Novel psychoactive substances are intoxicating compounds developed to mimic the effects of well-established drugs of abuse. They are not controlled by the United Nations drug convention and pose serious health concerns worldwide. Among them, the dissociative drug methoxetamine (MXE) is structurally similar to ketamine (KET) and phencyclidine (PCP) and was created to purposely mimic the psychotropic effects of its "parent" compounds. Recent animal studies show that MXE is able to stimulate the mesolimbic dopaminergic transmission and to induce KET-like discriminative and rewarding effects. In light of the renewed interest in KET and PCP analogs, we decided to deepen the investigation of MXE-induced effects by a battery of behavioral tests wi...
The complex pathophysiology of brain disorders and the difficulty of delivering therapeutic agents t...
In this paper we determined the pharmacological profiles of novel ketamine and phencyclidine analogu...
In this paper we determined the pharmacological profiles of novel ketamine and phencyclidine analogu...
Novel psychoactive substances are intoxicating compounds developed to mimic the effects of well-esta...
Methiopropamine is a structural analog of methamphetamine that is categorized as a novel psychoactiv...
Methoxetamine (MXE) is a dissociative substance of the arylcyclohexylamine class that has been prese...
Methoxetamine (MXE) is a chemical analogue of ketamine. Originally proposed as a ketamine-like fast-...
The use of new psychoactive substances (NPS) is steadily increasing. One commonly used NPS is methox...
Methiopropamine (MPA) is a thiophene ring-based structural analog of methamphetamine that is categor...
An increasing number of novel psychoactive substances are currently available and sold as 'legal hig...
Rationale: Recently, an increasing number of emergency cases due to a novel ketamine-like drug, meth...
An increasing number of novel psychoactive substances are currently available and sold as 'legal hig...
Background and Purpose: Methoxetamine (MXE) is a novel psychoactive substance that is emerging on th...
This communication presents the effects induced by 2-methiopropamine, a structural analogue of metha...
Methoxetamine (MXE) is a novel psychoactive substance that can induce several short-term effects on ...
The complex pathophysiology of brain disorders and the difficulty of delivering therapeutic agents t...
In this paper we determined the pharmacological profiles of novel ketamine and phencyclidine analogu...
In this paper we determined the pharmacological profiles of novel ketamine and phencyclidine analogu...
Novel psychoactive substances are intoxicating compounds developed to mimic the effects of well-esta...
Methiopropamine is a structural analog of methamphetamine that is categorized as a novel psychoactiv...
Methoxetamine (MXE) is a dissociative substance of the arylcyclohexylamine class that has been prese...
Methoxetamine (MXE) is a chemical analogue of ketamine. Originally proposed as a ketamine-like fast-...
The use of new psychoactive substances (NPS) is steadily increasing. One commonly used NPS is methox...
Methiopropamine (MPA) is a thiophene ring-based structural analog of methamphetamine that is categor...
An increasing number of novel psychoactive substances are currently available and sold as 'legal hig...
Rationale: Recently, an increasing number of emergency cases due to a novel ketamine-like drug, meth...
An increasing number of novel psychoactive substances are currently available and sold as 'legal hig...
Background and Purpose: Methoxetamine (MXE) is a novel psychoactive substance that is emerging on th...
This communication presents the effects induced by 2-methiopropamine, a structural analogue of metha...
Methoxetamine (MXE) is a novel psychoactive substance that can induce several short-term effects on ...
The complex pathophysiology of brain disorders and the difficulty of delivering therapeutic agents t...
In this paper we determined the pharmacological profiles of novel ketamine and phencyclidine analogu...
In this paper we determined the pharmacological profiles of novel ketamine and phencyclidine analogu...