Liu Hui-Xin, Hu Ying, He Yu-Qi, Liu Yong, Li Wei, Yang Ling
Laboratory of Pharmaceutical Resource Discovery, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, China.
Talanta. 2009 Oct 15;79(5):1433-40. doi: 10.1016/j.talanta.2009.06.018. Epub 2009 Jun 13.
A simple and sensitive method for determination of the O-demethylation activity of rat, dog, minipig, and human liver micrsomes toward paeonol using ultra-performance liquid chromatography with mass detection (UPLC-MS) has been developed. The method uses chemically synthesized O-demethylated metabolite of paeonol (2,4-dihydroxyacetophenone, DHA) as a standard for method validation. Validation was done with respect to specificity, linearity, detection limit, recovery, stability, precision and accuracy. The chromatographic separation was achieved on a UPLC BEH C(18) column (50 mm x2.1 mm i.d., 1.7 microm), with phase of acetonitrile-water (ratio 30:70). Selective ion reaction (SIR) monitor was specific for paeonol, DHA and I.S. The method was specific since there were no interference peaks from the reaction matrix. The calibration curve for DHA was linear from 0.5-100 microM with r(2)=0.9999. The newly developed method has good precision and accuracy. The method was successfully used to determine the kinetics of DHA activities toward paeonol in liver microsomes from different species. Dog liver microsomes (DLMs) were the most active in paeonol O-demethylation (709.7 pmol/min/mg protein) followed by rat liver microsomes (RLMs) (579.6 pmol/min/mg protein), HLMs (569.3 pmol/min/mg protein), and then minipig liver microsomes (PLMs) (417.3 pmol/min/mg protein). The developed method was appropriated for rapid screening paeonol O-demethylation activity in liver microsomes from different species.
已开发出一种简单且灵敏的方法,使用超高效液相色谱-质谱联用(UPLC-MS)测定大鼠、犬、小型猪和人肝微粒体对丹皮酚的O-去甲基化活性。该方法使用化学合成的丹皮酚O-去甲基化代谢物(2,4-二羟基苯乙酮,DHA)作为方法验证的标准品。针对特异性、线性、检测限、回收率、稳定性、精密度和准确度进行了验证。在UPLC BEH C(18)柱(50 mm×2.1 mm内径,1.7微米)上进行色谱分离,流动相为乙腈-水(比例30:70)。选择性离子反应(SIR)监测对丹皮酚、DHA和内标具有特异性。该方法具有特异性,因为反应基质没有干扰峰。DHA的校准曲线在0.5 - 100 microM范围内呈线性,r(2)=0.9999。新开发的方法具有良好的精密度和准确度。该方法成功用于测定不同物种肝微粒体中DHA对丹皮酚的活性动力学。犬肝微粒体(DLMs)在丹皮酚O-去甲基化方面活性最高(709.7 pmol/min/mg蛋白),其次是大鼠肝微粒体(RLMs)(579.6 pmol/min/mg蛋白)、人肝微粒体(HLMs)(569.3 pmol/min/mg蛋白),然后是小型猪肝微粒体(PLMs)(417.3 pmol/min/mg蛋白)。所开发的方法适用于快速筛选不同物种肝微粒体中的丹皮酚O-去甲基化活性。