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LC-MS/MS 法测定小鼠血浆和脑组织中吉西他滨及其代谢物 2',2'-二氟-2'-脱氧尿苷的浓度:在临床前药代动力学研究中的应用。

LC-MS/MS method for quantitation of gemcitabine and its metabolite 2',2'-difluoro-2'-deoxyuridine in mouse plasma and brain tissue: Application to a preclinical pharmacokinetic study.

机构信息

Department of Pharmaceutical Sciences, St. Jude Children's Research Hospital, Memphis, TN, USA.

Department of Tumor Cell Biology, St. Jude Children's Research Hospital, Memphis, TN, USA.

出版信息

J Pharm Biomed Anal. 2021 May 10;198:114025. doi: 10.1016/j.jpba.2021.114025. Epub 2021 Mar 13.

Abstract

A simple, sensitive, and relatively fast assay was developed and validated for the quantitation of gemcitabine (dFdC) and its major metabolite 2',2'-difluoro-2'-deoxyuridine (dFdU) in mouse plasma and brain tissue. The assay used a small sample (25 μL plasma and 5 mg brain) for extraction by protein precipitation. After dilution of the supernatant extract, 1 μL was injected into HPLC system for reverse phase chromatographic separation with a total run time of 8 min. Chromatographic resolution of dFdC and dFdU was achieved on a Gemini C18 column (50 × 4.6 mm, 3 μm) utilizing gradient elution. Multiple reaction monitoring (MRM) with positive/negative ion switching was performed for detection of dFdC and its internal standard (dFdC-IS) in positive ion mode and dFdU and its IS (dFdU-IS) in negative ion mode. Two calibration curves ranging from 5-2000 ng/mL and 250-50,000 ng/mL were generated for dFdC and dFdU in mouse plasma, respectively. For measurement of dFdC and dFdU in mouse brain tissue, another two curves were used ranging from 0.02 to 40 ng/mg and 1-40 ng/mg, respectively. This assay demonstrated excellent precision and accuracy within day and between days for simultaneous measurement of dFdC and dFdU at all the concentration levels in both matrices. The other parameters such as selectivity, sensitivity, matrix effects, recovery, and storage stability were also assessed for both analytes in each matrix. Compared to the previously reported methods, the sample extraction in the current assay was simplified significantly, and the analysis time was greatly shortened. We successfully applied the validated method to the analysis of dFdC and dFdU in mouse plasma, brain, and brain tumor tissue in a preclinical pharmacokinetic study.

摘要

建立并验证了一种用于定量检测小鼠血浆和脑组织中吉西他滨(dFdC)及其主要代谢物 2',2'-二氟-2'-脱氧尿苷(dFdU)的简单、灵敏且相对快速的分析方法。该方法采用蛋白沉淀法进行小样本(血浆 25 μL 和脑 5 mg)提取。在上清液提取物稀释后,取 1 μL 注入 HPLC 系统,在反相色谱分离中总运行时间为 8 分钟。在 Gemini C18 柱(50×4.6mm,3μm)上实现了 dFdC 和 dFdU 的色谱分离,采用梯度洗脱。采用正负离子切换的多重反应监测(MRM)对 dFdC 及其内标(dFdC-IS)进行正离子模式检测,对 dFdU 及其内标(dFdU-IS)进行负离子模式检测。为了检测小鼠血浆中的 dFdC 和 dFdU,生成了两个浓度范围分别为 5-2000ng/mL 和 250-50000ng/mL 的校准曲线。为了测量小鼠脑组织中的 dFdC 和 dFdU,还使用了另外两个浓度范围分别为 0.02-40ng/mg 和 1-40ng/mg 的曲线。该方法在两种基质中所有浓度水平同时测量 dFdC 和 dFdU 时,日内和日间均表现出良好的精密度和准确度。还评估了两种分析物在每种基质中的其他参数,如选择性、灵敏度、基质效应、回收率和存储稳定性。与以前报道的方法相比,当前分析方法的样品提取大大简化,分析时间大大缩短。我们成功地将经过验证的方法应用于临床前药代动力学研究中,分析了小鼠血浆、脑和脑肿瘤组织中的 dFdC 和 dFdU。

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