Cargando…

In vitro and in vivo pharmacokinetics and metabolism of synthetic cannabinoids CUMYL-PICA and 5F-CUMYL-PICA

CUMYL-PICA [1-pentyl-N-(2-phenylpropan-2-yl)-1H-indole-3-carboxamide] and 5F-CUMYL-PICA [1-(5-fluoropentyl)-N-(2-phenylpropan-2-yl)-1H-indole-3-carboxamide] are recently identified recreationally used/abused synthetic cannabinoids, but have uncharacterized pharmacokinetic profiles and metabolic proc...

Descripción completa

Detalles Bibliográficos
Autores principales: Kevin, Richard C., Lefever, Timothy W., Snyder, Rodney W., Patel, Purvi R., Fennell, Timothy R., Wiley, Jenny L., McGregor, Iain S., Thomas, Brian F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Japan 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5519669/
https://www.ncbi.nlm.nih.gov/pubmed/28824730
http://dx.doi.org/10.1007/s11419-017-0361-1
_version_ 1783251667288850432
author Kevin, Richard C.
Lefever, Timothy W.
Snyder, Rodney W.
Patel, Purvi R.
Fennell, Timothy R.
Wiley, Jenny L.
McGregor, Iain S.
Thomas, Brian F.
author_facet Kevin, Richard C.
Lefever, Timothy W.
Snyder, Rodney W.
Patel, Purvi R.
Fennell, Timothy R.
Wiley, Jenny L.
McGregor, Iain S.
Thomas, Brian F.
author_sort Kevin, Richard C.
collection PubMed
description CUMYL-PICA [1-pentyl-N-(2-phenylpropan-2-yl)-1H-indole-3-carboxamide] and 5F-CUMYL-PICA [1-(5-fluoropentyl)-N-(2-phenylpropan-2-yl)-1H-indole-3-carboxamide] are recently identified recreationally used/abused synthetic cannabinoids, but have uncharacterized pharmacokinetic profiles and metabolic processes. This study characterized clearance and metabolism of these compounds by human and rat liver microsomes and hepatocytes, and then compared these parameters with in vivo rat plasma and urine sampling. It also evaluated hypothermia, a characteristic cannabimimetic effect. Incubation of CUMYL-PICA and 5F-CUMYL-PICA with rat and human liver microsomes suggested rapid metabolic clearance, but in vivo metabolism was prolonged, such that parent compounds remained detectable in rat plasma 24 h post-dosing. At 3 mg/kg (intraperitoneally), both compounds produced moderate hypothermic effects. Twenty-eight metabolites were tentatively identified for CUMYL-PICA and, coincidentally, 28 metabolites for 5F-CUMYL-PICA, primarily consisting of phase I oxidative transformations and phase II glucuronidation. The primary metabolic pathways for both compounds resulted in the formation of identical metabolites following terminal hydroxylation or dealkylation of the N-pentyl chain for CUMYL-PICA or of the 5-fluoropentyl chain for 5F-CUMYL-PICA. These data provide evidence that in vivo elimination of CUMYL-PICA, 5F-CUMYL-PICA and other synthetic cannabinoids is delayed compared to in vitro modeling, possibly due to sequestration into adipose tissue. Additionally, the present data underscore the need for careful selection of metabolites as analytical targets to distinguish between closely related synthetic cannabinoids in forensic settings.
format Online
Article
Text
id pubmed-5519669
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Springer Japan
record_format MEDLINE/PubMed
spelling pubmed-55196692017-08-17 In vitro and in vivo pharmacokinetics and metabolism of synthetic cannabinoids CUMYL-PICA and 5F-CUMYL-PICA Kevin, Richard C. Lefever, Timothy W. Snyder, Rodney W. Patel, Purvi R. Fennell, Timothy R. Wiley, Jenny L. McGregor, Iain S. Thomas, Brian F. Forensic Toxicol Original Article CUMYL-PICA [1-pentyl-N-(2-phenylpropan-2-yl)-1H-indole-3-carboxamide] and 5F-CUMYL-PICA [1-(5-fluoropentyl)-N-(2-phenylpropan-2-yl)-1H-indole-3-carboxamide] are recently identified recreationally used/abused synthetic cannabinoids, but have uncharacterized pharmacokinetic