adjusted to 3.0 with FA at a ratio of 3:7 (v/v), delivered at a constant flow rate of 0.5 ml/min. Mefloquine (MEF) was used as the internal standard. Compound reaction monitoring was performed using 260.4 Da for precursor ion and 175.2 and 379.2 Da for product ions for the quantification of PQ and 379.2 Da for precursor ion and 175.2 and 379.2 Da for product ions for the quantification, respectively. Calibration curves were constructed over the concentration range 16.7-4300 ng/ml. The mean intra- and inter-assay accuracy values for the analysis of PQ in WB was 104% (%CV = 5.6) and 98.6% (%CV = 5.7), respectively. The mean intra- and inter-assay accuracy values for the analysis of PQ in plasma was 92.7% (%CV = 3.7) and 93.7% (%CV = 5.4), respectively. No significant matrix effect was observed during the method validation. The validated method was applied to an absorption study in mice, to determine and compare PQ concentrations in whole blood and plasma samples. Results of the statistical analysis using a linear mixed effects growth curve model concluded that there was no significant difference (p-value = 0.688) between WB and plasma PQ concentrations. This method utilizes a small sample volume of 20 mul, facilitating low blood collection volumes and a short chromatographic run time of 3 min which allows for high sample through put analysis.
机译:开发了一种气相色谱 - 质谱法(GC/MS)方法,并验证了全血和血浆中抗菌药物纳米型前丙二喹(PQ)的定量。使用蛋白质沉淀法提取分析物,然后在水上Xterra上进行色谱分离,RP C8,2.5MUM,50mm x 4.6mm分析柱,其移动相包含A:0.5%formic Acid Acy:0.5%NH_4COOH中的甲酸,B:甲醇pH:以3:7(v/v)的比例调整为3.0,以0.5 ml/min的恒定流速传递。 Mefloquine(MEF)被用作内标。使用260.4 DA对前体离子进行化合物反应监测,对于pq定量和175.2和379.2 da,用于对PQ的定量和379.2 DA的前体离子和175.2和379.2 da分别用于定量的产物离子。校准曲线在浓度范围内构建16.7-4300 ng/ml。 WB中PQ分析的平均测定内和测量间精度值分别为104%(%CV = 5.6)和98.6%(%CV = 5.7)。血浆中PQ分析分析的平均测定和间间的精度值分别为92.7%(%CV = 3.7)和93.7%(%CV = 5.4)。在方法验证期间未观察到显着的矩阵效应。将经过验证的方法应用于小鼠的吸收研究,以确定和比较全血和血浆样品中的PQ浓度。使用线性混合效应生长曲线模型的统计分析结果得出的结论是,WB和等离子体PQ浓度之间没有显着差异(P值= 0.688)。该方法利用少量样品体积为20 mul,促进了低血液收集量和短色谱运行时间为3分钟,从而可以通过POT分析进行高样品。

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