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Published on: June 12, 2018
The novel ketamine analog methoxetamine produces dissociative-like behavioral effects in rodents
Adam L Halberstadt1,2, Natalia Slepak3, James Hyun4
1Department of Psychiatry, University of California San Diego, 9500 Gilman Drive, 92093-0804, La Jolla, CA, USA. ahalbers@ucsd.edu.
Rationale:
Methoxetamine (MXE) is a ketamine analog sold online that has been subject to widespread abuse for its dissociative and hallucinogenic effects. Previous studies have shown that MXE has high affinity for the phencyclidine (PCP) binding site located within the channel pore of the NMDA receptor (NMDAR), but little is known about its behavioral effects. Dissociative anesthetics such as ketamine and PCP produce a characteristic behavioral profile in rats that includes locomotor hyperactivity and disruption of prepulse inhibition (PPI) of acoustic startle.
Methods:
The goal of the present investigation was to determine whether MXE produces PCP-like effects in Sprague-Dawley rats using the PPI paradigm and the behavioral pattern monitor (BPM), which enables analyses of patterns of locomotor activity and investigatory behavior. PPI studies were conducted with several other uncompetitive NMDAR antagonists that produce dissociative effects in humans, including PCP, the S-(+) and R-(-) isomers of ketamine, and N-allylnormetazocine (NANM; SKF-10,047).
Results:
MXE disrupted PPI when administered at 3 and 10 mg/kg SC. The rank order of potency of MXE and the other test compounds in the PPI paradigm (PCP > MXE > S-(+)-ketamine > NANM > R-(-)-ketamine) parallels their affinities for the PCP binding site reported in the literature. When tested in the BPM, 10 mg/kg MXE induced locomotor hyperactivity, reduced the number of rearings, increased the roughness of locomotor paths, and produced perseverative patterns of locomotion. Administration of PCP (2.25 and 6.75 mg/kg, SC) produced a similar profile of effects in the BPM.
Conclusions:
These results indicate that MXE produces a behavioral profile similar to that of other psychotomimetic uncompetitive NMDAR antagonists. Our findings support the classification of MXE as a dissociative drug and suggest that it likely has effects and abuse potential similar to that of PCP and ketamine.
Insights
Methoxetamine (MXE) causes behavioral effects similar to phencyclidine (PCP) and ketamine in rats. This study found MXE disrupts prepulse inhibition and causes locomotor hyperactivity, supporting its classification as a dissociative drug.
Area of Science:
- Neuroscience
- Pharmacology
- Behavioral Science
Background:
- Methoxetamine (MXE), a ketamine analog, is abused for its dissociative and hallucinogenic effects.
- MXE has high affinity for the phencyclidine (PCP) binding site on the N-methyl-D-aspartate receptor (NMDAR).
- Dissociative anesthetics like ketamine and PCP induce hyperactivity and disrupt prepulse inhibition (PPI) of acoustic startle in rats.
Purpose of the Study:
- To investigate if MXE produces PCP-like behavioral effects in Sprague-Dawley rats.
- To analyze MXE's effects on locomotor activity and investigatory behavior using the behavioral pattern monitor (BPM).
- To compare MXE's potency in PPI disruption with other NMDAR antagonists.
Main Methods:
- Administered MXE, PCP, ketamine isomers, and N-allylnormetazocine (NANM) to rats.
- Utilized the prepulse inhibition (PPI) paradigm to assess acoustic startle reflex.
- Employed the behavioral pattern monitor (BPM) to analyze locomotor activity patterns.
Main Results:
- MXE disrupted PPI at 3 and 10 mg/kg, with potency ranking PCP > MXE > S-(+)-ketamine > NANM > R-(-)-ketamine.
- MXE (10 mg/kg) induced locomotor hyperactivity, reduced rearings, and increased path roughness.
- PCP produced a similar behavioral profile in the BPM.
- Rank order of potency in PPI assay correlated with NMDAR PCP binding site affinities.
Conclusions:
- MXE exhibits a behavioral profile consistent with other psychotomimetic NMDAR antagonists.
- Findings support classifying MXE as a dissociative drug.
- MXE likely possesses similar effects and abuse potential as PCP and ketamine.

