Xing Han, Ren Chang, Kong Ying, Ni Qi, Wang Zeyu, Zhao Di, Li Ning, Chen Xijing, Lu Yang
Clinical Pharmacokinetics Laboratory, School of Basic Medicine and Clinical Pharmacy, China Pharmaceutical University, Nanjing, China.
Biomed Chromatogr. 2019 Aug;33(8):e4556. doi: 10.1002/bmc.4556. Epub 2019 May 22.
GL-V9, a derivative of wogonin, shows much more potent anticancer properties than wogonin. In this study, a selective, sensitive and rapid ultra-high-performance liquid chromatography tandem mass spectrometry (UPLC-MS/MS) method was developed and validated for the determination of GL-V9 in rat plasma. Plasma samples were processed using methanol to precipitate protein. Chromatographic separation of analytes was achieved on a C column using gradient elution within 4.5 min. The mobile phase consisted of acetonitrile and water including 0.1% (v/v) formic acid and 5 mm ammonium acetate. GL-V9 and caffeine (internal standard) were monitored by positive electrospray triple quadrupole mass spectrometer and quantified using multiple reaction monitoring (MRM) mode with the transitions of m/z 410.20 → 126.10 (GL-V9) and 195.10 → 138.00 (IS: caffeine), respectively. Good linearity was obtained over the range of 2-1000 ng/mL (R > 0.99) and the extraction recovery was 101.91 ± 11.34%. The intra- and inter-day precision variations were small (RSD 1.35-6.96%) and the relative error (RE) of accuracy was -7.35-6.27%. The established and validated UPLC-MS/MS method was successfully applied to study the pharmacokinetic behavior of GL-V9 after administration through different delivery routes. The results demonstrated that pulmonary delivery exhibited a greater advantage in terms of improving bioavailability compared with oral administration.
GL-V9是汉黄芩素的衍生物,其抗癌特性比汉黄芩素更强。在本研究中,建立并验证了一种选择性、灵敏且快速的超高效液相色谱串联质谱法(UPLC-MS/MS),用于测定大鼠血浆中的GL-V9。血浆样品用甲醇处理以沉淀蛋白质。在C柱上通过梯度洗脱在4.5分钟内实现分析物的色谱分离。流动相由乙腈和水组成,其中含有0.1%(v/v)甲酸和5 mM乙酸铵。通过正电喷雾三重四极杆质谱仪监测GL-V9和咖啡因(内标),并使用多反应监测(MRM)模式进行定量,GL-V9的质荷比转换为m/z 410.20→126.10,咖啡因(内标)的质荷比转换为195.10→138.00。在2-1000 ng/mL范围内获得了良好的线性关系(R>0.99),提取回收率为101.91±11.34%。日内和日间精密度变化较小(RSD为1.35-6.96%),准确度的相对误差(RE)为-7.35-6.27%。所建立和验证的UPLC-MS/MS方法成功应用于研究GL-V9经不同给药途径给药后的药代动力学行为。结果表明,与口服给药相比,肺部给药在提高生物利用度方面具有更大优势。