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Brain histamine and oleoylethanolamide restore behavioral deficits induced by chronic social defeat stress in mice

The physiological mechanisms underlying the complex interplay between life stressors and metabolic factors is receiving growing interest and is being analyzed as one of the many factors contributing to depressive illness. The brain histaminergic system modulates neuronal activity extensively and we...

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Autores principales: Rani, Barbara, Santangelo, Andrea, Romano, Adele, Koczwara, Justyna Barbara, Friuli, Marzia, Provensi, Gustavo, Blandina, Patrizio, Casarrubea, Maurizio, Gaetani, Silvana, Passani, Maria Beatrice, Costa, Alessia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8039856/
https://www.ncbi.nlm.nih.gov/pubmed/33869681
http://dx.doi.org/10.1016/j.ynstr.2021.100317
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author Rani, Barbara
Santangelo, Andrea
Romano, Adele
Koczwara, Justyna Barbara
Friuli, Marzia
Provensi, Gustavo
Blandina, Patrizio
Casarrubea, Maurizio
Gaetani, Silvana
Passani, Maria Beatrice
Costa, Alessia
author_facet Rani, Barbara
Santangelo, Andrea
Romano, Adele
Koczwara, Justyna Barbara
Friuli, Marzia
Provensi, Gustavo
Blandina, Patrizio
Casarrubea, Maurizio
Gaetani, Silvana
Passani, Maria Beatrice
Costa, Alessia
author_sort Rani, Barbara
collection PubMed
description The physiological mechanisms underlying the complex interplay between life stressors and metabolic factors is receiving growing interest and is being analyzed as one of the many factors contributing to depressive illness. The brain histaminergic system modulates neuronal activity extensively and we demonstrated that its integrity is necessary for peripheral signals such as the bioactive lipid mediator oleoylethanolamide (OEA) to exert its central actions. Here, we investigated the role of brain histamine and its interaction with OEA in response to chronic social defeat stress (CSDS), a preclinical protocol widely used to study physio-pathological mechanisms underlying symptoms observed in depression. Both histidine decarboxylase null (HDC(−/-)) and HDC(+/+) mice were subjected to CSDS for 21 days and treated with either OEA or vehicle daily, starting 10 days after CSDS initiation, until sacrifice. Undisturbed mice served as controls. To test the hypothesis of a histamine-OEA interplay on behavioral responses affected by chronic stress, tests encompassing the social, ethological and memory domains were used. CSDS caused cognitive and social behavior impairments in both genotypes, however, only stressed HDC(+/+) mice responded to the beneficial effects of OEA. To detect subtle behavioral features, an advanced multivariate approach known as T-pattern analysis was used. It revealed unexpected differences of the organization of behavioral sequences during mice social interaction between the two genotypes. These data confirm the centrality of the neurotransmitter histamine as a modulator of complex behavioral responses and directly implicate OEA as a protective agent against social stress consequences in a histamine dependent fashion.
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spelling pubmed-80398562021-04-15 Brain histamine and oleoylethanolamide restore behavioral deficits induced by chronic social defeat stress in mice Rani, Barbara Santangelo, Andrea Romano, Adele Koczwara, Justyna Barbara Friuli, Marzia Provensi, Gustavo Blandina, Patrizio Casarrubea, Maurizio Gaetani, Silvana Passani, Maria Beatrice Costa, Alessia Neurobiol Stress Original Research Article The physiological mechanisms underlying the complex interplay between life stressors and metabolic factors is receiving growing interest and is being analyzed as one of the many factors contributing to depressive illness. The brain histaminergic system modulates neuronal activity extensively and we demonstrated that its integrity is necessary for peripheral signals such as the bioactive lipid mediator oleoylethanolamide (OEA) to exert its central actions. Here, we investigated the role of brain histamine and its interaction with OEA in response to chronic social defeat stress (CSDS), a preclinical protocol widely used to study physio-pathological mechanisms underlying symptoms observed in depression. Both histidine decarboxylase null (HDC(−/-)) and HDC(+/+) mice were subjected to CSDS for 21 days and treated with either OEA or vehicle daily, starting 10 days after CSDS initiation, until sacrifice. Undisturbed mice served as controls. To test the hypothesis of a histamine-OEA interplay on behavioral responses affected by chronic stress, tests encompassing the social, ethological and memory domains were used. CSDS caused cognitive and social behavior impairments in both genotypes, however, only stressed HDC(+/+) mice responded to the beneficial effects of OEA. To detect subtle behavioral features, an advanced multivariate approach known as T-pattern analysis was used. It revealed unexpected differences of the organization of behavioral sequences during mice social interaction between the two genotypes. These data confirm the centrality of the neurotransmitter histamine as a modulator of complex behavioral responses and directly implicate OEA as a protective agent against social stress consequences in a histamine dependent fashion. Elsevier 2021-03-17 /pmc/articles/PMC8039856/ /pubmed/33869681 http://dx.doi.org/10.1016/j.ynstr.2021.100317 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research Article
Rani, Barbara
Santangelo, Andrea
Romano, Adele
Koczwara, Justyna Barbara
Friuli, Marzia
Provensi, Gustavo
Blandina, Patrizio
Casarrubea, Maurizio
Gaetani, Silvana
Passani, Maria Beatrice
Costa, Alessia
Brain histamine and oleoylethanolamide restore behavioral deficits induced by chronic social defeat stress in mice
title Brain histamine and oleoylethanolamide restore behavioral deficits induced by chronic social defeat stress in mice
title_full Brain histamine and oleoylethanolamide restore behavioral deficits induced by chronic social defeat stress in mice
title_fullStr Brain histamine and oleoylethanolamide restore behavioral deficits induced by chronic social defeat stress in mice
title_full_unstemmed Brain histamine and oleoylethanolamide restore behavioral deficits induced by chronic social defeat stress in mice
title_short Brain histamine and oleoylethanolamide restore behavioral deficits induced by chronic social defeat stress in mice
title_sort brain histamine and oleoylethanolamide restore behavioral deficits induced by chronic social defeat stress in mice
topic Original Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8039856/
https://www.ncbi.nlm.nih.gov/pubmed/33869681
http://dx.doi.org/10.1016/j.ynstr.2021.100317
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