Institute of Drug Research and Development, College of Pharmacy, Chungnam National University, 99 Daehak-ro, Yuseong-gu, Daejeon 34134, Korea.
Molecules. 2022 Mar 21;27(6):2011. doi: 10.3390/molecules27062011.
Daporinad (FK866) is one of the highly specific inhibitors of nicotinamide phosphoribosyl transferase (NAMPT) and known to have its unique mechanism of action that induces the tumor cell apoptosis. In this study, 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 (DMPK) properties of Daporinad in mice. A simple protein precipitation method using acetonitrile (ACN) was used for the sample preparation and the pre-treated samples were separated by a C18 column. The calibration curve was evaluated in the range of 1.02~2220 ng/mL and the quadratic regression (weighted 1/concentration) was used for the best fit of the curve with a correlation coefficient ≥ 0.99. The qualification run met the acceptance criteria of ±25% accuracy and precision values for QC samples. The dilution integrity was verified for 5, 10 and 30-fold dilution and the accuracy and precision of the dilution QC samples were also satisfactory within ±25% of the nominal values. The stability results indicated that Daporinad was stable for the following conditions: short-term (4 h), long-term (2 weeks), freeze/thaw (three cycles). This qualified method was successfully applied to intravenous (IV) pharmacokinetic (PK) studies of Daporinad in mice at doses of 5, 10 and 30 mg/kg. As a result, it showed a linear PK tendency in the dose range from 5 to 10 mg/kg, but a non-linear PK tendency in the dose of 30 mg/kg. In addition, in vitro and in vivo metabolite identification (Met ID) studies were conducted to understand the PK properties of Daporinad and the results showed that a total of 25 metabolites were identified as ten different types of metabolism in our experimental conditions. In conclusion, the LC-qTOF-MS assay was successfully developed for the quantification of Daporinad in mouse plasma as well as for its in vitro and in vivo metabolite identification.
达泊那嗪(FK866)是一种高度特异性的烟酰胺磷酸核糖转移酶(NAMPT)抑制剂,具有诱导肿瘤细胞凋亡的独特作用机制。在本研究中,建立了一种简单灵敏的液相色谱-四极杆飞行时间质谱(LC-qTOF-MS)法,用于评价达泊那嗪在小鼠体内的药物代谢动力学(DMPK)性质。采用乙腈(ACN)简单的蛋白沉淀法进行样品前处理,采用 C18 柱分离预处理后的样品。校准曲线的评价范围为 1.02~2220ng/mL,采用二次回归(加权 1/浓度)对曲线进行最佳拟合,相关系数≥0.99。合格运行符合 QC 样品的准确度和精密度值±25%的接受标准。验证了 5 倍、10 倍和 30 倍稀释的稀释完整性,并且稀释 QC 样品的准确度和精密度在±25%的名义值范围内也令人满意。稳定性结果表明,达泊那嗪在以下条件下稳定:短期(4 h)、长期(2 周)、冻融(三个循环)。该合格方法成功应用于 5、10 和 30mg/kg 剂量的达泊那嗪在小鼠体内的静脉(IV)药代动力学(PK)研究。结果表明,在 5 至 10mg/kg 剂量范围内呈线性 PK 趋势,但在 30mg/kg 剂量范围内呈非线性 PK 趋势。此外,进行了体外和体内代谢产物鉴定(Met ID)研究,以了解达泊那嗪的 PK 性质,结果表明,在我们的实验条件下,共鉴定出 25 种代谢产物,分为十种不同类型的代谢。总之,成功建立了 LC-qTOF-MS 法用于定量检测小鼠血浆中的达泊那嗪及其体外和体内代谢产物鉴定。