profiles and metabolic processes. This study characterized clearance and metabolism of these compounds by human and rat liver microsomes and hepatocytes, and then compared these parameters with in vivo rat plasma and urine sampling. It also evaluated hypothermia, a characteristic cannabimimetic effect. Incubation of CUMYL-PICA and 5F-CUMYL-PICA with rat and human liver microsomes suggested rapid metabolic clearance, but in vivo metabolism was prolonged, such that parent compounds remained detectable in rat plasma 24 h post-dosing. At 3 mg/kg (intraperitoneally), both compounds produced moderate hypothermic effects. Twenty-eight metabolites were tentatively identified for CUMYL-PICA and, coincidentally, 28 metabolites for 5F-CUMYL-PICA, primarily consisting of phase I oxidative transformations and phase II glucuronidation. The primary metabolic pathways for both compounds resulted in the formation of identical metabolites following terminal hydroxylation or dealkylation of the N-pentyl chain for CUMYL-PICA or of the 5-fluoropentyl chain for 5F-CUMYL-PICA. These data provide evidence that in vivo elimination of CUMYL-PICA, 5F-CUMYL-PICA and other synthetic cannabinoids is delayed compared to in vitro modeling, possibly due to sequestration into adipose tissue. Additionally, the present data underscore the need for careful selection of metabolites as analytical targets to distinguish between closely related synthetic cannabinoids in forensic settings. Springer Japan 2017-03-10 2017 /pmc/articles/PMC5519669/ /pubmed/28824730 http://dx.doi.org/10.1007/s11419-017-0361-1 Text en © Japanese Association of Forensic Toxicology and Springer Japan 2017
spellingShingle Original Article
Kevin, Richard C.
Lefever, Timothy W.
Snyder, Rodney W.
Patel, Purvi R.
Fennell, Timothy R.
Wiley, Jenny L.
McGregor, Iain S.
Thomas, Brian F.
In vitro and in vivo pharmacokinetics and metabolism of synthetic cannabinoids CUMYL-PICA and 5F-CUMYL-PICA
title In vitro and in vivo pharmacokinetics and metabolism of synthetic cannabinoids CUMYL-PICA and 5F-CUMYL-PICA
title_full In vitro and in vivo pharmacokinetics and metabolism of synthetic cannabinoids CUMYL-PICA and 5F-CUMYL-PICA
title_fullStr In vitro and in vivo pharmacokinetics and metabolism of synthetic cannabinoids CUMYL-PICA and 5F-CUMYL-PICA
title_full_unstemmed In vitro and in vivo pharmacokinetics and metabolism of synthetic cannabinoids CUMYL-PICA and 5F-CUMYL-PICA
title_short In vitro and in vivo pharmacokinetics and metabolism of synthetic cannabinoids CUMYL-PICA and 5F-CUMYL-PICA
title_sort in vitro and in vivo pharmacokinetics and metabolism of synthetic cannabinoids cumyl-pica and 5f-cumyl-pica
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5519669/
https://www.ncbi.nlm.nih.gov/pubmed/28824730
http://dx.doi.org/10.1007/s11419-017-0361-1
work_keys_str_mv AT kevinrichardc invitroandinvivopharmacokineticsandmetabolismofsyntheticcannabinoidscumylpicaand5fcumylpica
AT lefevertimothyw invitroandinvivopharmacokineticsandmetabolismofsyntheticcannabinoidscumylpicaand5fcumylpica
AT snyderrodneyw invitroandinvivopharmacokineticsandmetabolismofsyntheticcannabinoidscumylpicaand5fcumylpica
AT patelpurvir invitroandinvivopharmacokineticsandmetabolismofsyntheticcannabinoidscumylpicaand5fcumylpica
AT fennelltimothyr invitroandinvivopharmacokineticsandmetabolismofsyntheticcannabinoidscumylpicaand5fcumylpica
AT wileyjennyl invitroandinvivopharmacokineticsandmetabolismofsyntheticcannabinoidscumylpicaand5fcumylpica
AT mcgregoriains invitroandinvivopharmacokineticsandmetabolismofsyntheticcannabinoidscumylpicaand5fcumylpica
AT thomasbrianf invitroandinvivopharmacokineticsandmetabolismofsyntheticcannabinoidscumylpicaand5fcumylpica