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Withdrawal from Cocaine Self-administration and Yoked Cocaine Delivery Dysregulates Glutamatergic mGlu(5) and NMDA Receptors in the Rat Brain

In human addicts and in animal models, chronic cocaine use leads to numerous alterations in glutamatergic transmission, including its receptors. The present study focused on metabotropic glutamatergic receptors type 5 (mGluR(5)) and N-methyl-D-aspartate receptor subunits (NMDAR: GluN1, GluN2A, GluN2...

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Autores principales: Pomierny-Chamiolo, Lucyna, Miszkiel, Joanna, Frankowska, Małgorzata, Pomierny, Bartosz, Niedzielska, Ewa, Smaga, Irena, Fumagalli, Fabio, Filip, Małgorzata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4353866/
https://www.ncbi.nlm.nih.gov/pubmed/25408547
http://dx.doi.org/10.1007/s12640-014-9502-z
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author Pomierny-Chamiolo, Lucyna
Miszkiel, Joanna
Frankowska, Małgorzata
Pomierny, Bartosz
Niedzielska, Ewa
Smaga, Irena
Fumagalli, Fabio
Filip, Małgorzata
author_facet Pomierny-Chamiolo, Lucyna
Miszkiel, Joanna
Frankowska, Małgorzata
Pomierny, Bartosz
Niedzielska, Ewa
Smaga, Irena
Fumagalli, Fabio
Filip, Małgorzata
author_sort Pomierny-Chamiolo, Lucyna
collection PubMed
description In human addicts and in animal models, chronic cocaine use leads to numerous alterations in glutamatergic transmission, including its receptors. The present study focused on metabotropic glutamatergic receptors type 5 (mGluR(5)) and N-methyl-D-aspartate receptor subunits (NMDAR: GluN1, GluN2A, GluN2B) proteins during cocaine self-administration and after 10-day of extinction training in rats. To discriminate the contingent from the non-contingent cocaine delivery, we employed the “yoked”-triad control procedure. Protein expression in rat prefrontal cortex, nucleus accumbens, hippocampus, and dorsal striatum was determined. We also examined the Homer1b/c protein, a member of the postsynaptic density protein family that links NMDAR to mGluR(5). Our results revealed that cocaine self-administration selectively increased GluN1 and GluN2A subunit in the rat hippocampus and dorsal striatum, respectively, while mGluR(5) protein expression was similarly increased in the dorsal striatum of both experimental groups. Withdrawal from both contingent and non-contingent cocaine delivery induced parallel increases in prefrontal cortical GluN2A protein expression, hippocampal mGluR(5), and GluN1 protein expression as well as in accumbal GluN1 subunit expression, while the mGluR(5) expression was reduced in the prefrontal cortex. Extinction training in animals with a history of cocaine self-administration resulted in an elevation of the hippocampal GluN2A/GluN2B subunits and accumbal mGluR(5), and in a 50 % decrease of mGluR(5) protein expression in the dorsal striatum. The latter reduction was associated with Homer1b/1c protein level decrease. Our results showed that both contingent and non-contingent cocaine administration produces numerous, brain region specific, alterations in the mGluR(5), NMDA, and Homer1b/1c protein expression which are dependent on the modality of cocaine administration.
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spelling pubmed-43538662015-03-13 Withdrawal from Cocaine Self-administration and Yoked Cocaine Delivery Dysregulates Glutamatergic mGlu(5) and NMDA Receptors in the Rat Brain Pomierny-Chamiolo, Lucyna Miszkiel, Joanna Frankowska, Małgorzata Pomierny, Bartosz Niedzielska, Ewa Smaga, Irena Fumagalli, Fabio Filip, Małgorzata Neurotox Res Original Article In human addicts and in animal models, chronic cocaine use leads to numerous alterations in glutamatergic transmission, including its receptors. The present study focused on metabotropic glutamatergic receptors type 5 (mGluR(5)) and N-methyl-D-aspartate receptor subunits (NMDAR: GluN1, GluN2A, GluN2B) proteins during cocaine self-administration and after 10-day of extinction training in rats. To discriminate the contingent from the non-contingent cocaine delivery, we employed the “yoked”-triad control procedure. Protein expression in rat prefrontal cortex, nucleus accumbens, hippocampus, and dorsal striatum was determined. We also examined the Homer1b/c protein, a member of the postsynaptic density protein family that links NMDAR to mGluR(5). Our results revealed that cocaine self-administration selectively increased GluN1 and GluN2A subunit in the rat hippocampus and dorsal striatum, respectively, while mGluR(5) protein expression was similarly increased in the dorsal striatum of both experimental groups. Withdrawal from both contingent and non-contingent cocaine delivery induced parallel increases in prefrontal cortical GluN2A protein expression, hippocampal mGluR(5), and GluN1 protein expression as well as in accumbal GluN1 subunit expression, while the mGluR(5) expression was reduced in the prefrontal cortex. Extinction training in animals with a history of cocaine self-administration resulted in an elevation of the hippocampal GluN2A/GluN2B subunits and accumbal mGluR(5), and in a 50 % decrease of mGluR(5) protein expression in the dorsal striatum. The latter reduction was associated with Homer1b/1c protein level decrease. Our results showed that both contingent and non-contingent cocaine administration produces numerous, brain region specific, alterations in the mGluR(5), NMDA, and Homer1b/1c protein expression which are dependent on the modality of cocaine administration. Springer US 2014-11-19 2015 /pmc/articles/PMC4353866/ /pubmed/25408547 http://dx.doi.org/10.1007/s12640-014-9502-z Text en © The Author(s) 2014 https://creativecommons.org/licenses/by/4.0/ Open AccessThis article is distributed under the terms of the Creative Commons Attribution License which permits any use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Original Article
Pomierny-Chamiolo, Lucyna
Miszkiel, Joanna
Frankowska, Małgorzata
Pomierny, Bartosz
Niedzielska, Ewa
Smaga, Irena
Fumagalli, Fabio
Filip, Małgorzata
Withdrawal from Cocaine Self-administration and Yoked Cocaine Delivery Dysregulates Glutamatergic mGlu(5) and NMDA Receptors in the Rat Brain
title Withdrawal from Cocaine Self-administration and Yoked Cocaine Delivery Dysregulates Glutamatergic mGlu(5) and NMDA Receptors in the Rat Brain
title_full Withdrawal from Cocaine Self-administration and Yoked Cocaine Delivery Dysregulates Glutamatergic mGlu(5) and NMDA Receptors in the Rat Brain
title_fullStr Withdrawal from Cocaine Self-administration and Yoked Cocaine Delivery Dysregulates Glutamatergic mGlu(5) and NMDA Receptors in the Rat Brain
title_full_unstemmed Withdrawal from Cocaine Self-administration and Yoked Cocaine Delivery Dysregulates Glutamatergic mGlu(5) and NMDA Receptors in the Rat Brain
title_short Withdrawal from Cocaine Self-administration and Yoked Cocaine Delivery Dysregulates Glutamatergic mGlu(5) and NMDA Receptors in the Rat Brain
title_sort withdrawal from cocaine self-administration and yoked cocaine delivery dysregulates glutamatergic mglu(5) and nmda receptors in the rat brain
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4353866/
https://www.ncbi.nlm.nih.gov/pubmed/25408547
http://dx.doi.org/10.1007/s12640-014-9502-z
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