Effect fingerprinting of new psychoactive substances (NPS): What can we learn from in vitro data?
Laura Hondebrink, Anne Zwartsen, Remco H S Westerink
Pharmacology & therapeutics February 1, 2018 DOI: 10.1016/j.pharmthera.2017.10.022 via PubMed
Summary
AI-generated from the abstractMore than 600 new psychoactive substances (NPS) have been reported, yet information on their neuropharmacological and toxicological effects remains limited, hampering risk assessment. A review of in vitro neuronal modes of action created effect fingerprints for frequently reported NPS classes: cathinones, cannabinoids, hallucinogenic phenethylamines, arylcyclohexylamines, and piperazine derivatives. The fingerprints highlight main modes of action—such as inhibition or reversal of monoamine reuptake transporters for cathinones and activation of 5-HT2 receptors for hallucinogenic phenethylamines—and identify additional targets, including dopamine, adrenergic, GABAA, and acetylcholine receptors, by relating effect concentrations to estimated...
Study at a glance
| Characteristics | Review Peer reviewed |
|---|---|
| Keywords | Designer drugs Mechanism of action Receptors Transporters Nps |
| Citations | 78 |
| Key finding | Effect fingerprints of NPS reveal main modes of action (e.g., monoamine transporter inhibition, 5-HT2 receptor activation, cannabinoid receptor activation, NMDA receptor inhibition) and additional targets (dopamine, adrenergic, GABAA, and acetylcholine receptors) that may contribute to clinical symptoms, but the fingerprints are incomplete and require further data. |
Abstract
The use of new psychoactive substances (NPS) is increasing and currently >600 NPS have been reported. However, limited information on neuropharmacological and toxicological effects of NPS is available, hampering risk characterization. We reviewed the literature on the in vitro neuronal modes of action to obtain effect fingerprints of different classes of illicit drugs and NPS. The most frequently reported NPS were selected for review: cathinones (MDPV, α-PVP, mephedrone, 4-MEC, pentedrone, methylone), cannabinoids (JWH-018), (hallucinogenic) phenethylamines (4-fluoroamphetamine, benzofurans (5-APB, 6-APB), 2C-B, NBOMes (25B-NBOMe, 25C-NBOMe, 25I-NBOMe)), arylcyclohexylamines (methoxetamine) and piperazine derivatives (mCPP, TFMPP, BZP). Our effect fingerprints highlight the main modes of action for the different NPS studied, including inhibition and/or reversal of monoamine reuptake transporters (cathinones and non-hallucinogenic phenethylamines), activation of 5-HT2receptors (hallucinogenic phenethylamines and piperazines), activation of cannabinoid receptors (cannabinoids) and inhibition of NDMA receptors (arylcyclohexylamines). Importantly, we identified additional targets by relating reported effect concentrations to the estimated human brain concentrations during recreational use. These additional targets include dopamine receptors, α- and β-adrenergic receptors, GABAAreceptors and acetylcholine receptors, which may all contribute to the observed clinical symptoms following exposure. Additional data is needed as the number of NPS continues to increase. Also, the effect fingerprints we have obtained are still incomplete and suffer from a large variation in the reported effects and effect sizes. Dedicated in vitro screening batteries will aid in complementing specific effect fingerprints of NPS. These fingerprints can be implemented in the risk assessments of NPS that are necessary for eventual control measures to reduce Public Health risks.