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Acute Cardiovascular and Cardiorespiratory Effects of JWH-018 in Awake and Freely Moving Mice: Mechanism of Action and Possible Antidotal Interventions?

JWH-018 is the most known compound among synthetic cannabinoids (SCs) used for their psychoactive effects. SCs-based products are responsible for several intoxications in humans. Cardiac toxicity is among the main side effects observed in emergency departments: SCs intake induces harmful effects suc...

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Autores principales: Marchetti, Beatrice, Bilel, Sabrine, Tirri, Micaela, Corli, Giorgia, Roda, Elisa, Locatelli, Carlo Alessandro, Cavarretta, Elena, De-Giorgio, Fabio, Marti, Matteo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10142259/
https://www.ncbi.nlm.nih.gov/pubmed/37108687
http://dx.doi.org/10.3390/ijms24087515
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author Marchetti, Beatrice
Bilel, Sabrine
Tirri, Micaela
Corli, Giorgia
Roda, Elisa
Locatelli, Carlo Alessandro
Cavarretta, Elena
De-Giorgio, Fabio
Marti, Matteo
author_facet Marchetti, Beatrice
Bilel, Sabrine
Tirri, Micaela
Corli, Giorgia
Roda, Elisa
Locatelli, Carlo Alessandro
Cavarretta, Elena
De-Giorgio, Fabio
Marti, Matteo
author_sort Marchetti, Beatrice
collection PubMed
description JWH-018 is the most known compound among synthetic cannabinoids (SCs) used for their psychoactive effects. SCs-based products are responsible for several intoxications in humans. Cardiac toxicity is among the main side effects observed in emergency departments: SCs intake induces harmful effects such as hypertension, tachycardia, chest pain, arrhythmias, myocardial infarction, breathing impairment, and dyspnea. This study aims to investigate how cardio-respiratory and vascular JWH-018 (6 mg/kg) responses can be modulated by antidotes already in clinical use. The tested antidotes are amiodarone (5 mg/kg), atropine (5 mg/kg), nifedipine (1 mg/kg), and propranolol (2 mg/kg). The detection of heart rate, breath rate, arterial oxygen saturation (SpO2), and pulse distention are provided by a non-invasive apparatus (Mouse Ox Plus) in awake and freely moving CD-1 male mice. Tachyarrhythmia events are also evaluated. Results show that while all tested antidotes reduce tachycardia and tachyarrhythmic events and improve breathing functions, only atropine completely reverts the heart rate and pulse distension. These data may suggest that cardiorespiratory mechanisms of JWH-018-induced tachyarrhythmia involve sympathetic, cholinergic, and ion channel modulation. Current findings also provide valuable impetus to identify potential antidotal intervention to support physicians in the treatment of intoxicated patients in emergency clinical settings.
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spelling pubmed-101422592023-04-29 Acute Cardiovascular and Cardiorespiratory Effects of JWH-018 in Awake and Freely Moving Mice: Mechanism of Action and Possible Antidotal Interventions? Marchetti, Beatrice Bilel, Sabrine Tirri, Micaela Corli, Giorgia Roda, Elisa Locatelli, Carlo Alessandro Cavarretta, Elena De-Giorgio, Fabio Marti, Matteo Int J Mol Sci Article JWH-018 is the most known compound among synthetic cannabinoids (SCs) used for their psychoactive effects. SCs-based products are responsible for several intoxications in humans. Cardiac toxicity is among the main side effects observed in emergency departments: SCs intake induces harmful effects such as hypertension, tachycardia, chest pain, arrhythmias, myocardial infarction, breathing impairment, and dyspnea. This study aims to investigate how cardio-respiratory and vascular JWH-018 (6 mg/kg) responses can be modulated by antidotes already in clinical use. The tested antidotes are amiodarone (5 mg/kg), atropine (5 mg/kg), nifedipine (1 mg/kg), and propranolol (2 mg/kg). The detection of heart rate, breath rate, arterial oxygen saturation (SpO2), and pulse distention are provided by a non-invasive apparatus (Mouse Ox Plus) in awake and freely moving CD-1 male mice. Tachyarrhythmia events are also evaluated. Results show that while all tested antidotes reduce tachycardia and tachyarrhythmic events and improve breathing functions, only atropine completely reverts the heart rate and pulse distension. These data may suggest that cardiorespiratory mechanisms of JWH-018-induced tachyarrhythmia involve sympathetic, cholinergic, and ion channel modulation. Current findings also provide valuable impetus to identify potential antidotal intervention to support physicians in the treatment of intoxicated patients in emergency clinical settings. MDPI 2023-04-19 /pmc/articles/PMC10142259/ /pubmed/37108687 http://dx.doi.org/10.3390/ijms24087515 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Marchetti, Beatrice
Bilel, Sabrine
Tirri, Micaela
Corli, Giorgia
Roda, Elisa
Locatelli, Carlo Alessandro
Cavarretta, Elena
De-Giorgio, Fabio
Marti, Matteo
Acute Cardiovascular and Cardiorespiratory Effects of JWH-018 in Awake and Freely Moving Mice: Mechanism of Action and Possible Antidotal Interventions?
title Acute Cardiovascular and Cardiorespiratory Effects of JWH-018 in Awake and Freely Moving Mice: Mechanism of Action and Possible Antidotal Interventions?
title_full Acute Cardiovascular and Cardiorespiratory Effects of JWH-018 in Awake and Freely Moving Mice: Mechanism of Action and Possible Antidotal Interventions?
title_fullStr Acute Cardiovascular and Cardiorespiratory Effects of JWH-018 in Awake and Freely Moving Mice: Mechanism of Action and Possible Antidotal Interventions?
title_full_unstemmed Acute Cardiovascular and Cardiorespiratory Effects of JWH-018 in Awake and Freely Moving Mice: Mechanism of Action and Possible Antidotal Interventions?
title_short Acute Cardiovascular and Cardiorespiratory Effects of JWH-018 in Awake and Freely Moving Mice: Mechanism of Action and Possible Antidotal Interventions?
title_sort acute cardiovascular and cardiorespiratory effects of jwh-018 in awake and freely moving mice: mechanism of action and possible antidotal interventions?
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10142259/
https://www.ncbi.nlm.nih.gov/pubmed/37108687
http://dx.doi.org/10.3390/ijms24087515
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