State Key Laboratory of Bioactive Substance and Function of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, PR China.
Anal Chim Acta. 2012 Jun 20;731:60-7. doi: 10.1016/j.aca.2012.04.024. Epub 2012 Apr 25.
An integrated approach combining data acquisition using MS(E) and multi-period product ion scan (mpMS/MS), with high-resolution characteristic extracted ion chromatograms (hcXIC) as a data mining method, was developed for in vivo drug metabolites screening and identification. This approach is illustrated by analyzing metabolites of a potential anticancer agent, 3,6,7-trimethoxyphenanthroindolizidine (CAT) in rat urine based on rapid resolution liquid chromatography combined with tandem mass spectrometry (RRLC-MS/MS). Untargeted full-scan MS(E) enabled the high-throughput acquisition of potential metabolites, and targeted mpMS/MS contributed to the sensitivity and specificity of the acquisition of molecules of interest. The data processing method hcXIC, based on the structure of CAT, was shown to be highly effective for the metabolite discovery. Through the double-filtering effect of the characteristic ion and accurate mass, conventional extracted ion chromatograms that contained a substantial number of false-positive peaks were simplified into chromatograms essentially free of endogenous interferences. As a result, 21 metabolites were detected in rat urine after oral administration of CAT. Based on the characteristic fragmentation patterns of the phenanthroindolizidine alkaloid, the structures of 9 metabolites were identified. Furthermore, the interpretation of the MS/MS spectra of these metabolites enabled the determination of demethylation position as well as the differentiation between N-oxidized and hydroxylated metabolites.
采用 MS(E) 数据采集和多周期产物扫描(mpMS/MS)相结合的综合方法,结合高分辨率特征提取离子色谱(hcXIC)作为数据挖掘方法,用于体内药物代谢物筛选和鉴定。本方法通过基于快速分辨液相色谱与串联质谱联用(RRLC-MS/MS)分析大鼠尿液中潜在抗癌剂 3,6,7-三甲氧基菲并吲哚里啶(CAT)的代谢物进行说明。无靶向全扫描 MS(E) 实现了潜在代谢物的高通量采集,而靶向 mpMS/MS 有助于提高目标分子采集的灵敏度和特异性。基于 CAT 结构的 hcXIC 数据处理方法对于代谢物的发现非常有效。通过特征离子和精确质量的双重过滤效应,原本包含大量假阳性峰的常规提取离子色谱简化为基本不含内源性干扰的色谱图。结果,在大鼠口服 CAT 后检测到 21 种代谢物。基于菲并吲哚里啶生物碱的特征裂解模式,鉴定了 9 种代谢物的结构。此外,对这些代谢物的 MS/MS 谱的解释能够确定去甲基化位置以及 N-氧化和羟基化代谢物的区分。