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Effects of the new psychoactive substances diclofensine, diphenidine, and methoxphenidine on monoaminergic systems

Dino Luethi, Marius C. Hoener, Matthias E. Liechti

European Journal of Pharmacology December 8, 2017 DOI: 10.1016/j.ejphar.2017.12.012 via OpenAlex

Summary

AI-generated from the abstract

Diclofensine, diphenidine, and methoxphenidine are new psychoactive substances that appeared on the illicit drug market. Diclofensine potently inhibited all three monoamine transporters (norepinephrine, dopamine, and serotonin) with similar inhibition potential in the range of 2.5-4.8 μM and also bound to adrenergic, dopamine, serotonin, and trace amine-associated receptors. Diphenidine inhibited norepinephrine and dopamine transporters in the low micromolar range but was a very weak serotonin transporter inhibitor, and it bound to adrenergic α1A and α2A receptors and serotonin 5-HT1A and 5-HT2A receptors. Methoxphenidine showed considerable inhibition only for the norepinephrine transporter and bound to adrenergic α2A and serotonin 5-HT2A and 5-HT2C receptors. None of the drugs mediated substrate-type efflux of monoamines. These interactions likely mediate the psychoactive effects of diclofensine and may contribute to those of diphenidine and methoxphenidine.

Study at a glance

Characteristics In vitro pharmacological profiling Peer reviewed
Population Human embryonic kidney cells stably transfected with norepinephrine, dopamine, or serotonin transporters
Interventions Diclofensine Diphenidine Methoxphenidine
Topics Serotonin
Keywords Monoaminergic Monoamine neurotransmitter Pharmacology Norepinephrine transporter Serotonin transporter
Citations 41
Key finding Diclofensine potently inhibited all three monoamine transporters (2.5-4.8 μM) and bound to multiple receptors, while diphenidine and methoxphenidine showed more selective transporter inhibition and receptor binding profiles, and none of the drugs caused monoamine efflux.

Abstract

Diclofensine, diphenidine, and methoxphenidine are new psychoactive substances (NPSs) that recently appeared on the illicit drug market. Pharmacological profiling of such newly emerged drugs is crucial for a better understanding of their psychotropic effects and toxicity. We therefore investigated the potential of these NPSs to inhibit the norepinephrine, dopamine, and serotonin transporters in human embryonic kidney cells stably transfected with the respective transporters. In addition, we determined monoamine transporter and receptor affinities for the substances. Diclofensine potently bound to the monoamine transporters in the submicromolar range and had similar inhibition potential for all three transporters in the range of 2.5-4.8μM. Moreover, diclofensine bound to adrenergic, dopamine, serotonin, and trace amine-associated receptors. Diphenidine was an equipotent inhibitor of the norepinephrine and dopamine transporters in the low micromolar range and a very weak inhibitor of the serotonin transporter. Besides binding to transporters, diphenidine bound to adrenergic α1A and α2A receptors and serotonin 5-hydroxytryptamine 1A (5-HT1A) and 5-HT2A receptors in the range of 4-11μM. Methoxphenidine bound to all transporters, but considerable inhibition (IC50 < 10μM) was observed only for the norepinephrine transporter. Moreover, methoxphenidine bound to adrenergic α2A and serotonin 5-HT2A and 5-HT2C receptors in the range of 2.5-8.2μM. None of the test drugs mediated substrate-type efflux of monoamines. These data demonstrate that the monoamine transporter inhibition and receptor interactions most likely mediate the psychoactive effects of diclofensine and possibly play a contributory role for diphenidine and methoxphenidine.

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