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Archives of Toxicology|April 6, 2024
Human metabolism of four synthetic benzimidazole opioids: isotonitazene, metonitazene, etodesnitazene, and metodesnitazeneOmayema Taoussi, Diletta Berardinelli, Simona Zaami, et al.Archives of Toxicology|April 28, 2025
Dipyanone, a new methadone-like synthetic opioid: In vitro and in vivo human metabolism and pharmacological profilingDiletta Berardinelli, Johannes Kutzler, Omayema Taoussi, et al.Bioanalysis|December 10, 2015
In vitro, in vivo and in silico metabolic profiling of α-pyrrolidinopentiothiophenone, a novel thiophene stimulantMadeleine J Swortwood, Jeremy Carlier, Kayla N Ellefsen, et al.The AAPS Journal|June 11, 2024
3-CMC, 4-CMC, and 4-BMC Human Metabolic Profiling: New Major Pathways to Document Consumption of Methcathinone Analogues?Diletta Berardinelli, Omayema Taoussi, Gloria Daziani, et al.Metabolites|October 28, 2025
In Vitro Metabolism of a Benzofuran-Substituted Nitazene: EthyleneoxynitazeneOmayema Taoussi, Duygu Yeşim Ovat, Francesco Tavoletta, et al.International Journal of Molecular Sciences|July 27, 2024
In Vitro and In Vivo Human Metabolism of Ostarine, a Selective Androgen Receptor Modulator and Doping AgentOmayema Taoussi, Giulia Bambagiotti, Prince Sellase Gameli, et al.Journal of Chromatography. B, Analytical Technologies in the Biomedical and Life Sciences|June 22, 2015
Quantification of hypoglycin A in serum using aTRAQ(®) assayFrançois Boemer, Michelle Deberg, Roland Schoos, et al.Clinica Chimica Acta; International Journal of Clinical Chemistry|July 14, 2025
Human diagnostic markers for intake of semi-synthetic cannabinoids (9R)- and (9S)-hexahydrocannabinolPrince S Gameli, Omayema Taoussi, Annagiulia Di Trana, et al.Archives of Toxicology|October 1, 2025
In vivo and in vitro metabolism of the designer benzodiazepine, bretazenil: a comparison of pooled human hepatocytes and liver microsomes with postmortem urine and blood samplesPrince S Gameli, Johannes Kutzler, Laura M Huppertz, et al.Archives of Toxicology|October 31, 2025
Human metabolism and pharmacological profiling of protonitazepyne and metonitazepyne, two highly potent nitazenes: prediction of main metabolite activity based on µ-opioid receptor docking simulationsDiletta Berardinelli, Omayema Taoussi, Duygu Yeşim Ovat, et al.Pageof 6