Neuropharmacology
June 23, 2018
Julian Maier, Felix P. Mayer, Dino Luethi et al.
24 citations
4,4′-DMAR, a new psychoactive substance linked to 31 deaths in Europe between June 2013 and February 2014, acts as a potent non-selective monoamine releasing agent. It inhibits dopamine, norepinephrine, and serotonin transporters at low micromolar concentrations (IC50 values below 2 μM) and induces reverse transport via these transporters. It also inhibits the vesicular monoamine transporter 2 in both rat and human cells with potency similar to MDMA. Unlike aminorex and 4-methylaminorex, 4,4′-DMAR strongly affects the serotonin transporter, suggesting fatalities may involve monoaminergic toxicity including serotonin syndrome. Its activity at VMAT2 indicates potential long-term neurotoxicity with chronic abuse.
International journal of molecular sciences
November 30, 2021
Thomas J F Angenoorth, Stevan Stankovic, Marco Niello et al.
18 citations
Many psychoactive compounds primarily interact with high-affinity monoamine transporters, but their interactions with low-affinity, high-capacity transporters like human organic cation transporters (hOCTs) and the plasma membrane monoamine transporter (hPMAT) are understudied. Using radiotracer-based uptake inhibition assays in HEK293 cells, 17 psychoactive substances were tested. Most compounds inhibited hOCT1 and hOCT2 in the low micromolar range, while few affected hOCT3 or hPMAT. Methylphenidate and ketamine selectively inhibited hOCT1 or hOCT2, respectively, and MDMA potently inhibited hOCT1, hOCT2, and hPMAT. Enantiospecific differences were observed for R- and S-α-PVP and R- and S-citalopram. These findings highlight the importance of studying drug interactions with hOCTs and hPMAT for regulating monoamine concentrations and xenobiotic clearance.
ACS Chemical Neuroscience
September 30, 2018
Julian Maier, Felix P. Mayer, Simon D. Brandt et al.
15 citations
Aminorex and its analogues are psychostimulants that interact with monoamine transporters, sharing pharmacological similarities with amphetamines and cocaine. Some of these substances, originally failed pharmaceuticals, have reemerged as new psychoactive substances (NPS) for recreational use. Consumption of certain analogues, such as 4-methylaminorex and 4,4'-dimethylaminorex, has been linked to adverse events including death. This review covers the historical background, pharmacodynamic and pharmacokinetic properties, and misuse of these drugs as adulterants. It highlights the dangers of the NPS market, where users often lack knowledge of the pharmacology, potency, or identity of active ingredients.