METHOXPHENIDINE, A DESIGNER DRUG OR A POSSIBLE ROUTE FOR RESEARCH TO DEPRESSION TREATMENT?
*Bronislav Jurásek, Magdaléna Vágnerová, Hana Walaská, Kristýna Mazochová, Martin Kuchař
International Journal of Neuropsychopharmacology February 12, 2025 DOI: 10.1093/ijnp/pyae059.117 (opens in new tab)
Summary
AI-generated from the abstractMethoxphenidine (MXP), a dissociative new psychoactive substance related to ketamine, was studied in rats to determine its behavioral and pharmacokinetic effects. MXP at 60 mg/kg was administered subcutaneously, and urine was analyzed to identify metabolites. In behavioral tests, doses of 10, 20, and 40 mg/kg were given. Lower doses (10 and 20 mg/kg) produced significant locomotor stimulation, while the highest dose (40 mg/kg) increased time spent in the center of an open field, suggesting sedative effects. Maximal effects occurred about 30 minutes after administration, with peak blood and brain concentrations around 1 hour. The pharmacokinetic profile indicates slower metabolism and excretion of MXP compared to ketamine. Further research is needed to explore potential antidepressant properties.
Study at a glance
| Characteristics | Preclinical animal study Peer reviewed |
|---|---|
| Population | Wistar rats |
| Intervention | Methoxphenidine (MXP) |
| Dose | 60 mg/kg s.c. for metabolite study; 10, 20, and 40 mg/kg s.c. for behavioral experiments |
| Duration | Up to 24 hours post-administration for decapitation time points; behavioral effects observed around 30 minutes to 1 hour |
| Key finding | Lower doses of MXP (10 and 20 mg/kg) induced locomotor stimulation, while a higher dose (40 mg/kg) produced sedative-like effects, with maximal behavioral effects around 30 minutes and peak concentrations around 1 hour. |
Abstract
Abstract Background Methoxphenidine (MXP) is a new psychoactive substance that belongs to the group of arylethylamines. Even though MXP has a different pharmacophore than ketamine, both of these substances belong to the dissociatives. To date, MXP has been associated with several intoxications and despite it being banned in most countries it is still available over the internet.1 Aims & Objectives Even though MXP started to be abused approximately a decade ago, there is still a lack of data about it. Considering the knowledge gap on MXP toxicological data, its mostly unknown metabolism and overall the significant potential of dissociative anaesthetics for depression treatment, we aimed to thoroughly evaluate this substance. Method The MXP, nor-MXP and MXP-d3 were in-house synthesized and characterized using an 400 MHz NMR spectrometer (JEOL, Japan) and HRMS (LTQ Orbitrap Velos, ThermoFisher, USA), which was also used for the untargeted screening. The targeted screening was performed using the LC system Dionex Ultimate 3000 (Thermo-Fisher, USA) and the chromatographic separation was performed using Poroshell 120, Phenyl Hexyl (2.1 × 100 mm, 2.7 μ m) column (Agilent, USA). The behavioural experiments were performed on Wistar rats acquired from VELAZ (Prague, CZ). The open field test (OFT) was done in a sound-proof and evenly lit chamber with low levels of light intensity and pre-pulse inhibition (PPI) took place in startle chambers (SR-LAB, San Diego Instruments, USA). The rats were decapitated after 0.5, 1, 2, 4, 8 and 24 hours. Results The MXP (60 mg/kg s.c.) was administered to the Wistar rats, the urine was collected and analysed. Using the untargeted screening we proposed structures of several metabolites and we synthesized the nor-MXP metabolite and deuterium labelled analogue for the upcoming pharmacokinetics. The MXP was administered to the Wistar rats (10, 20 and 40 mg/kg s.c.) for behavioural experiments in which we studied locomotor effects in OFT and sensorimotor gating in PPI. The obtained serum and brain were analysed using targeted LC/MS screening and the concentrations were used for calculation of the pharmacokinetics. Discussion & Conclusion The maximal effect of the MXP was observed around 30 minutes after administration and the maximal effect prevailed another 0.5 hour. These data were consistent with the pharmacokinetic data, in which the concentration of MXP and its nor-MXP metabolite rapidly increased with a maximum of around 1 hour. The pharmacokinetic profile MXP and the nor-MXP suggest a slower metabolism and excretion of the MXP compared to the ketamine. Lower doses (10 and 20 mg/kg) induced significant locomotor stimulation suggesting MXP has a stimulating effect, which is typical for other dissociative anaesthetics, on the other hand, the higher dose increased the time spent in the centre of the arena, which suggests rather sedating effects. Even though MXP is a substance with a high potential for abuse, further research is needed to provide deep insight into its antidepressant effects. Acknowledgement This study was funded by the Ministry of Interior of the Czech Republic (New psychoactive substances: forensic-toxicology research center, VK01010212). References Jurá sek, B. et al. (2023) 'A structural spectroscopic study of dissociative anaesthetic methoxphenidine’, New Journal of Chemistry, 47(9), pp. 4543–4551. doi: 10.1039/D2NJ06126K.