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通过使用96孔板形式的蛋白质沉淀测定法自动化并采用液相色谱-串联质谱检测实现更高通量的生物分析。

Higher throughput bioanalysis by automation of a protein precipitation assay using a 96-well format with detection by LC-MS/MS.

作者信息

Watt A P, Morrison D, Locker K L, Evans D C

机构信息

Department of Medicinal Chemistry, Merck Sharp and Dohme Research Laboratories, Neuroscience Research Centre, Harlow, Essex, United Kingdom.

出版信息

Anal Chem. 2000 Mar 1;72(5):979-84. doi: 10.1021/ac9906633.

DOI:10.1021/ac9906633
PMID:10739201
Abstract

Generic methodology for the automated preparation and analysis of drug levels in plasma samples within a drug discovery environment was achieved through the redesign of a protein precipitation assay to a microtiter (96-well) plate format and the application of robotic liquid handling for performance of all transfer and pipetting steps. Validation studies revealed that the application of robotics to sample preparation, in general, maintained the analytical accuracy and precision compared with preparing samples manually. The use of rapid gradient LC-MS/MS for analysis coupled with flow diversion of the solvent front allowed the introduction of protein-precipitated samples into the mass spectrometer without the necessity for source cleaning. The problem inherent in automatically pipetting plasma, caused by fibrinogen clots, was overcome by storing samples at -80 degrees C and thus precluding clot formation. The resulting methodology allowed sample preparation for a 96-well plate designed to accommodate 54 unknowns, duplicate 12-point calibration curves, and 6 sets of quality controls at three levels in approximately 2 h. This approach allowed an increase in throughput of sample preparation and analysis to >400 samples per day per LC-MS/MS instrument with minimal manual intervention. Overall, substantial time savings were realized, demonstrating that automation is an increasingly essential tool in a drug discovery bioanalytical environment.

摘要

通过将蛋白质沉淀测定法重新设计为微量滴定(96孔)板形式,并应用机器人液体处理技术来执行所有转移和移液步骤,实现了在药物发现环境中对血浆样品中药物水平进行自动化制备和分析的通用方法。验证研究表明,一般而言,与手动制备样品相比,将机器人技术应用于样品制备可保持分析的准确性和精密度。使用快速梯度液相色谱-串联质谱(LC-MS/MS)进行分析,并结合溶剂前沿的流路转移,使得无需进行源清洗即可将蛋白质沉淀后的样品引入质谱仪。通过将样品储存在-80摄氏度,从而防止凝块形成,克服了由纤维蛋白原凝块导致的自动移取血浆时固有的问题。由此产生的方法能够在大约2小时内为一个96孔板制备样品,该板可容纳54个未知样品、重复的12点校准曲线以及三组不同水平的6套质量控制样品。这种方法使样品制备和分析的通量提高到每台LC-MS/MS仪器每天>400个样品,且人工干预最少。总体而言,实现了大量的时间节省,表明自动化在药物发现生物分析环境中是一种日益重要的工具。

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