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Effect of Psilocybin and Ketamine on Brain Neurotransmitters, Glutamate Receptors, DNA and Rat Behavior

Clinical studies provide evidence that ketamine and psilocybin could be used as fast-acting antidepressants, though their mechanisms and toxicity are still not fully understood. To address this issue, we have examined the effect of a single administration of ketamine and psilocybin on the extracellu...

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Autores principales: Wojtas, Adam, Bysiek, Agnieszka, Wawrzczak-Bargiela, Agnieszka, Szych, Zuzanna, Majcher-Maślanka, Iwona, Herian, Monika, Maćkowiak, Marzena, Gołembiowska, Krystyna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9224489/
https://www.ncbi.nlm.nih.gov/pubmed/35743159
http://dx.doi.org/10.3390/ijms23126713
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author Wojtas, Adam
Bysiek, Agnieszka
Wawrzczak-Bargiela, Agnieszka
Szych, Zuzanna
Majcher-Maślanka, Iwona
Herian, Monika
Maćkowiak, Marzena
Gołembiowska, Krystyna
author_facet Wojtas, Adam
Bysiek, Agnieszka
Wawrzczak-Bargiela, Agnieszka
Szych, Zuzanna
Majcher-Maślanka, Iwona
Herian, Monika
Maćkowiak, Marzena
Gołembiowska, Krystyna
author_sort Wojtas, Adam
collection PubMed
description Clinical studies provide evidence that ketamine and psilocybin could be used as fast-acting antidepressants, though their mechanisms and toxicity are still not fully understood. To address this issue, we have examined the effect of a single administration of ketamine and psilocybin on the extracellular levels of neurotransmitters in the rat frontal cortex and reticular nucleus of the thalamus using microdialysis. The genotoxic effect and density of glutamate receptor proteins was measured with comet assay and Western blot, respectively. An open field test, light–dark box test and forced swim test were conducted to examine rat behavior 24 h after drug administration. Ketamine (10 mg/kg) and psilocybin (2 and 10 mg/kg) increased dopamine, serotonin, glutamate and GABA extracellular levels in the frontal cortex, while psilocybin also increased GABA in the reticular nucleus of the thalamus. Oxidative DNA damage due to psilocybin was observed in the frontal cortex and from both drugs in the hippocampus. NR2A subunit levels were increased after psilocybin (10 mg/kg). Behavioral tests showed no antidepressant or anxiolytic effects, and only ketamine suppressed rat locomotor activity. The observed changes in neurotransmission might lead to genotoxicity and increased NR2A levels, while not markedly affecting animal behavior.
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spelling pubmed-92244892022-06-24 Effect of Psilocybin and Ketamine on Brain Neurotransmitters, Glutamate Receptors, DNA and Rat Behavior Wojtas, Adam Bysiek, Agnieszka Wawrzczak-Bargiela, Agnieszka Szych, Zuzanna Majcher-Maślanka, Iwona Herian, Monika Maćkowiak, Marzena Gołembiowska, Krystyna Int J Mol Sci Article Clinical studies provide evidence that ketamine and psilocybin could be used as fast-acting antidepressants, though their mechanisms and toxicity are still not fully understood. To address this issue, we have examined the effect of a single administration of ketamine and psilocybin on the extracellular levels of neurotransmitters in the rat frontal cortex and reticular nucleus of the thalamus using microdialysis. The genotoxic effect and density of glutamate receptor proteins was measured with comet assay and Western blot, respectively. An open field test, light–dark box test and forced swim test were conducted to examine rat behavior 24 h after drug administration. Ketamine (10 mg/kg) and psilocybin (2 and 10 mg/kg) increased dopamine, serotonin, glutamate and GABA extracellular levels in the frontal cortex, while psilocybin also increased GABA in the reticular nucleus of the thalamus. Oxidative DNA damage due to psilocybin was observed in the frontal cortex and from both drugs in the hippocampus. NR2A subunit levels were increased after psilocybin (10 mg/kg). Behavioral tests showed no antidepressant or anxiolytic effects, and only ketamine suppressed rat locomotor activity. The observed changes in neurotransmission might lead to genotoxicity and increased NR2A levels, while not markedly affecting animal behavior. MDPI 2022-06-16 /pmc/articles/PMC9224489/ /pubmed/35743159 http://dx.doi.org/10.3390/ijms23126713 Text en © 2022 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
Wojtas, Adam
Bysiek, Agnieszka
Wawrzczak-Bargiela, Agnieszka
Szych, Zuzanna
Majcher-Maślanka, Iwona
Herian, Monika
Maćkowiak, Marzena
Gołembiowska, Krystyna
Effect of Psilocybin and Ketamine on Brain Neurotransmitters, Glutamate Receptors, DNA and Rat Behavior
title Effect of Psilocybin and Ketamine on Brain Neurotransmitters, Glutamate Receptors, DNA and Rat Behavior
title_full Effect of Psilocybin and Ketamine on Brain Neurotransmitters, Glutamate Receptors, DNA and Rat Behavior
title_fullStr Effect of Psilocybin and Ketamine on Brain Neurotransmitters, Glutamate Receptors, DNA and Rat Behavior
title_full_unstemmed Effect of Psilocybin and Ketamine on Brain Neurotransmitters, Glutamate Receptors, DNA and Rat Behavior
title_short Effect of Psilocybin and Ketamine on Brain Neurotransmitters, Glutamate Receptors, DNA and Rat Behavior
title_sort effect of psilocybin and ketamine on brain neurotransmitters, glutamate receptors, dna and rat behavior
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9224489/
https://www.ncbi.nlm.nih.gov/pubmed/35743159
http://dx.doi.org/10.3390/ijms23126713
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