Zhou Qi-Le, Zhu Di-Na, Yang Yan-Fang, Xu Wei, Yang Xiu-Wei
State Key Laboratory of Natural and Biomimetic Drugs and Department of Natural Medicines, School of Pharmaceutical Sciences, Peking University, Beijing 100191, China.
Beijing Area Major Laboratory of Protection and Utilization of Traditional Chinese Medicine, Beijing Normal University, Beijing 100088, China; College of Chemistry, Beijing Normal University, Beijing 100875, China.
J Pharm Biomed Anal. 2017 Apr 15;137:1-12. doi: 10.1016/j.jpba.2017.01.009. Epub 2017 Jan 6.
To track the pharmacokinetic features of red ginseng (RG), a rapid and sensitive ultra fast liquid chromatographic coupled with electrospray ionization triple quadrupole tandem mass spectrometry (UFLC-MS/MS) method was developed for simultaneous quantification of twenty-one ginsenosides and their three aglycones, including 18 prototype compounds (ginsenosides Rb, Rb, Rc, Rd, Re, Rg, Rg, Rh, Rk, Rk, 20(S)-Rf, 20(S)-Rg, 20(R)-Rg, 20(S)-Rg, 20(R)-Rg, 20(S)-Rh, 20(R)-Rh, 20(S)-NG-R), and 6 metabolites (ginsenosides 20(S)-Rh and Rh, 20(S)-protopanaxadiol (PPD), 20(S)-protopanaxatriol (PPT), 20(R)-PPT, ginseng saponin compound K) of RG in rat plasma after oral administration of RG water extract at a single dose of 4g/kg body weight to rats. All analytes with internal standard (digoxin) were detected by multiple reaction monitoring in negative ionization mode and separated on an ACQUITY UPLC BEH RP-C column (1.7μm, 100×2.1mm). This established method was well validated in terms of linearity, sensitivity, intra- and inter-day precisions, accuracy, recovery, matrix effect, stability, and had a lower limit of quantification at the concentration range of 0.12-8.12ng/mL for all of analytes. This UFLC-MS/MS approach was successfully applied to the pharmacokinetic study for RG water extract in rats. We firstly proposed that Rb, Rb, Rc, Rd, Rg, Rg, 20(S)-Rg, 20(S)-Rh, and 20(S)-PPD measured in rat plasma were suitable pharmacokinetic markers of RG extract in rats due to their high systemic exposure levels. Thus, this specific and reliable method will be useful for future applications to pharmacokinetic studies for various sources of ginsenoside samples and Panax herbs in vivo.
为追踪红参(RG)的药代动力学特征,建立了一种快速灵敏的超快速液相色谱-电喷雾电离三重四极杆串联质谱联用(UFLC-MS/MS)方法,用于同时定量大鼠血浆中的21种人参皂苷及其3种苷元,包括18种原型化合物(人参皂苷Rb、Rb、Rc、Rd、Re、Rg、Rg、Rh、Rk、Rk、20(S)-Rf、20(S)-Rg、20(R)-Rg、20(S)-Rg、20(R)-Rg、20(S)-Rh、20(R)-Rh、20(S)-NG-R)以及6种代谢产物(人参皂苷20(S)-Rh和Rh、20(S)-原人参二醇(PPD)、20(S)-原人参三醇(PPT)、20(R)-PPT、人参皂苷Compound K)。将RG水提取物以4g/kg体重的单剂量口服给予大鼠后进行检测。所有分析物与内标(地高辛)通过多反应监测在负离子模式下进行检测,并在ACQUITY UPLC BEH RP-C柱(1.7μm,100×2.1mm)上进行分离。该方法在线性、灵敏度、日内和日间精密度、准确度、回收率、基质效应、稳定性方面得到了很好的验证,所有分析物的定量下限在0.12 - 8.12ng/mL浓度范围内。这种UFLC-MS/MS方法成功应用于大鼠RG水提取物的药代动力学研究。我们首次提出,大鼠血浆中测得的Rb、Rb、Rc、Rd、Rg、Rg、20(S)-Rg、20(S)-Rh和20(S)-PPD因其较高的全身暴露水平,是RG提取物在大鼠体内合适的药代动力学标志物。因此,这种特异且可靠的方法将有助于未来对各种来源的人参皂苷样品和人参属草药进行体内药代动力学研究。