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Automated micropipette tip-based SPE in quantitative bioanalysis.

机译:自动化的基于微量移液器吸头的SPE用于定量生物分析。

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摘要

BACKGROUND: Automated methodologies using silica-based, monolithic, micropipette tip-based SPE have been developed for the analysis of small molecules in support of both preclinical and first-in-human development studies using LC-MS/MS. The use of micropipette tip-based SPE with the Tomtec Quadra 96((R)) and the evaluation of prototype micropipette tips for use with the Hamilton Microlab((R)) Star robot is outlined. RESULTS: Mixed-mode cation exchange and C18 SPE methods have been developed using human and rat plasma for the extraction of lipophilic and polar analytes. These methods are advantageous as they use low plasma sample, washing and elution volumes and result in a method extraction cycle time of approximately 6.2 min for 96 samples. CONCLUSION: This significantly reduced extraction time, compared with 96-well plate format SPE, indicates that the sample preparation stage is no longer the rate-limiting stage in performing a selective extraction procedure. Robust and sensitive methods have been developed that have proven to be more cost effective than traditional 96-well plate format SPE methods.
机译:背景:已开发出使用基于二氧化硅,整体式,基于微量移液器吸头的SPE的自动化方法,用于分析小分子,从而支持使用LC-MS / MS进行临床前和人类首次开发研究。概述了将基于微量移液器吸头的SPE与Tomtec Quadra 96​​(R)一起使用,以及对与HamiltonMicrolab®Star机器人一起使用的微型微量移液器吸头的评估。结果:已开发出使用人血浆和大鼠血浆的混合模式阳离子交换法和C18 SPE方​​法,以提取亲脂性和极性分析物。这些方法具有优势,因为它们使用的血浆样品量少,洗涤和洗脱量少,从而导致96个样品的方法提取周期约为6.2分钟。结论:与96孔板SPE相比,萃取时间大大减少,表明样品制备阶段不再是选择性萃取过程中的限速阶段。已开发出稳健而灵敏的方法,已证明比传统的96孔板格式SPE方法更具成本效益。

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