Shin Seok-Ho, Park Min-Ho, Byeon Jin-Ju, Lee Byeong Ill, Park Yuri, Kim Nahye, Choi Jangmi, Shin Young G
College of Pharmacy and Institute of Drug Research and Development, Chungnam National University, Daejeon 34134, Korea.
Pharmaceutics. 2018 Dec 3;10(4):260. doi: 10.3390/pharmaceutics10040260.
A simple and sensitive liquid chromatography⁻quadrupole-time-of-flight⁻mass spectrometric (LC-QTOF-MS) assay has been developed for the evaluation of drug metabolism and pharmacokinetics (PK) properties of vipadenant in rat, a selective A2a receptor antagonist as one of the novel immune checkpoint inhibitors. A simple protein precipitation method using acetonitrile was used for the sample preparation and the pre-treated samples were separated by a reverse-phase C18 column. The calibration curve was evaluated in the range of 3.02 ~ 2200 ng/mL and the quadratic regression (weighted 1/concentration) was used for the best fit of the curve with a correlation coefficient ≥0.997. The in vivo PK studies in rats showed that vipadenant bioavailability was 30.4 ± 8.9% with a low to moderate drug clearance. In addition, in vitro/in vivo metabolite profiles in rat were also explored. Five different metabolites were observed in our experimental conditions and the major metabolites were different between in vitro and in vivo conditions. As far as we know, there has been no report on the development of quantitative methods for its PK samples nor the identification of its metabolites since vipadenant was developed. Therefore, this paper would be very useful to better understand the pharmacokinetic and drug metabolism properties of vipadenant in rat as well as other species.
已开发出一种简单且灵敏的液相色谱-四极杆-飞行时间-质谱(LC-QTOF-MS)分析法,用于评估新型免疫检查点抑制剂之一的选择性A2a受体拮抗剂维帕他啶在大鼠体内的药物代谢和药代动力学(PK)特性。采用简单的乙腈蛋白沉淀法进行样品制备,预处理后的样品通过反相C18柱进行分离。校准曲线在3.02~2200 ng/mL范围内进行评估,采用二次回归(加权1/浓度)对曲线进行最佳拟合,相关系数≥0.997。大鼠体内PK研究表明,维帕他啶的生物利用度为30.4±8.9%,药物清除率低至中等。此外,还探索了大鼠的体外/体内代谢物谱。在我们的实验条件下观察到了五种不同的代谢物,体外和体内条件下的主要代谢物有所不同。据我们所知,自维帕他啶开发以来,尚未有关于其PK样品定量方法开发及其代谢物鉴定的报道。因此,本文对于更好地理解维帕他啶在大鼠以及其他物种中的药代动力学和药物代谢特性非常有用。