Li Austin C, Gohdes Mark A, Shou Wilson Z
Covance Laboratories Inc., 3301 Kinsman Boulevard, Madison, Wisconsin, USA.
Rapid Commun Mass Spectrom. 2007;21(8):1421-30. doi: 10.1002/rcm.2976.
This paper describes a new strategy that utilizes the fast trap mode scan of the hybrid triple quadrupole linear ion trap (QqQ(LIT)) for the identification of drug metabolites. The strategy uses information-dependent acquisition (IDA) where the enhanced mass scan (EMS), the trap mode full scan, was used as the survey scan to trigger multiple dependent enhanced product ion scans (EPI), the trap mode product ion scans. The single data file collected with this approach not only includes full scan data (the survey), but also product ion spectra rich in structural information. By extracting characteristic product ions from the dependent EPI chromatograms, we can provide nearly complete information for in vitro metabolites that otherwise would have to be obtained by multiple precursor ion scan (prec) and constant neutral loss (NL) analysis. This approach effectively overcomes the disadvantages of traditional prec and NL scans, namely the slow quadrupole scan speed, and possible mass shift. Using nefazodone (NEF) as the model compound, we demonstrated the effectiveness of this strategy by identifying 22 phase I metabolites in a single liquid chromatography/tandem mass spectrometry (LC/MS/MS) run. In addition to the metabolites reported previously in the literature, seven new metabolites were identified and their chemical structures are proposed. The oxidative dechlorination biotransformation was also discovered which was not reported in previous literature for NEF. The strategy was further evaluated and worked well for the fast discovery setting when a ballistic gradient elution was used, as well as for a simulated in vivo setting when the incubated sample (phase I metabolites) was spiked to control human plasma extract and control human urine.
本文描述了一种新策略,该策略利用混合三重四极杆线性离子阱(QqQ(LIT))的快速阱模式扫描来鉴定药物代谢物。该策略采用信息依赖采集(IDA),其中增强质量扫描(EMS)即阱模式全扫描用作普查扫描,以触发多个依赖的增强产物离子扫描(EPI)即阱模式产物离子扫描。用这种方法采集的单个数据文件不仅包括全扫描数据(普查),还包括富含结构信息的产物离子谱。通过从依赖的EPI色谱图中提取特征产物离子,我们可以为体外代谢物提供几乎完整的信息,否则这些信息将不得不通过多次前体离子扫描(prec)和恒定中性丢失(NL)分析来获得。这种方法有效地克服了传统prec和NL扫描的缺点,即四极杆扫描速度慢以及可能的质量偏移。以奈法唑酮(NEF)作为模型化合物,我们通过在一次液相色谱/串联质谱(LC/MS/MS)运行中鉴定出22种I相代谢物,证明了该策略的有效性。除了文献中先前报道的代谢物外,还鉴定出了7种新的代谢物,并提出了它们的化学结构。还发现了氧化脱氯生物转化,这在先前关于NEF的文献中未曾报道。当使用快速梯度洗脱时,该策略在快速发现环境中得到了进一步评估且效果良好,并且当将孵育样品(I相代谢物)加入到对照人血浆提取物和对照人尿液中时,该策略在模拟体内环境中也表现良好。