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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >A strategy for identification of drug metabolites from dried blood spots using triple-quadrupole/linear ion trap hybrid mass spectrometry
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A strategy for identification of drug metabolites from dried blood spots using triple-quadrupole/linear ion trap hybrid mass spectrometry

机译:三重四极杆/线性离子阱混合质谱法从干血斑中鉴定药物代谢物的策略

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Discovery stage studies that address issues of absorption, distribution, metabolism and excretion (ADME) are vital for lead optimization resulting in new drug candidates. Often pharmacokinetics (PK) is assessed in these experiments without regard for the metabolism of the compound or the potential for metabolites to circulate in vivo. This work presents a strategy for drug level determination and detection of metabolites using dried blood spots for sample collection. Initially, metabolites are detected from microsomal incubations and characterized using tandem mass spectrometry. Data dependent enhanced MS and enhanced product ion (EMS-EPI) scanning with dynamic background subtraction was used on a hybrid quadruple linear ion trap mass spectrometer. On-the-fly background subtraction greatly improved the detection of metabolites. These data were used to build a multiple reaction monitoring (MRM) method for the parent and metabolites. MRM-EPI scanning was used to analyze the extracted dried blood spots from the PK study. Circulating metabolites were detected using MRM and their identities confirmed on the basis of fragment ion spectra collected simultaneously. The use of dried blood spots provides a means for re-analysis of PK samples for metabolite identification without the need for complex sample storage and preparation. Both parent compound and metabolite information can be collected in these studies, resulting in a savings of time and resources. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:解决吸收,分布,代谢和排泄(ADME)问题的发现阶段研究对于导致铅优化,产生新药物候选者至关重要。通常在这些实验中评估药代动力学(PK),而不考虑化合物的代谢或代谢物在体内循环的可能性。这项工作提出了一种利用干血斑采集样品来确定药物水平和检测代谢物的策略。最初,从微粒体温育中检测代谢物,并使用串联质谱进行表征。数据相关的增强型MS和增强型产品离子(EMS-EPI)扫描以及动态本底扣除用于混合四重线性离子阱质谱仪上。动态背景减法极大地改善了代谢物的检测。这些数据用于建立母体和代谢物的多反应监测(MRM)方法。 MRM-EPI扫描用于分析从PK研究中提取的干血斑。使用MRM检测循环代谢物,并根据同时收集的碎片离子谱图确认其身份。干血斑的使用提供了重新分析PK样品以鉴定代谢物的方法,而无需进行复杂的样品存储和制备。在这些研究中可以收集母体化合物和代谢物信息,从而节省了时间和资源。版权所有(c)2005 John Wiley&Sons,Ltd.

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