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Zuner A. Bortolotto

3 papers in the library · 102 citations · publishing 2016-2019

Papers

Pharmacological Investigations of the Dissociative ‘Legal Highs’ Diphenidine, Methoxphenidine and Analogues

PLoS One June 17, 2016 Jason Wallach, Heather Kang, Tristan Colestock et al. 73 citations

1,2-Diarylethylamines such as diphenidine (DPH) and 2-methoxy-diphenidine (2-MXP) are sold as 'legal highs' and have been linked to fatal and non-fatal overdoses. Binding studies at 46 central nervous system receptors show these compounds are relatively selective N-methyl-D-aspartate receptor (NMDAR) antagonists with weak off-target inhibition of dopamine and norepinephrine reuptake. In rats, DPH and 2-MXP significantly reduced prepulse inhibition of startle (PPI), an effect seen with dissociative drugs like phencyclidine (PCP) and ketamine. DPH acted with a median effective dose (ED50) of 9.5 mg/kg, less potent than PCP and ketamine.

Ephenidine: A new psychoactive agent with ketamine-like NMDA receptor antagonist properties

Neuropharmacology August 10, 2016 Heather Kang, Pojeong Park, Zuner A. Bortolotto et al. 29 citations

Ephenidine, a new psychoactive substance, acts as a selective NMDA receptor antagonist by binding to the PCP site (Ki: 66 nM). It also shows modest activity at dopamine and noradrenaline transporters and at sigma 1 and sigma 2 binding sites. In rat hippocampal slices, ephenidine (1 and 10 μM) inhibited NMDA receptor-mediated field excitatory postsynaptic potentials by 25% and near maximally after 4 hours, without affecting AMPA receptor-mediated responses. It blocked NMDA receptor-mediated EPSCs in a voltage-dependent manner and prevented the induction of long-term potentiation. These properties resemble ketamine and help explain its dissociative, cognitive, and hallucinogenic effects in humans.

Pharmacological characterizations of the 'legal high' fluorolintane and isomers.

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.