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采用液相色谱-串联质谱法分析大鼠尿液和粪便中的环孢素 A 及其代谢物。

Analysis of cyclosporine A and its metabolites in rat urine and feces by liquid chromatography-tandem mass spectrometry.

机构信息

College of Pharmacy, Soochow University, DuShuHu High Education Zone, Suzhou, Jiang Su Province 215123, People's Republic of China.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2010 May 1;878(15-16):1153-62. doi: 10.1016/j.jchromb.2010.03.032. Epub 2010 Mar 23.

Abstract

A sensitive and specific liquid chromatography-tandem mass spectrometry (LC-MS/MS) method was developed and validated for the quantification of cyclosporine A (CyA) and the identification of its metabolites in rat urine and feces. The analytes were extracted from waste samples via liquid-liquid extraction. A Turboionspray source was used as a detector. It was operated in a positive ion mode with transitions of m/z 1225-->m/z 1112 for CyA and in a selected multiple reactions monitoring (MRM) mode with transitions of m/z 1239-->m/z 1099 for the internal standard (cyclosporine D, CyD). Linear calibration curves were obtained for CyA concentration ranges of 12.5-250 ng mL(-1) in urine and 2.5-375 ng mg(-1) in feces. The intra- and inter-day precision values (relative standard deviation) obtained were less than 8%, and the accuracy was within +/-15% for each of the analytes. Extraction recoveries of CyA and CyD were both over 80%. The identification of the metabolites and elucidation of their structure were performed on the basis of their retention times and mass spectrometry fragmentation behaviors. A total of seven metabolites in rat feces were identified as dimethyl CyA, hydroxy CyA, and dihydroxy CyA after the oral administration of cyclosporine A-Eudragit S100 nanoparticles (CyA-NP). Six of these metabolites were also detected in rat urine. A possible metabolic pathway was also proposed. The newly developed method was proven to be sensitive, simple, reproducible, and suitable for the rapid determination of CyA. It was successfully employed to study the excretion of CyA in rats and could be used to better understand the in vivo metabolism of CyA-NP, a potentially effective nanoparticle system.

摘要

建立并验证了一种灵敏、特异的液相色谱-串联质谱(LC-MS/MS)方法,用于大鼠尿液和粪便中环孢素 A(CyA)的定量分析和代谢产物的鉴定。通过液液萃取从废物样品中提取分析物。TurboIonspray 源作为检测器,采用正离子模式,CyA 的监测离子对为 m/z 1225→m/z 1112,内标(环孢素 D,CyD)为 m/z 1239→m/z 1099,选择多重反应监测(MRM)模式。CyA 在尿液中的浓度范围为 12.5-250ng·mL(-1),在粪便中的浓度范围为 2.5-375ng·mg(-1),均得到良好的线性校准曲线。日内和日间精密度(相对标准偏差)均小于 8%,准确度在各分析物的±15%范围内。CyA 和 CyD 的提取回收率均大于 80%。基于保留时间和质谱碎裂行为对代谢产物进行鉴定和结构解析。口服环孢素 A-Eudragit S100 纳米粒(CyA-NP)后,在大鼠粪便中共鉴定出 7 种代谢产物,分别为二甲基 CyA、羟基 CyA 和二羟基 CyA。在大鼠尿液中也检测到其中 6 种代谢产物。还提出了一种可能的代谢途径。新建立的方法灵敏、简单、重现性好,适用于 CyA 的快速测定。该方法成功地用于研究 CyA 在大鼠体内的排泄情况,可用于更好地了解 CyA-NP 的体内代谢情况,CyA-NP 是一种潜在有效的纳米粒系统。

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