Although glucocorticoid receptors (GRs) contribute to the action of cocaine, their role following developmental exposure to the psychostimulant is still unknown. To address this issue, we exposed adolescent male rats to cocaine (20. mg/kg/day) from post-natal day (PND) 28 to PND 42 and sacrificed them at PND 45 or 90. We studied the medial prefrontal cortex (mPFC), a brain region that is still developing during adolescence. In PND 45 rats we found enhanced GR transcription and translation as well as increased trafficking toward the nucleus of the receptor, with no alteration in plasma corticosterone levels. We also showed reduced expression of the GR co-chaperone FKBP51, that normally keeps the receptor in the cytoplasm, and increased expression of Src1, which cooperates in the activation of GR transcriptional activity, revealing that short withdrawal alters the finely tuned mechanisms regulating GR action. Since activation of GRs regulate dendritic spine morphology, we next investigated spine dynamics in cocaine-withdrawn rats. We found that PSD95, cofilin and F-actin, molecules regulating spine actin network, are reduced in the mPFC of PND 45 rats suggesting reduced spine density, confirmed by confocal imaging. Further, formation of filopodia, i.e. the inactive spines, is enhanced suggesting the formation of non-functional spines. Of note, no changes were found in molecules related to GR machinery or spine dynamics following long-term abstinence, i.e. in adult rats (PND 90). These findings demonstrate that short withdrawal promotes plastic changes in the developing brain via the dysregulation of the GR system and alterations in the spine network.

Short-term withdrawal from developmental exposure to cocaine activates the glucocorticoid receptor and alters spine dynamics / L. Caffino, G. Giannotti, C. Malpighi, G. Racagni, F. Fumagalli. - In: EUROPEAN NEUROPSYCHOPHARMACOLOGY. - ISSN 0924-977X. - 25:10(2015), pp. 1832-1841. [10.1016/j.euroneuro.2015.05.002]

Short-term withdrawal from developmental exposure to cocaine activates the glucocorticoid receptor and alters spine dynamics

L. Caffino
Primo
;
G. Giannotti
Secondo
;
C. Malpighi;G. Racagni
Penultimo
;
F. Fumagalli
Ultimo
2015

Abstract

Although glucocorticoid receptors (GRs) contribute to the action of cocaine, their role following developmental exposure to the psychostimulant is still unknown. To address this issue, we exposed adolescent male rats to cocaine (20. mg/kg/day) from post-natal day (PND) 28 to PND 42 and sacrificed them at PND 45 or 90. We studied the medial prefrontal cortex (mPFC), a brain region that is still developing during adolescence. In PND 45 rats we found enhanced GR transcription and translation as well as increased trafficking toward the nucleus of the receptor, with no alteration in plasma corticosterone levels. We also showed reduced expression of the GR co-chaperone FKBP51, that normally keeps the receptor in the cytoplasm, and increased expression of Src1, which cooperates in the activation of GR transcriptional activity, revealing that short withdrawal alters the finely tuned mechanisms regulating GR action. Since activation of GRs regulate dendritic spine morphology, we next investigated spine dynamics in cocaine-withdrawn rats. We found that PSD95, cofilin and F-actin, molecules regulating spine actin network, are reduced in the mPFC of PND 45 rats suggesting reduced spine density, confirmed by confocal imaging. Further, formation of filopodia, i.e. the inactive spines, is enhanced suggesting the formation of non-functional spines. Of note, no changes were found in molecules related to GR machinery or spine dynamics following long-term abstinence, i.e. in adult rats (PND 90). These findings demonstrate that short withdrawal promotes plastic changes in the developing brain via the dysregulation of the GR system and alterations in the spine network.
No
English
Adolescence; Cocaine; Dendritic spine morphology; Glucocorticoid receptor; Prefrontal cortex; Neurology (clinical); Psychiatry and Mental Health; Pharmacology (medical); Biological Psychiatry; Neurology; Pharmacology
Settore BIO/14 - Farmacologia
Articolo
Esperti anonimi
Ricerca di base
Pubblicazione scientifica
2015
Elsevier
25
10
1832
1841
10
Pubblicato
Periodico con rilevanza internazionale
www.elsevier.com/locate/euroneuro
scopus
pubmed
crossref
Aderisco
info:eu-repo/semantics/article
Short-term withdrawal from developmental exposure to cocaine activates the glucocorticoid receptor and alters spine dynamics / L. Caffino, G. Giannotti, C. Malpighi, G. Racagni, F. Fumagalli. - In: EUROPEAN NEUROPSYCHOPHARMACOLOGY. - ISSN 0924-977X. - 25:10(2015), pp. 1832-1841. [10.1016/j.euroneuro.2015.05.002]
open
Prodotti della ricerca::01 - Articolo su periodico
5
262
Article (author)
no
L. Caffino, G. Giannotti, C. Malpighi, G. Racagni, F. Fumagalli
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/345584
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