Ni Jinsong, Ouyang Hui, Aiello Mauro, Seto Carmai, Borbridge Lisa, Sakuma Takeo, Ellis Robert, Welty Devin, Acheampong Andrew
Department of Drug Safety Evaluation, Allergan, 2525 Dupont Drive, Irvine, California 92612, USA.
Pharm Res. 2008 Jul;25(7):1572-82. doi: 10.1007/s11095-008-9555-x. Epub 2008 Feb 26.
To evaluate the sensitivity requirement for LC-MS/MS as an analytical tool to support human microdosing study with sub-pharmacological dose, investigate proportionality of pharmacokinetics from the microdose to therapeutic human equivalent doses in rats and characterize circulating metabolites in rats administered with the microdose.
Five drugs of antipyrine, metoprolol, carbamazepine, digoxin and atenolol were administered orally to male Sprague-Dawley rats at 0.167, 1.67, 16.7, 167 and 1,670 microg/kg doses. Plasma samples were extracted using either solid phase extraction or liquid-liquid extraction, and analyzed using LC-MS/MS.
Using 100 microl of plasma sample, the lower limit of quantitation for antipyrine (10 pg/ml), carbamazepine (1 pg/ml), metoprolol (5 pg/ml), atenolol (20 pg/ml), and digoxin (5 pg/ml) were achieved using an API 5000. Proportional pharmacokinetics were observed from 0.167 microg/kg to 1,670 microg/kg for antipyrine and carbamazepine and from 1.67 to 1,670 microg/kg for atenolol and digoxin, while metoprolol exhibited a non-proportional pharmacokinetics relationship. Several metabolites of carbamazepine were characterized in plasma from rats dosed at 1.67 mug/kg using LC-MS/MS.
This study has shown the promise of sensitive LC-MS/MS method to support microdose pharmacokinetics and drug metabolism studies in human.
评估液相色谱-串联质谱(LC-MS/MS)作为一种分析工具支持人体亚药理剂量微剂量研究的灵敏度要求,研究大鼠体内从微剂量到治疗等效人剂量的药代动力学比例关系,并对给予微剂量的大鼠体内循环代谢物进行表征。
将安替比林、美托洛尔、卡马西平、地高辛和阿替洛尔五种药物以0.167、1.67、16.7、167和1670μg/kg的剂量口服给予雄性Sprague-Dawley大鼠。血浆样品采用固相萃取或液-液萃取法提取,并用LC-MS/MS进行分析。
使用100μl血浆样品,采用API 5000实现了安替比林(10 pg/ml)、卡马西平(1 pg/ml)、美托洛尔(5 pg/ml)、阿替洛尔(20 pg/ml)和地高辛(5 pg/ml)的定量下限。安替比林和卡马西平在0.167μg/kg至1670μg/kg之间观察到成比例的药代动力学,阿替洛尔和地高辛在1.67至1670μg/kg之间观察到成比例的药代动力学,而美托洛尔表现出不成比例的药代动力学关系。使用LC-MS/MS对给予1.67μg/kg剂量的大鼠血浆中的几种卡马西平代谢物进行了表征。
本研究表明灵敏的LC-MS/MS方法有望支持人体微剂量药代动力学和药物代谢研究。