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一种采用自动进样的高通量生物分析平台用于串联质谱法优化及其在代谢稳定性筛选中的应用

A high-throughput bioanalytical platform using automated infusion for tandem mass spectrometric method optimization and its application in a metabolic stability screen.

作者信息

Kieltyka Kasia, Zhang Jun, Li Shu, Vath Marianne, Baglieri Chris, Ferraro Cheryl, Zvyaga Tatyana A, Drexler Dieter M, Weller Harold N, Shou Wilson Z

机构信息

Bristol-Myers Squibb, 5 Research Parkway, Wallingford, CT 06492, USA.

出版信息

Rapid Commun Mass Spectrom. 2009 Jun;23(11):1579-91. doi: 10.1002/rcm.4037.

DOI:10.1002/rcm.4037
PMID:19399765
Abstract

Liquid chromatography/tandem mass spectrometry (LC/MS/MS) is the bioanalytical method of choice to support plate-based, in vitro early ADME (Absorption, Distribution, Metabolism and Excretion) screens such as metabolic stability (Metstab) assessment. MS/MS method optimization has historically been the bottleneck in this environment, where samples from thousands of discrete compounds are analyzed on a monthly basis, mainly due to the lack of a high-quality commercially available platform to handle the necessary MS/MS method optimization steps for sample analysis by selected reaction monitoring (SRM) on triple quadrupole mass spectrometers. To address this challenge, we recently developed a highly automated bioanalytical platform by successfully integrating QuickQuan 2.0, a unique high-throughput solution featuring MS/MS method optimization by automated infusion, with a customized in-house software tool in support of a Metstab screen. In this platform, a dual-column setup running parallel chromatography was also implemented to reduce the bioanalytical cycle time for LC/MS/MS sample analysis. A set of 45 validation compounds was used to demonstrate the speed, quality and reproducibility of MS/MS method optimization, sample analysis, and data processing using this automated platform. Metstab results for the validation compounds in microsomes from multiple species (human, rat, mouse) showed good consistency within each batch, and also between batches conducted on different days. We have achieved and maintained a monthly throughput of 1300 compound assays representing 500 discrete compounds per instrument per month on this platform, and it has been used to generate metabolic stability data for more than 25 000 compounds to date with an overall success rate of more than 95%.

摘要

液相色谱/串联质谱法(LC/MS/MS)是用于支持基于平板的体外早期药物吸收、分布、代谢和排泄(ADME)筛选(如代谢稳定性评估)的首选生物分析方法。质谱/质谱方法优化一直是这种情况下的瓶颈,在这种情况下,每月要分析来自数千种离散化合物的样本,主要原因是缺乏高质量的商用平台来处理通过三重四极杆质谱仪上的选择反应监测(SRM)进行样本分析所需的质谱/质谱方法优化步骤。为应对这一挑战,我们最近通过成功整合QuickQuan 2.0开发了一个高度自动化的生物分析平台,QuickQuan 2.0是一种独特的高通量解决方案,具有通过自动进样进行质谱/质谱方法优化的功能,并配备了定制的内部软件工具以支持代谢稳定性筛选。在这个平台上,还采用了双柱并行色谱设置以减少LC/MS/MS样本分析的生物分析周期时间。使用一组45种验证化合物来证明使用这个自动化平台进行质谱/质谱方法优化、样本分析和数据处理的速度、质量和重现性。来自多个物种(人类、大鼠、小鼠)微粒体中验证化合物的代谢稳定性结果在每一批次内以及在不同日期进行的批次之间都显示出良好的一致性。在这个平台上,我们已经实现并保持了每月1300次化合物检测的通量,即每台仪器每月检测500种离散化合物,到目前为止,该平台已用于生成超过25000种化合物的代谢稳定性数据,总体成功率超过95%。

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