Synthesis and identification of deschloroketamine metabolites in rats' urine and a quantification method for deschloroketamine and metabolites in rats' serum and brain tissue using liquid chromatography tandem mass spectrometry

Author:

Hájková Kateřina123,Jurásek Bronislav145ORCID,Čejka Jan6,Štefková Kristýna5,Páleníček Tomáš57,Sýkora David2,Kuchař Martin145ORCID

Affiliation:

1. Forensic Laboratory of Biologically Active Substances UCT Prague Technická 5 Prague Czech Republic

2. Department of Analytical Chemistry UCT Prague Technická 5 Prague Czech Republic

3. Department of Brain Electrophysiology National Institute of Mental Health Topolová Klecany Czech Republic

4. Department of Chemistry of Natural Compounds UCT Prague Technická 5 Prague Czech Republic

5. Department of Experimental Neurobiology National Institute of Mental Health Topolová Klecany Czech Republic

6. Department of Solid State Chemistry UCT Prague Technická 5 Prague Czech Republic

7. 3rd Faculty of Medicine Charles University in Prague Ruská Prague Czech Republic

Publisher

Wiley

Subject

Spectroscopy,Pharmaceutical Science,Environmental Chemistry,Analytical Chemistry

Reference58 articles.

1. UNODC ‐ United Nations Office on Drugs and Crime.Understanding the synthetic drug market: the NPS factor. Vol. 19 Global Smart Update.2018.https://www.unodc.org/documents/scientific/Global_Smart_Update_2018_Vol.19.pdf. Accessed 3 April 2019.

2. UNODC ‐ United Nations Office on Drugs and Crime.World Drug Report 2018. Executive summary conclusions and policy implications.2018.https://www.unodc.org/wdr2018/prelaunch/WDR18_Booklet_1_EXSUM.pdf. Accessed 3 April 2019.

3. EMCDDA ‐ European Monitoring Centre for Drugs and Drug Addiction and Europol.EDND – European information system and database on new drugs. Early Warning System on NPS;2019.https://ednd.emcdda.europa.eu/html.cfm/index6553EN.html. Accessed 25 March 2019.

4. Targeted and non-targeted drug screening in whole blood by UHPLC-TOF-MS with data-independent acquisition

5. The dissociative anaesthetics, ketamine and phencyclidine, selectively reduce excitation of central mammalian neurones by N-methyl-aspartate

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