首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Development of SPME method for concomitant sample preparation of rocuronium bromide and tranexamic add in plasma
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Development of SPME method for concomitant sample preparation of rocuronium bromide and tranexamic add in plasma

机译:SPME法同时测定溴化罗库溴铵和氨甲环磷酰胺的血浆样品的制备

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摘要

A high-throughput method using solid-phase microextraction coupled i:o liquid chromatography-tandem mass spectrometry (SPME-LC-MS/MS) for determination of tranexamic acid and rocuronium bromide in human plasma was developed and validated. Standard analytical approaches employ acidification of the sample due to the instability of rocuronium bromide in collected plasma samples. However, acidification affects the binding equilibrium of the drug and consequently no information on the free/bound concentration can be obtained. Contrary to these protocols, the proposed method requires minimum sample handling and no ion pairing and/or derivatization procedure. A weak cation exchange coating was chosen as the best extracting phase for selected drugs, guaranteed a good recovery, minimum carry-over, reusability and reproducibility. SPME procedure met all Food and Drug Administration acceptance criteria for bioanalytical assays at three concentration levels, for both selected drugs, Post-extraction addition experiments showed that matrix effect was less than ±3%. Here, a weak cation exchange thin-film solid-phase microextraction (WCX TF-SPME) approach is presented, offering effective cleanup procedure and full quantitation of the drugs in plasma, undoubtedly one the most: challenging matrices with regards to its complexity. In addition, the 96-well plate format of WCX TF-SPME system provides considerable advantages, such as high throughput analysis for up to 96 samples in 35 min (22 s/sample), requirement of small amounts of plasma samples (0.8 mL), and a simple sample preparation protocol all of which shows a promise for possible on-site application in hospitals to monitor concentrations of the drugs in close to real time.
机译:建立并验证了使用固相微萃取-i-o液相色谱-串联质谱(SPME-LC-MS / MS)测定人血浆中的氨甲环酸和溴化罗库溴铵的高通量方法。由于溴化罗库溴铵在收集的血浆样品中的不稳定性,标准分析方法采用了样品酸化方法。然而,酸化影响药物的结合平衡,因此无法获得有关游离/结合浓度的信息。与这些协议相反,所提出的方法需要最少的样品处理并且不需要离子对和/或衍生化程序。选择弱阳离子交换涂层作为所选药物的最佳萃取相,可确保良好的回收率,最小的残留,可重复使用性和可重复性。对于两种选定的药物,SPME程序均在三个浓度水平上均符合食品药品监督管理局的所有生物分析测定验收标准,萃取后添加实验表明基质效应小于±3%。在这里,提出了一种弱阳离子交换薄膜固相微萃取(WCX TF-SPME)方法,该方法提供了有效的净化程序和血浆中药物的完全定量,这无疑是最复杂的方法之一:具有挑战性的基质。此外,WCX TF-SPME系统的96孔板格式具有相当大的优势,例如在35分钟(22 s /样品)中对多达96个样品进行高通量分析,需要少量血浆样品(0.8 mL) ,以及简单的样品制备方案,所有这些都表明有望在医院中现场应用,以实时监控药物浓度。

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