Cargando…

The psychoactive drug 25B-NBOMe recapitulates rhabdomyolysis in zebrafish larvae

N-Benzyl-substituted 2C class phenethylamines (NBOMes) are psychoactive designer drugs, with strong hallucinogenic and stimulant effects, even at low doses. The designer drug, 2-(4-bromo-2, 5-dimethoxyphenyl)-N-(2-methoxybenzyl) ethanamine (25B-NBOMe) is considered to be one of the most potent agoni...

Descripción completa

Detalles Bibliográficos
Autores principales: Kawahara, Genri, Maeda, Hideyuki, Kikura-Hanajiri, Ruri, Yoshida, Ken-ichi, Hayashi, Yukiko K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Japan 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5552826/
https://www.ncbi.nlm.nih.gov/pubmed/28890736
http://dx.doi.org/10.1007/s11419-017-0366-9
_version_ 1783256527742697472
author Kawahara, Genri
Maeda, Hideyuki
Kikura-Hanajiri, Ruri
Yoshida, Ken-ichi
Hayashi, Yukiko K.
author_facet Kawahara, Genri
Maeda, Hideyuki
Kikura-Hanajiri, Ruri
Yoshida, Ken-ichi
Hayashi, Yukiko K.
author_sort Kawahara, Genri
collection PubMed
description N-Benzyl-substituted 2C class phenethylamines (NBOMes) are psychoactive designer drugs, with strong hallucinogenic and stimulant effects, even at low doses. The designer drug, 2-(4-bromo-2, 5-dimethoxyphenyl)-N-(2-methoxybenzyl) ethanamine (25B-NBOMe) is considered to be one of the most potent agonists of the serotonin-2A (5-HT(2A)) receptor. Recently, we reported the first lethal case of 25B-NBOMe intoxication with severe rhabdomyolysis, concluded by clinical, pathological and toxicological analyses. There are currently no good animal models that closely recapitulate serotonin receptor-dependent rhabdomyolysis. In the present study, we created animal models of rhabdomyolysis using zebrafish larvae to study the pathomechanism of rhabdomyolysis, and demonstrated that 25B-NBOMe can simulate lethal rhabdomyolysis in this animal. Treatment of the larvae with 25B-NBOMe decreased their survival rate, locomotion, altered birefringence of the skeletal muscle and immunostainings for dystroglycan (a myoseptal protein) and myosin heavy chain (a myofibril protein), which were consistent with rhabdomyolysis. This 25B-NBOMe-induced rhabdomyolysis was inhibited by the 5-HT(2A) receptor antagonists ritanserin and aripirazole, but not by the 5-HT(1A) + 5-HT(1B) receptor antagonist propranolol and the 5-HT(3) receptor antagonist granisetron, indicating 5-HT(2A)-dependent rhabdomyolysis. The 25B-NBOMe-treated zebrafish is, therefore, a highly useful model of rhabdomyolysis for studying the pathomechanism of rhabdomyolysis as well as for therapeutic drug screening.
format Online
Article
Text
id pubmed-5552826
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Springer Japan
record_format MEDLINE/PubMed
spelling pubmed-55528262017-09-07 The psychoactive drug 25B-NBOMe recapitulates rhabdomyolysis in zebrafish larvae Kawahara, Genri Maeda, Hideyuki Kikura-Hanajiri, Ruri Yoshida, Ken-ichi Hayashi, Yukiko K. Forensic Toxicol Original Article N-Benzyl-substituted 2C class phenethylamines (NBOMes) are psychoactive designer drugs, with strong hallucinogenic and stimulant effects, even at low doses. The designer drug, 2-(4-bromo-2, 5-dimethoxyphenyl)-N-(2-methoxybenzyl) ethanamine (25B-NBOMe) is considered to be one of the most potent agonists of the serotonin-2A (5-HT(2A)) receptor. Recently, we reported the first lethal case of 25B-NBOMe intoxication with severe rhabdomyolysis, concluded by clinical, pathological and toxicological analyses. There are currently no good animal models that closely recapitulate serotonin receptor-dependent rhabdomyolysis. In the present study, we created animal models of rhabdomyolysis using zebrafish larvae to study the pathomechanism of rhabdomyolysis, and demonstrated that 25B-NBOMe can simulate lethal rhabdomyolysis in this animal. Treatment of the larvae with 25B-NBOMe decreased their survival rate, locomotion, altered birefringence of the skeletal muscle and immunostainings for dystroglycan (a myoseptal protein) and myosin heavy chain (a myofibril protein), which were consistent with rhabdomyolysis. This 25B-NBOMe-induced rhabdomyolysis was inhibited by the 5-HT(2A) receptor antagonists ritanserin and aripirazole, but not by the 5-HT(1A) + 5-HT(1B) receptor antagonist propranolol and the 5-HT(3) receptor antagonist granisetron, indicating 5-HT(2A)-dependent rhabdomyolysis. The 25B-NBOMe-treated zebrafish is, therefore, a highly useful model of rhabdomyolysis for studying the pathomechanism of rhabdomyolysis as well as for therapeutic drug screening. Springer Japan 2017-04-18 2017 /pmc/articles/PMC5552826/ /pubmed/28890736 http://dx.doi.org/10.1007/s11419-017-0366-9 Text en © Japanese Association of Forensic Toxicology and Springer Japan 2017
spellingShingle Original Article
Kawahara, Genri
Maeda, Hideyuki
Kikura-Hanajiri, Ruri
Yoshida, Ken-ichi
Hayashi, Yukiko K.
The psychoactive drug 25B-NBOMe recapitulates rhabdomyolysis in zebrafish larvae
title The psychoactive drug 25B-NBOMe recapitulates rhabdomyolysis in zebrafish larvae
title_full The psychoactive drug 25B-NBOMe recapitulates rhabdomyolysis in zebrafish larvae
title_fullStr The psychoactive drug 25B-NBOMe recapitulates rhabdomyolysis in zebrafish larvae
title_full_unstemmed The psychoactive drug 25B-NBOMe recapitulates rhabdomyolysis in zebrafish larvae
title_short The psychoactive drug 25B-NBOMe recapitulates rhabdomyolysis in zebrafish larvae
title_sort psychoactive drug 25b-nbome recapitulates rhabdomyolysis in zebrafish larvae
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5552826/
https://www.ncbi.nlm.nih.gov/pubmed/28890736
http://dx.doi.org/10.1007/s11419-017-0366-9
work_keys_str_mv AT kawaharagenri thepsychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae
AT maedahideyuki thepsychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae
AT kikurahanajiriruri thepsychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae
AT yoshidakenichi thepsychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae
AT hayashiyukikok thepsychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae
AT kawaharagenri psychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae
AT maedahideyuki psychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae
AT kikurahanajiriruri psychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae
AT yoshidakenichi psychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae
AT hayashiyukikok psychoactivedrug25bnbomerecapitulatesrhabdomyolysisinzebrafishlarvae