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A New UPLC-MS/MS Method Validated for Quantification of Jervine in Rat Plasma and the Study of Its Pharmacokinetics in Rats

机译:一种新的UPLC-MS / MS方法可用于定量大鼠血浆中的蛇麻草及其在大鼠体内的药代动力学

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摘要

The aim of this study was to develop an ultraperformance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) method to assess the concentration of jervine in rat plasma and its pharmacokinetics. Diazepam was used as internal standard (IS). The chromatographic separation of jervine and IS was carried out on an UPLC BEH C18 column (2.1 mm × 50 mm, 1.7 μm) with a flow rate of 0.4 mL/min. A mixture of acetonitrile and water (0.1% formic acid) was used as a mobile phase. The UPLC-MS/MS was equipped with an electrospray ionization (ESI), adopting multiple reactive monitoring mode to determine jervine in rat plasma. The retention times of jervine and the internal standard were 1.71 and 2.13 min, respectively. The calibration curve of jervine ranged between 1 and 1000 ng/mL. The lower limit of quantitation (LLOQ) was 1 ng/mL, and the lower limit of determination (LLOD) was 0.2 ng/mL. The accuracy was ±6%; the interday precision and intraday precision were no more than 9%. The recovery was higher than 90.3%, and the matrix effect was lower than 10%. The UPLC-MS/MS method was successfully developed and used for the application of the pharmacokinetic study. The primary pharmacokinetic parameters of jervine in this study were as follows: the AUC(0–∞) was 969.3 ± 277.7 ng/mL·h, the Cmax was 506.6 ± 192.8 ng/mL, the CL/F was 1.7 ± 0.5 L/h/kg, and the t1/2 was 3.4 ± 1.2 h.
机译:这项研究的目的是开发一种超高性能液相色谱-串联质谱(UPLC-MS / MS)方法,以评估大鼠血浆中er子的浓度及其药代动力学。地西p用作内标(IS)。在UPLC BEH C18色谱柱(2.1×mm××50×mm,1.7×μm)上进行水芹和IS的色谱分离,流速为0.4×mL / min。乙腈和水(0.1%甲酸)的混合物用作流动相。 UPLC-MS / MS配备了电喷雾电离(ESI),采用多种反应性监测模式来测定大鼠血浆中的牛er。水母和内标物的保留时间分别为1.71和2.13 min。水母的校准曲线在1至1000 ng / mL之间。定量下限(LLOQ)为1μng/ mL,测定下限(LLOD)为0.2μng/ mL。精度为±6%;日间精度和日内精度不超过9%。回收率高于90.3%,基质效应低于10%。 UPLC-MS / MS方法已成功开发并用于药代动力学研究。这项研究的主要功效为:AUC(0-∞)为969.3±277.7 ng / mL·h,Cmax为506.6±192.8 ng / mL,CL / F为1.7±0.5 L / h / kg,t1 / 2为3.4±±1.2 h。

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