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一种基于液相色谱/串联质谱的新型耗竭法,用于在药物研发中测量药物化合物在红细胞中的分配情况。

A novel liquid chromatography/tandem mass spectrometry based depletion method for measuring red blood cell partitioning of pharmaceutical compounds in drug discovery.

作者信息

Yu Shaoxia, Li Shelly, Yang Hua, Lee Frank, Wu Jing-Tao, Qian Mark G

机构信息

Department of Drug Metabolism and Pharmacokinetics, Millennium Pharmaceuticals, Inc., 45 Sidney Street, Cambridge, MA 02139, USA.

出版信息

Rapid Commun Mass Spectrom. 2005;19(2):250-4. doi: 10.1002/rcm.1777.

Abstract

A novel liquid chromatography/tandem mass spectrometry (LC/MS/MS)-based depletion method for measuring compound partitioning between human plasma and red blood cells (RBC) in a drug discovery environment is presented. Conventionally, RBC partitioning is determined by separate measurements of drug concentrations in equilibrating plasma and whole blood or RBC using separate standards prepared in their respective matrices, i.e., in plasma and whole blood or RBC lysates. The process is very tedious, labor-intensive, and difficult to automate. In addition, interferences from the heme and other highly abundant cellular composites make the measurement of the drug concentration in whole blood or RBC inevitably variable even with a highly specific LC/MS/MS method. Therefore, there is an imminent need to develop a straightforward and fast method to assess the partitioning of drug-like compounds in RBC. This work describes an LC/MS/MS-based depletion assay that measures the compound concentration in plasma that has been equilibrating with RBC. Compounds were spiked into fresh human whole blood and plasma respectively to a final concentration of 500 nM. Both the spiked whole blood and plasma control were incubated at 37 degrees C for up to 60 min. During the time course, aliquots of plasma and whole blood from both incubation mixtures were sampled at 10 and 60 min. The whole blood samples were centrifuged to yield the plasma. The plasma samples from both incubations were extracted using a protein precipitation method, and analyzed using LC/MS/MS under the multiple-reaction monitoring (MRM) mode. The RBC partitioning ratio was calculated using the analyte peak area responses of the plasma samples through an equation deduced in this work. The method was first tested using two commercial compounds, phenoprobamate and acetazolamide, to determine the optimal incubation conditions and the concentration dependency of the assay. The assay reproducibility was also assessed by three inter-day assays for phenoprobamate. This method was further evaluated using 20 commercial compounds of different classes with a wide range of RBC partitioning coefficients and the results were compared with those reported in the literature. Excellent correlation (R2=0.9396) was found between the measured and literature values. In addition, several proprietary compounds were assayed using both the new and traditional methods and the measured partitioning ratios from the two methods are equivalent. The experiments in this work demonstrate that the LC/MS/MS-based depletion method can provide direct and accurate measurement of RBC partitioning for compounds in drug discovery.

摘要

本文介绍了一种基于新型液相色谱/串联质谱(LC/MS/MS)的耗竭法,用于在药物发现环境中测量化合物在人血浆和红细胞(RBC)之间的分配。传统上,RBC分配是通过使用在各自基质(即血浆、全血或RBC裂解物)中制备的单独标准品,分别测量平衡血浆、全血或RBC中的药物浓度来确定的。该过程非常繁琐、劳动强度大且难以自动化。此外,血红素和其他高丰度细胞复合物的干扰使得即使使用高度特异性的LC/MS/MS方法,全血或RBC中药物浓度的测量也不可避免地存在变化。因此,迫切需要开发一种直接且快速的方法来评估类药物化合物在RBC中的分配。这项工作描述了一种基于LC/MS/MS的耗竭测定法,该方法测量与RBC平衡后的血浆中化合物的浓度。将化合物分别加入新鲜人全血和血浆中,最终浓度为500 nM。加标的全血和血浆对照均在37℃孵育长达60分钟。在孵育过程中,在10分钟和60分钟时从两种孵育混合物中分别采集血浆和全血的等分试样。将全血样品离心以获得血浆。两种孵育的血浆样品均采用蛋白沉淀法提取,并在多反应监测(MRM)模式下使用LC/MS/MS进行分析。通过本文推导的方程式,利用血浆样品的分析物峰面积响应计算RBC分配比。该方法首先使用两种商业化合物苯丙氨酯和乙酰唑胺进行测试,以确定最佳孵育条件和测定的浓度依赖性。还通过对苯丙氨酯进行的三次日间测定评估了测定的重现性。使用20种不同类别的商业化合物进一步评估该方法,这些化合物具有广泛的RBC分配系数,并将结果与文献报道的结果进行比较。发现测量值与文献值之间具有极好的相关性(R2 = 0.9396)。此外,使用新方法和传统方法对几种专利化合物进行了测定,两种方法测得的分配比相当。这项工作中的实验表明,基于LC/MS/MS的耗竭法可以为药物发现中的化合物提供直接且准确的RBC分配测量。

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