Behavioral Assessment and HPLC/MS/MS Identification of the Synthetic Cannabinoid, CP47,497, in Mice

CP47,497 and other synthetic cannabinoid compounds were incipiently synthesized as research tools to investigate the mechanisms by which marijuana affects the brain and to aid in the development of therapeutic agents. Recently, these cannabinoid compounds have resurfaced in the designer drug market,...

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Main Author: Samano, Kimberly L
Format: Others
Published: VCU Scholars Compass 2014
Subjects:
497
Online Access:http://scholarscompass.vcu.edu/etd/3328
http://scholarscompass.vcu.edu/cgi/viewcontent.cgi?article=4327&context=etd
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spelling ndltd-vcu.edu-oai-scholarscompass.vcu.edu-etd-43272017-03-17T08:27:27Z Behavioral Assessment and HPLC/MS/MS Identification of the Synthetic Cannabinoid, CP47,497, in Mice Samano, Kimberly L CP47,497 and other synthetic cannabinoid compounds were incipiently synthesized as research tools to investigate the mechanisms by which marijuana affects the brain and to aid in the development of therapeutic agents. Recently, these cannabinoid compounds have resurfaced in the designer drug market, marketed as “herbal incense products” (HIPs). Their popular use has resulted in an alarming rate of reported adverse effects and toxicities. Current legislation classified CP47,497 and several other synthetic cannabinoids compounds as Schedule I agents, but abuse of these compounds persists with serious consequences to public health and safety. In vivo studies examining the behavioral consequences of abused synthetic cannabinoids are limited. As a result, the goals of this research were to elucidate the acute and chronic pharmacological effects of CP47,497 and to develop a bioanalytical method for CP47,497 drug detection in mice. Cannabimimetic effects were evaluated in well-established in vivo models, the tetrad paradigm and drug discrimination assay. The tetrad test is comprised of four outcome measures sensitive to the primary psychoactive cannabinoid present in marijuana, delta-9-tetrahydrocannabinol (THC): catalepsy (bar test), antinociception (tail withdrawal latency), hypothermia, and decreases in spontaneous locomotor activity. While many pharmacological agents can produce one or a subset of these tetrad effects, drugs that activate CB1 receptors produce characteristic effects in all four parameters. An HPLC/MS/MS method was developed and confirmed the presence of CP47,497 in brain. We investigated whether CB1 receptors mediate the pharmacological effects of CP47,497. Cumulative dose-response experiments determined CP47,497 is more potent than THC in vivo in using multiple behavioral assays. Complementary pharmacological (CB1 receptor antagonist, rimonabant) and genetic (CB1 (-/-) mice) approaches were used to investigate whether CB1 receptors mediate the effects of CP47,497. Rimonabant (3 mg/kg or 10 mg/kg, depending on independent measure) blocked all cannabinoid-like pharmacological effects of CP47,497. Supporting these findings, CB1(-/-) mice were resistant to cannabimimetic effects of CP47,497. CP47,497 fully substituted for THC in the drug discrimination assay, with a potency of more than 5 times that of THC. Collectively, these results indicate that CP47,497 is markedly more potent (i.e. 5-8 fold) than THC, and its repeated administration produces tolerance to the cataleptic, antinociceptive, hypothermic and hypolocomotor effects in mice, with significant presentation of somatic withdrawal signs (paw flutter and head shakes) upon drug cessation. These findings are consistent with the high incidence of adverse events in humans abusing synthetic cannabinoids. 2014-03-26T07:00:00Z text application/pdf http://scholarscompass.vcu.edu/etd/3328 http://scholarscompass.vcu.edu/cgi/viewcontent.cgi?article=4327&context=etd © The Author Theses and Dissertations VCU Scholars Compass CP47 497 synthetic cannabinoid HPLC/MS/MS method validation spice herbal incense Medical Pharmacology Medical Sciences Medicine and Health Sciences
collection NDLTD
format Others
sources NDLTD
topic CP47
497
synthetic cannabinoid
HPLC/MS/MS
method validation
spice
herbal incense
Medical Pharmacology
