Translational Toxicology of N-Isopropylbutylone: Integrated In Vivo and In Silico Assessment of a New Synthetic Cathinone

The novel psychoactive substance (NPS) phenomenon represents a major global problem. Despite the methodical inclusion of new analogues in lists of controlled drugs, new compounds continue to circulate, frequently resulting in fatal intoxications. The emergence of N-isopropyl butylone (NiPB) in 2024, found as an adulterant in methamphetamine-based products, underscores the rapidly evolving landscape of NPSs. Despite its structural similarity to potent monoamine transporter inhibitors, specific pharmacological data and information on its effects in consumers are currently lacking. This study aims to characterize the acute physiological, behavioural, and sensorimotor effects of NiPB (0.1–60 mg/kg; i.p.) in male mice, complemented by in silico pharmacokinetic modelling (ADMET Predictor®). NiPB is predicted to undergo N-dealkylation, cleavage of the 3,4-methylendioxy moiety, and N-glucuronidation. Computational profiling predicted high BBB permeability, Vd = 4.37 L/kg, fup > 50%, CYP2D6 and OCT2 inhibition, and hERG blockade (pIC50 = 4.888). In vivo, NiPB induced dose-dependent locomotor stimulation without affecting motor coordination and provoked tachypnoea and visual reflex alterations, while tactile and acoustic responses, as well as thermoregulation, were preserved. In conclusion, this study defines the preliminary toxicological profile of NiPB, indicating that acute exposure may trigger central psychostimulant toxicity in vivo. Furthermore, based on the in silico profiling, targeted experimental studies are required to determine the actual cardiotoxicity and risks of drug–drug interactions associated with NiPB.

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Journal
International Journal of Molecular Sciences
Published
2026-09-30
DOI
https://doi.org/10.3390/ijms27198795
Primary Topic
Forensic Toxicology and Drug Analysis
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article
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article

Translational Toxicology of N-Isopropylbutylone: Integrated In Vivo and In Silico Assessment of a New Synthetic Cathinone

Serena Mestria, Sabrine Bilel, Giorgia Corli, Giulia Biosa et al.
International Journal of Molecular Sciences
Forensic Toxicology and Drug Analysis
article

Translational Toxicology of N-Isopropylbutylone: Integrated In Vivo and In Silico Assessment of a New Synthetic Cathinone

Serena Mestria, Sabrine Bilel, Giorgia Corli, Giulia Biosa, Matteo Marti, Sara Odoardi, Marta Bassi, Sabina Strano Rossi, Tatiana Bernardi, Nicole Cocita, Asia Masoli
article en

Abstract

The novel psychoactive substance (NPS) phenomenon represents a major global problem. Despite the methodical inclusion of new analogues in lists of controlled drugs, new compounds continue to circulate, frequently resulting in fatal intoxications. The emergence of N-isopropyl butylone (NiPB) in 2024, found as an adulterant in methamphetamine-based products, underscores the rapidly evolving landscape of NPSs. Despite its structural similarity to potent monoamine transporter inhibitors, specific pharmacological data and information on its effects in consumers are currently lacking. This study aims to characterize the acute physiological, behavioural, and sensorimotor effects of NiPB (0.1–60 mg/kg; i.p.) in male mice, complemented by in silico pharmacokinetic modelling (ADMET Predictor®). NiPB is predicted to undergo N-dealkylation, cleavage of the 3,4-methylendioxy moiety, and N-glucuronidation. Computational profiling predicted high BBB permeability, Vd = 4.37 L/kg, fup > 50%, CYP2D6 and OCT2 inhibition, and hERG blockade (pIC50 = 4.888). In vivo, NiPB induced dose-dependent locomotor stimulation without affecting motor coordination and provoked tachypnoea and visual reflex alterations, while tactile and acoustic responses, as well as thermoregulation, were preserved. In conclusion, this study defines the preliminary toxicological profile of NiPB, indicating that acute exposure may trigger central psychostimulant toxicity in vivo. Furthermore, based on the in silico profiling, targeted experimental studies are required to determine the actual cardiotoxicity and risks of drug–drug interactions associated with NiPB.

International Journal of Molecular SciencesVol. 27(19)
Università Cattolica del Sacro Cuore (IT), University of Ferrara (IT)
Good health and well-being
Openalex Percentile: Top 13%
Forensic Toxicology and Drug Analysis
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