Gangl Eric, Utkin Ilya, Gerber Nicholas, Vouros Paul
Department of Chemistry and Barnett Institute, Northeastern University, Boston, MA, 02115, USA.
J Chromatogr A. 2002 Oct 18;974(1-2):91-101. doi: 10.1016/s0021-9673(02)01243-8.
The structural elucidation of metabolites of ritonavir and indinavir, HIV-protease inhibitor drugs, by liquid chromatography-electrospray ionization mass spectrometry is described. Ritonavir and indinavir were biotransformed separately by incubation with transplant quality human liver microsomes. The incubation mixture was then analyzed by HPLC coupled to ion trap (ITMS) and triple quadrupole mass analyzers. The metabolites retained most of the structural features of the parent molecules. Baseline chromatographic resolution of isobaric species by gradient elution HPLC permitted rapid structural identification of these metabolites. Both drugs were biotransformed primarily by oxidative and hydrolytic pathways to numerous metabolites that retained many of the features of the parent molecules. Triple quadrupole and ion trap mass spectrometry were applied jointly to thoroughly detect and thoroughly characterize these metabolites. Furthermore, retention-time and data-dependent scanning assured acquisition of detailed MS-MS spectra for rapid detection of metabolic pathways of ritonavir and indinavir. Comparison of the ITMS and triple quadrupole data showed qualitative and quantitative differences in the mass spectral patterns, suggesting that these instruments should be used in parallel to ensure comprehensive metabolite detection and characterization by LC-MS.
描述了通过液相色谱 - 电喷雾电离质谱法对HIV蛋白酶抑制剂药物利托那韦和茚地那韦的代谢产物进行结构解析的过程。利托那韦和茚地那韦分别与移植级别的人肝微粒体孵育进行生物转化。然后将孵育混合物通过与离子阱(ITMS)和三重四极杆质量分析仪联用的HPLC进行分析。代谢产物保留了母体分子的大部分结构特征。通过梯度洗脱HPLC对同量异位物种进行基线色谱分离,从而能够快速鉴定这些代谢产物的结构。两种药物主要通过氧化和水解途径生物转化为众多保留了母体分子许多特征的代谢产物。联合应用三重四极杆和离子阱质谱法来全面检测和表征这些代谢产物。此外,保留时间和数据依赖扫描确保获取详细的MS - MS谱图,以便快速检测利托那韦和茚地那韦的代谢途径。ITMS和三重四极杆数据的比较显示了质谱图在定性和定量方面的差异,这表明应并行使用这些仪器,以确保通过LC - MS全面检测和表征代谢产物。