Medical Sciences
Medicine and Health Sciences
spellingShingle CP47
497
synthetic cannabinoid
HPLC/MS/MS
method validation
spice
herbal incense
Medical Pharmacology
Medical Sciences
Medicine and Health Sciences
Samano, Kimberly L
Behavioral Assessment and HPLC/MS/MS Identification of the Synthetic Cannabinoid, CP47,497, in Mice
description CP47,497 and other synthetic cannabinoid compounds were incipiently synthesized as research tools to investigate the mechanisms by which marijuana affects the brain and to aid in the development of therapeutic agents. Recently, these cannabinoid compounds have resurfaced in the designer drug market, marketed as “herbal incense products” (HIPs). Their popular use has resulted in an alarming rate of reported adverse effects and toxicities. Current legislation classified CP47,497 and several other synthetic cannabinoids compounds as Schedule I agents, but abuse of these compounds persists with serious consequences to public health and safety. In vivo studies examining the behavioral consequences of abused synthetic cannabinoids are limited. As a result, the goals of this research were to elucidate the acute and chronic pharmacological effects of CP47,497 and to develop a bioanalytical method for CP47,497 drug detection in mice. Cannabimimetic effects were evaluated in well-established in vivo models, the tetrad paradigm and drug discrimination assay. The tetrad test is comprised of four outcome measures sensitive to the primary psychoactive cannabinoid present in marijuana, delta-9-tetrahydrocannabinol (THC): catalepsy (bar test), antinociception (tail withdrawal latency), hypothermia, and decreases in spontaneous locomotor activity. While many pharmacological agents can produce one or a subset of these tetrad effects, drugs that activate CB1 receptors produce characteristic effects in all four parameters. An HPLC/MS/MS method was developed and confirmed the presence of CP47,497 in brain. We investigated whether CB1 receptors mediate the pharmacological effects of CP47,497. Cumulative dose-response experiments determined CP47,497 is more potent than THC in vivo in using multiple behavioral assays. Complementary pharmacological (CB1 receptor antagonist, rimonabant) and genetic (CB1 (-/-) mice) approaches were used to investigate whether CB1 receptors mediate the effects of CP47,497. Rimonabant (3 mg/kg or 10 mg/kg, depending on independent measure) blocked all cannabinoid-like pharmacological effects of CP47,497. Supporting these findings, CB1(-/-) mice were resistant to cannabimimetic effects of CP47,497. CP47,497 fully substituted for THC in the drug discrimination assay, with a potency of more than 5 times that of THC. Collectively, these results indicate that CP47,497 is markedly more potent (i.e. 5-8 fold) than THC, and its repeated administration produces tolerance to the cataleptic, antinociceptive, hypothermic and hypolocomotor effects in mice, with significant presentation of somatic withdrawal signs (paw flutter and head shakes) upon drug cessation. These findings are consistent with the high incidence of adverse events in humans abusing synthetic cannabinoids.
author Samano, Kimberly L
author_facet Samano, Kimberly L
author_sort Samano, Kimberly L
title Behavioral Assessment and HPLC/MS/MS Identification of the Synthetic Cannabinoid, CP47,497, in Mice
title_short Behavioral Assessment and HPLC/MS/MS Identification of the Synthetic Cannabinoid, CP47,497, in Mice
title_full Behavioral Assessment and HPLC/MS/MS Identification of the Synthetic Cannabinoid, CP47,497, in Mice
title_fullStr Behavioral Assessment and HPLC/MS/MS Identification of the Synthetic Cannabinoid, CP47,497, in Mice
title_full_unstemmed Behavioral Assessment and HPLC/MS/MS Identification of the Synthetic Cannabinoid, CP47,497, in Mice
title_sort behavioral assessment and hplc/ms/ms identification of the synthetic cannabinoid, cp47,497, in mice
publisher VCU Scholars Compass
publishDate 2014
url http://scholarscompass.vcu.edu/etd/3328
http://scholarscompass.vcu.edu/cgi/viewcontent.cgi?article=4327&context=etd
work_keys_str_mv AT samanokimberlyl behavioralassessmentandhplcmsmsidentificationofthesyntheticcannabinoidcp47497inmice
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