Kammerer Bernd, Kahlich Rainer, Ufer Mike, Laufer Stefan, Gleiter Christoph H
Institute of Pharmacology and Toxicology, Department of Clinical Pharmacology, University Hospital Tübingen, 72076 Tübingen, Germany.
Anal Biochem. 2005 Apr 15;339(2):297-309. doi: 10.1016/j.ab.2005.01.010.
Many physiological processes show a high degree of stereoselectivity, including the metabolism of xenobiotics as catalyzed by cytochrome P450 enzymes. An analysis of these chiral discrimination effects in drug metabolism is essential for an in-depth understanding of metabolic pathways that differ between enantiomers of a given chiral drug or metabolite thereof. Achiral chromatographic separation and structural identification followed by chiral analysis of metabolites from blood specimens usually requires a time-consuming multistage analytical technique. In an effort to optimize such a complicated analytical scheme, a novel two-dimensional online achiral-chiral liquid chromatography-tandem mass spectrometry (LC/LC-MS/MS) coupling method was developed by using a peak parking technique in combination with a makeup flow system. Metabolites were separated in the first dimension using a C18 reversed-phase system. A makeup eluent of water/methanol (95/5) was split into the flow before storing the metabolites separately on chiral cartridges. Subsequently, the metabolite enantiomers were eluted backward onto the analytical chiral column and separated, and the ratio of enantiomers was determined. The method was successfully validated with respect to limit of detection, linearity, intra- and interday accuracy, and precision. In the course of a human volunteer study investigating the influence of CYP (cytochrome) 2C9 genetic polymorphism on phenprocoumon (PPC) metabolism, we used this new two-dimensional online analytical technique for the analysis of PPC metabolites in plasma. The enantiomeric forms of 4'-, 6-, and 7-hydroxy-PPC metabolites as well as two novel metabolites were identified, and the ratio of the enantiomers was calculated. We found that the enantiomeric ratio for the different metabolites in the plasma sample of each measured individual differs markedly from a nearly 100% chiral discrimination for the two new putative metabolites. This new analytical coupling method possesses general utility in the analysis of chiral discrimination effects, particularly as it relates to pharmacokinetics and dynamics, a scientific field that is rapidly becoming an area of concern and interest.
许多生理过程都表现出高度的立体选择性,包括细胞色素P450酶催化的外源性物质代谢。分析药物代谢中的这些手性识别效应对于深入了解给定手性药物或其代谢物的对映体之间不同的代谢途径至关重要。非手性色谱分离和结构鉴定,随后对手血标本中的代谢物进行手性分析,通常需要耗时的多阶段分析技术。为了优化这种复杂的分析方案,通过将峰保留技术与补充流系统相结合,开发了一种新型的二维在线非手性-手性液相色谱-串联质谱(LC/LC-MS/MS)联用方法。代谢物在第一维中使用C18反相系统进行分离。水/甲醇(95/5)的补充洗脱液在将代谢物分别存储在手性柱上之前分流到流中。随后,代谢物对映体被反向洗脱到分析手性柱上并分离,并测定对映体比例。该方法在检测限、线性、日内和日间准确性以及精密度方面成功得到验证。在一项研究细胞色素(CYP)2C9基因多态性对苯丙香豆素(PPC)代谢影响的人体志愿者研究过程中,我们使用这种新的二维在线分析技术分析血浆中的PPC代谢物。鉴定了4'-、6-和7-羟基-PPC代谢物以及两种新代谢物的对映体形式,并计算了对映体比例。我们发现,每个被测个体血浆样本中不同代谢物的对映体比例与两种新推测代谢物几乎100%的手性识别明显不同。这种新的分析联用方法在手性识别效应分析中具有普遍实用性,特别是在与药代动力学和动力学相关的领域,这一科学领域正迅速成为一个备受关注和感兴趣的领域。