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A Physiological Increase of Insulin in the Olfactory Bulb Decreases Detection of a Learned Aversive Odor and Abolishes Food Odor-Induced Sniffing Behavior in Rats

Insulin is involved in multiple regulatory mechanisms, including body weight and food intake, and plays a critical role in metabolic disorders such as obesity and diabetes. An increasing body of evidence indicates that insulin is also involved in the modulation of olfactory function. The olfactory b...

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Autores principales: Aimé, Pascaline, Hegoburu, Chloé, Jaillard, Tristan, Degletagne, Cyril, Garcia, Samuel, Messaoudi, Belkacem, Thevenet, Marc, Lorsignol, Anne, Duchamp, Claude, Mouly, Anne-Marie, Julliard, Andrée Karyn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3522659/
https://www.ncbi.nlm.nih.gov/pubmed/23251461
http://dx.doi.org/10.1371/journal.pone.0051227
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author Aimé, Pascaline
Hegoburu, Chloé
Jaillard, Tristan
Degletagne, Cyril
Garcia, Samuel
Messaoudi, Belkacem
Thevenet, Marc
Lorsignol, Anne
Duchamp, Claude
Mouly, Anne-Marie
Julliard, Andrée Karyn
author_facet Aimé, Pascaline
Hegoburu, Chloé
Jaillard, Tristan
Degletagne, Cyril
Garcia, Samuel
Messaoudi, Belkacem
Thevenet, Marc
Lorsignol, Anne
Duchamp, Claude
Mouly, Anne-Marie
Julliard, Andrée Karyn
author_sort Aimé, Pascaline
collection PubMed
description Insulin is involved in multiple regulatory mechanisms, including body weight and food intake, and plays a critical role in metabolic disorders such as obesity and diabetes. An increasing body of evidence indicates that insulin is also involved in the modulation of olfactory function. The olfactory bulb (OB) contains the highest level of insulin and insulin receptors (IRs) in the brain. However, a role for insulin in odor detection and sniffing behavior remains to be elucidated. Using a behavioral paradigm based on conditioned olfactory aversion (COA) to isoamyl-acetate odor, we demonstrated that an intracerebroventricular (ICV) injection of 14 mU insulin acutely decreased olfactory detection of fasted rats to the level observed in satiated animals. In addition, whereas fasted animals demonstrated an increase in respiratory frequency upon food odor detection, this effect was absent in fasted animals receiving a 14 mU insulin ICV injection as well as in satiated animals. In parallel, we showed that the OB and plasma insulin levels were increased in satiated rats compared to fasted rats, and that a 14 mU insulin ICV injection elevated the OB insulin level of fasted rats to that of satiated rats. We further quantified insulin receptors (IRs) distribution and showed that IRs are preferentially expressed in the caudal and lateral parts of the main OB, with the highest labeling found in the mitral cells, the main OB projection neurons. Together, these data suggest that insulin acts on the OB network to modulate olfactory processing and demonstrate that olfactory function is under the control of signals involved in energy homeostasis regulation and feeding behaviors.
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spelling pubmed-35226592012-12-18 A Physiological Increase of Insulin in the Olfactory Bulb Decreases Detection of a Learned Aversive Odor and Abolishes Food Odor-Induced Sniffing Behavior in Rats Aimé, Pascaline Hegoburu, Chloé Jaillard, Tristan Degletagne, Cyril Garcia, Samuel Messaoudi, Belkacem Thevenet, Marc Lorsignol, Anne Duchamp, Claude Mouly, Anne-Marie Julliard, Andrée Karyn PLoS One Research Article Insulin is involved in multiple regulatory mechanisms, including body weight and food intake, and plays a critical role in metabolic disorders such as obesity and diabetes. An increasing body of evidence indicates that insulin is also involved in the modulation of olfactory function. The olfactory bulb (OB) contains the highest level of insulin and insulin receptors (IRs) in the brain. However, a role for insulin in odor detection and sniffing behavior remains to be elucidated. Using a behavioral paradigm based on conditioned olfactory aversion (COA) to isoamyl-acetate odor, we demonstrated that an intracerebroventricular (ICV) injection of 14 mU insulin acutely decreased olfactory detection of fasted rats to the level observed in satiated animals. In addition, whereas fasted animals demonstrated an increase in respiratory frequency upon food odor detection, this effect was absent in fasted animals receiving a 14 mU insulin ICV injection as well as in satiated animals. In parallel, we showed that the OB and plasma insulin levels were increased in satiated rats compared to fasted rats, and that a 14 mU insulin ICV injection elevated the OB insulin level of fasted rats to that of satiated rats. We further quantified insulin receptors (IRs) distribution and showed that IRs are preferentially expressed in the caudal and lateral parts of the main OB, with the highest labeling found in the mitral cells, the main OB projection neurons. Together, these data suggest that insulin acts on the OB network to modulate olfactory processing and demonstrate that olfactory function is under the control of signals involved in energy homeostasis regulation and feeding behaviors. Public Library of Science 2012-12-14 /pmc/articles/PMC3522659/ /pubmed/23251461 http://dx.doi.org/10.1371/journal.pone.0051227 Text en © 2012 Aimé et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Aimé, Pascaline
Hegoburu, Chloé
Jaillard, Tristan
Degletagne, Cyril
Garcia, Samuel
Messaoudi, Belkacem
Thevenet, Marc
Lorsignol, Anne
Duchamp, Claude
Mouly, Anne-Marie
Julliard, Andrée Karyn
A Physiological Increase of Insulin in the Olfactory Bulb Decreases Detection of a Learned Aversive Odor and Abolishes Food Odor-Induced Sniffing Behavior in Rats
title A Physiological Increase of Insulin in the Olfactory Bulb Decreases Detection of a Learned Aversive Odor and Abolishes Food Odor-Induced Sniffing Behavior in Rats
title_full A Physiological Increase of Insulin in the Olfactory Bulb Decreases Detection of a Learned Aversive Odor and Abolishes Food Odor-Induced Sniffing Behavior in Rats
title_fullStr A Physiological Increase of Insulin in the Olfactory Bulb Decreases Detection of a Learned Aversive Odor and Abolishes Food Odor-Induced Sniffing Behavior in Rats
title_full_unstemmed A Physiological Increase of Insulin in the Olfactory Bulb Decreases Detection of a Learned Aversive Odor and Abolishes Food Odor-Induced Sniffing Behavior in Rats
title_short A Physiological Increase of Insulin in the Olfactory Bulb Decreases Detection of a Learned Aversive Odor and Abolishes Food Odor-Induced Sniffing Behavior in Rats
title_sort physiological increase of insulin in the olfactory bulb decreases detection of a learned aversive odor and abolishes food odor-induced sniffing behavior in rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3522659/
https://www.ncbi.nlm.nih.gov/pubmed/23251461
http://dx.doi.org/10.1371/journal.pone.0051227
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