首页> 外文期刊>Journal of Chromatography, Biomedical Applications >Application of column-switching liquid chromatography-tandem mass spectrometry for the determination of pharmaceutical compounds in tissue samples
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Application of column-switching liquid chromatography-tandem mass spectrometry for the determination of pharmaceutical compounds in tissue samples

机译:柱切换液相色谱-串联质谱法在组织样品中药物成分测定中的应用

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摘要

Information on plasma-tissue distribution which is important for drug development may be obtained by "in silico" prediction tools. To support the validation of computer models, drug concentrations in rat plasma and tissues (brain, liver, kidney, testes, spleen, gut, lung, heart, muscle, skin and fat) had to be determined. In our work, we established analytical assays for a variety of substances including nicardipine, nitrendipine, felodipine and benzodiazepines. Sample preparation had to be simple and method development as well as analytical tun time short to allow a high sample throughput and to minimize resources. Column-switching HPLC after homogeniation and protein precipitation served as an efficient, easy and rapid sample preparation method, followed by selective MS-MS detection. Optimization of the trapping procedure was performed in order to reduce the influence of endogenous interferences and to obtain good recovery. Chromatographic separation was necessary to increase the selectivity. The use of small analytical column dimensions (2.1 * 10 mm) was investigated to achieve higher sample throughput without compromising the assay quality. Mass spectrometric parameters, such as ionization modes (positive vs. negative) and ion source types (TurboIonSpray vs. APCI) were screened to find suitable conditions for sensitive analysis of the compounds. Matrix suppression effects were taken into consideration. Calibration samples were prepared in plasma only, where quality control samples were prepared in both plasma and tissues to save animals and time. Accuracy and precision were in the range of 84.4-119.1% and 1.16.5%, respectively. Limits of quantification were in the range of 0.5-2.5 ng/ml for plasma and 2-10 ng/ml for tissues. Run times as short as 2.2 min could be achieved.
机译:对于药物开发很重要的血浆组织分布信息可以通过“计算机模拟”预测工具获得。为了支持计算机模型的验证,必须确定大鼠血浆和组织(脑​​,肝,肾,睾丸,脾,肠,肺,心脏,肌肉,皮肤和脂肪)中的药物浓度。在我们的工作中,我们建立了包括尼卡地平,尼群地平,非洛地平和苯二氮卓类在内的多种物质的分析测定方法。样品制备必须简单,方法开发以及分析调谐时间要短,以实现高样品通量并最大程度地减少资源。均质化和蛋白质沉淀后的柱切换HPLC是一种高效,简便和快速的样品制备方法,然后进行选择性MS-MS检测。为了减少内源性干扰的影响并获得良好的回收率,对捕获程序进行了优化。为了提高选择性,必须进行色谱分离。研究了使用较小的分析柱尺寸(2.1 * 10 mm)以实现更高的样品通量而又不影响测定质量。筛选了质谱参数,例如电离模式(正电与负电)和离子源类型(TurboIonSpray与APCI),以找到合适的条件进行化合物的灵敏分析。考虑了基质抑制作用。仅在血浆中制备校准样品,在血浆和组织中均制备质控样品,以节省动物和时间。准确性和精确度分别在84.4-119.1%和1.16.5%的范围内。血浆的定量限为0.5-2.5 ng / ml,组织的定量限为2-10 ng / ml。运行时间可短至2.2分钟。

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