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Recent advances in applications of liquid chromatography-tandem mass spectrometry to the analysis of reactive drug metabolites
Authors:Ma Shuguang  Zhu Mingshe
Affiliation:a Pharmacokinetics and Drug Metabolism, Amgen Inc., One Amgen Center Drive, Thousand Oaks, CA 91320, United States
b Department of Biotransformation, Pharmaceutical Candidate Optimization, Bristol-Myers Squibb Research and Development, Princeton, NJ 08543, United States
Abstract:Biotransformation of chemically stable compounds to reactive metabolites which can bind covalently to macromolecules, such as proteins and DNA, is considered as an undesirable feature of drug candidates. As part of an overall assessment of absorption, distribution, metabolism and excretion (ADME) properties, many pharmaceutical companies have put methods in place to screen drug candidates for their tendency to generate reactive metabolites and as well characterize the nature of the reactive metabolites through in vitro and in vivo studies. After identification of the problematic compounds, steps can be taken to minimize the potential of bioactivation through appropriate structural modifications. For these reasons, detection, structural characterization and quantification of reactive metabolites by mass spectrometry have become an important task in the drug discovery process. Triple quadrupole mass spectrometry is traditionally employed for the analysis of reactive metabolites. In the past 3 years, a number of new mass spectrometry methodologies have been developed to improve the sensitivity, selectivity and throughput of the analysis. This review focuses on the recent advances in the detection and characterization of reactive metabolites by liquid chromatography-tandem mass spectrometry (LC-MS/MS) in drug discovery and development, especially through the use of linear ion trap (LTQ), hybrid triple quadrupole-linear ion trap (Q-trap) and the high resolution LTQ-Orbitrap instruments.
Keywords:ADME, absorption, distribution, metabolism and excretion   CNLS, constant neutral loss scan   CYP, cytochrome P450   EPI, enhanced product ion   FTICRMS, Fourier transform ion cyclotron resonance mass spectrometry   GSH, glutathione   GSH-EE, glutathione ethyl ester   HLM, human liver microsomes   HPLC, high performance liquid chromatography   LC-MS, liquid chromatography-mass spectrometry   LC-MS/MS, liquid chromatography-tandem mass spectrometry   LTQ, linear ion trap   MDF, mass defect filter   MRM, multiple reaction monitoring   NMR, nuclear magnetic resonance   P, the parent drug   PIS, precursor ion scan   Q-trap, quadrupole linear ion trap   Q-TOF, quadrupole time-of-flight   UV, ultraviolet
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