Drug testing and analysis
February 1, 2018
Tristan Colestock, Jason Wallach, Matt Mansi et al.
14 citations
A new dissociative anesthetic, 3-MeO-PCMo, a morpholine analogue of 3-MeO-PCP, was synthesized and characterized along with five related compounds. All six arylcyclohexylmorpholines were analyzed using chromatographic, mass spectrometric, and spectroscopic techniques, allowing differentiation of positional isomers. In vitro binding studies in rat forebrain preparations showed moderate affinity for the N-methyl-D-aspartate receptor (NMDAR), with 3-Me-PCMo having the highest affinity, followed by 3-MeO-PCMo. 3-MeO-PCMo had affinity comparable to ketamine and approximately 12-fold lower than PCP. These findings support anecdotal reports of dissociative effects from 3-MeO-PCMo in humans.
Drug Testing and Analysis
April 30, 2019
Michael Dybek, Jason Wallach, Pierce V. Kavanagh et al.
9 citations
Six possible racemic isomers of the research chemical fluorolintane (2-F-DPPy) were synthesized and characterized. The isomers differ by the position of a fluorine substituent on the phenyl or benzyl ring of the 1,2-diarylethylamine structure. Using mass spectrometry, chromatography, nuclear magnetic resonance spectroscopy, and infrared spectroscopy, each isomer was distinguishable. A tandem mass spectrometry method analyzing the [M + H – HF]+ species produced distinct product ions for all six substances, aiding identification of positional isomers that pose challenges for stakeholders confronting new psychoactive substances.
European journal of pharmacology
August 15, 2019
Jason Wallach, Tristan Colestock, Julià Agramunt et al.
Fluorolintane, a 1,2-diarylethylamine sold as a 'research chemical' for dissociative effects, was studied pharmacologically for the first time alongside five related isomers. In vitro binding showed fluorolintane has high affinity for NMDA receptors (Ki = 87.92 nM) and even higher affinities for dopamine transporters (DAT) in most cases. Functional experiments in rat hippocampal slices demonstrated that fluorolintane inhibits NMDA receptor-induced field excitatory postsynaptic potentials and blocks long-term potentiation, consistent with NMDA receptor antagonism. In rats, fluorolintane disrupted prepulse inhibition (a measure of sensorimotor gating) with a median effective dose of 13.3 mg/kg, supporting anecdotal reports of dissociative effects in humans.