Effect of -NBOMe Compounds on Sensorimotor, Motor, and Prepulse Inhibition Responses in Mice in Comparison With the 2C Analogs and Lysergic Acid Diethylamide: From Preclinical Evidence to Forensic Implication in Driving Under the Influence of Drugs.
Micaela Tirri, Sabrine Bilel, Raffaella Arfè, Giorgia Corli, Beatrice Marchetti, Tatiana Bernardi, Federica Boccuto, Giovanni Serpelloni, Francesco Botrè, Fabio De-Giorgio, Krystyna Gołembiowska, Matteo Marti
Frontiers in psychiatry January 1, 2022 DOI: 10.3389/fpsyt.2022.875722 via PubMed
Summary
AI-generated from the abstractPsychedelic phenethylamines, especially -NBOMe compounds, impair sensorimotor function, reaction time, and sensory gating in mice more potently than LSD or their 2C analogs. Halogenated derivatives 25I-NBOMe and 25B-NBOMe were the most effective at altering visual and acoustic responses, motor activity, and prepulse inhibition. The rank order of potency showed these -NBOMe compounds were stronger than both 2C analogs and LSD. These sensory impairments affected spontaneous movement and reaction time without changing stimulated motor performance. The findings suggest that -NBOMe compounds pose potential public health risks, particularly for driving or hazardous work requiring intact sensorimotor skills.
Study at a glance
| Characteristics | Experimental study Peer reviewed |
|---|---|
| Population | Mice |
| Interventions | 25H-NBOMe 25I-NBOMe 25B-NBOMe 2C compounds analogs LSD |
| Dose | 0.001-10 mg/kg |
| Topics | LSD |
| Keywords | -nbome 2c compounds Phenethylamine Pre-pulse inhibition |
| Citations | 17 |
| Key finding | Halogenated -NBOMe derivatives (25I-NBOMe and 25B-NBOMe) impair sensorimotor, reaction time, and prepulse inhibition responses more potently than their 2C analogs or LSD. |
Abstract
In the last decade, the market for new psychoactive substances has been enriched by numerous psychedelic phenethylamines, which mimic the psychoactive effect of lysergic acid diethylamide (LSD). In particular, the -NBOMe series, which are more potent than their 2C compounds analogs, are considered worthy substitutes for LSD by users. The purpose of this study was to assess the effects of 25H-NBOMe and its halogenated derivatives (25I-NBOMe and 25B-NBOMe) in comparison to their 2C compounds analogs and LSD on the sensorimotor (visual, acoustic, and overall tactile), reaction time, spontaneous (total distance traveled) and stimulated (drag, accelerod test) motor activity, grip strength test, and prepulse inhibition (PPI) responses in mice. Systemic administration of -NBOMe, 2C compounds analogs, and LSD (0.001-10 mg/kg) differently impaired the sensorimotor, reaction time, motor, and PPI responses in mice. In particular, halogenated (25I and 25B)-NBOMe derivatives appear to be more effective than the entire class of 2C compounds analogs in altering visual and acoustic responses, affecting reaction time, and motor and sensory gating in PPI test. In fact, the specific rank order of compounds potency for nearly all of the experiments showed that (25I and 25B)-NBOMe were more potent than 2C compounds analogs and LSD. -NBOMe and 2C compounds analogs impaired not only the reception of incoming sensory stimuli (visual and acoustic), but their correct brain processing (PPI) in an equal and sometimes stronger way than LSD. This sensory impairment directly affected the spontaneous motor response and reaction time of mice, with no change in performance in stimulated motor activity tests. These aspects should be carefully considered to better understand the potential danger that psychedelic phenethylamines, in particular -NBOMe, may pose to public health, with particular reference to decreased performance in driving and hazardous works that require special sensorimotor skills.