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25I-NBOME (2-(4-iodo-2,5-dimethoxyphenyl)-N-[(2-methoxyphenyl)methyl]ethanamine)-A HARMFUL HALLUCINOGEN REVIEW.

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NBOMes are N-benzylmethoxy derivatives of the 2C family compounds with N-2-methoxy-benzyl moiety substituted by the methoxy group at the 2- and 5- position and the halogen group at the 4-… Click to show full abstract

NBOMes are N-benzylmethoxy derivatives of the 2C family compounds with N-2-methoxy-benzyl moiety substituted by the methoxy group at the 2- and 5- position and the halogen group at the 4- position of the phenyl ring. These substances are a new class of potent serotonin 5-HT2A receptor agonist hallucinogens with potential harmful effects. The substitution with halogen of the already psychoactive phenethylamine produces a derivative (2C-I) with increased hallucinogenic effects. This class of hallucinogens have chemical structures very similar to natural hallucinogenic alkaloid mescaline and are sold mainly via internet as a 'legal' alternative to other hallucinogenic drug- lysergic acid diethylamide (LSD). 25I-NBOMe is the first synthesized and one of the most common compound from NBOMes. Knowledge of pharmacological properties of 25I-NBOMe is very limited so far. There are only a few in vivo and in vitro so far published studies. The behavioural experiments are mainly related with the hallucinogenic effect of 25I-NBOMe while the in vitro studies concerning mainly the affinity for 5-HT2A receptors. The 25I-NBOMe Critical Review 2016 reported 51 non-fatal intoxications and 21 deaths associated with 25I-NBOMe across Europe. Case reports describe various toxic effects of 25I-NBOMe usage including tachycardia, hypertension, hallucinations, rhabdomyolysis, acute kidney injury and death. The growing number of fatal and non-fatal intoxication cases indicates that 25I-NBOMe should be considered as a serious danger to public health. This review aims to present the current state of knowledge on pharmacological effects and chemical properties of 25I-NBOMe, and to describe reported clinical cases and analytical methods available for identification of this agent in biological material.

Keywords: 25i nbome; dimethoxyphenyl methoxyphenyl; methoxyphenyl methyl; review; nbome iodo; iodo dimethoxyphenyl

Journal Title: Journal of analytical toxicology
Year Published: 2020

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