In vitro and in vivo metabolic study of three new psychoactive β-keto-arylcyclohexylamines.
Linhao XuHui YanYiling TangYu LiuPing XiangTaijun HangPublished in: Journal of analytical toxicology (2024)
Since the 2000s, an increasing number of new psychoactive substances have appeared on the illicit drug market. β-Keto-arylcyclohexylamine compounds play important pharmacological roles in anesthesia; however, because these new psychoactive substances have rapidly increasing illicit recreational use, the lack of detailed toxicity data are of particular concern. Therefore, analysis of their metabolites can help forensic personnel provide references and suggestions on whether a suspect has taken an illicit new psychoactive β-keto-arylcyclohexylamine. The present study investigated the in vitro and in vivo metabolism and metabolites of three β-keto-arylcyclohexylamines: deschloro-N-ethyl-ketamine, fluoro-N-ethyl-ketamine and bromoketamine. In vitro and in vivo models were established using zebrafish and human liver microsomes for analysis of Phase I and Phase II metabolites by liquid chromatography-high-resolution mass spectrometry. Altogether, 49 metabolites were identified. The results were applied for the subject urine samples of known fluoro-N-ethyl-ketamine consumer screen analysis in forensic cases. Hydroxy-deschloro-N-ethyl-ketamine, hydroxy-fluoro-N-ethyl-ketamine and hydroxy-bromoketamine were recommended as potential biomarkers for documenting intake in clinical and forensic cases.
Keyphrases
- high resolution mass spectrometry
- liquid chromatography
- ms ms
- ionic liquid
- pain management
- positron emission tomography
- phase ii
- clinical trial
- mass spectrometry
- computed tomography
- healthcare
- oxidative stress
- ultra high performance liquid chromatography
- open label
- tandem mass spectrometry
- physical activity
- emergency department
- electronic health record
- machine learning
- gas chromatography
- deep learning
- atomic force microscopy
- single molecule
- finite element