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Glycemic Challenge Is Associated with the Rapid Cellular Activation of the Locus Ceruleus and Nucleus of Solitary Tract: Circumscribed Spatial Analysis of Phosphorylated MAP Kinase Immunoreactivity

Rodent studies indicate that impaired glucose utilization or hypoglycemia is associated with the cellular activation of neurons in the medulla (Winslow, 1733) (MY), believed to control feeding behavior and glucose counterregulation. However, such activation has been tracked primarily within hours of...

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Autores principales: Tapia, Geronimo P., Agostinelli, Lindsay J., Chenausky, Sarah D., Padilla, Jessica V. Salcido, Navarro, Vanessa I., Alagh, Amy, Si, Gabriel, Thompson, Richard H., Balivada, Sivasai, Khan, Arshad M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10095283/
https://www.ncbi.nlm.nih.gov/pubmed/37048567
http://dx.doi.org/10.3390/jcm12072483
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author Tapia, Geronimo P.
Agostinelli, Lindsay J.
Chenausky, Sarah D.
Padilla, Jessica V. Salcido
Navarro, Vanessa I.
Alagh, Amy
Si, Gabriel
Thompson, Richard H.
Balivada, Sivasai
Khan, Arshad M.
author_facet Tapia, Geronimo P.
Agostinelli, Lindsay J.
Chenausky, Sarah D.
Padilla, Jessica V. Salcido
Navarro, Vanessa I.
Alagh, Amy
Si, Gabriel
Thompson, Richard H.
Balivada, Sivasai
Khan, Arshad M.
author_sort Tapia, Geronimo P.
collection PubMed
description Rodent studies indicate that impaired glucose utilization or hypoglycemia is associated with the cellular activation of neurons in the medulla (Winslow, 1733) (MY), believed to control feeding behavior and glucose counterregulation. However, such activation has been tracked primarily within hours of the challenge, rather than sooner, and has been poorly mapped within standardized brain atlases. Here, we report that, within 15 min of receiving 2-deoxy-d-glucose (2-DG; 250 mg/kg, i.v.), which can trigger glucoprivic feeding behavior, marked elevations were observed in the numbers of rhombic brain (His, 1893) (RB) neuronal cell profiles immunoreactive for the cellular activation marker(s), phosphorylated p44/42 MAP kinases (phospho-ERK1/2), and that some of these profiles were also catecholaminergic. We mapped their distributions within an open-access rat brain atlas and found that 2-DG-treated rats (compared to their saline-treated controls) displayed greater numbers of phospho-ERK1/2(+) neurons in the locus ceruleus (Wenzel and Wenzel, 1812) (LC) and the nucleus of solitary tract (>1840) (NTS). Thus, the 2-DG-activation of certain RB neurons is more rapid than perhaps previously realized, engaging neurons that serve multiple functional systems and which are of varying cellular phenotypes. Mapping these populations within standardized brain atlas maps streamlines their targeting and/or comparable mapping in preclinical rodent models of disease.
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spelling pubmed-100952832023-04-13 Glycemic Challenge Is Associated with the Rapid Cellular Activation of the Locus Ceruleus and Nucleus of Solitary Tract: Circumscribed Spatial Analysis of Phosphorylated MAP Kinase Immunoreactivity Tapia, Geronimo P. Agostinelli, Lindsay J. Chenausky, Sarah D. Padilla, Jessica V. Salcido Navarro, Vanessa I. Alagh, Amy Si, Gabriel Thompson, Richard H. Balivada, Sivasai Khan, Arshad M. J Clin Med Article Rodent studies indicate that impaired glucose utilization or hypoglycemia is associated with the cellular activation of neurons in the medulla (Winslow, 1733) (MY), believed to control feeding behavior and glucose counterregulation. However, such activation has been tracked primarily within hours of the challenge, rather than sooner, and has been poorly mapped within standardized brain atlases. Here, we report that, within 15 min of receiving 2-deoxy-d-glucose (2-DG; 250 mg/kg, i.v.), which can trigger glucoprivic feeding behavior, marked elevations were observed in the numbers of rhombic brain (His, 1893) (RB) neuronal cell profiles immunoreactive for the cellular activation marker(s), phosphorylated p44/42 MAP kinases (phospho-ERK1/2), and that some of these profiles were also catecholaminergic. We mapped their distributions within an open-access rat brain atlas and found that 2-DG-treated rats (compared to their saline-treated controls) displayed greater numbers of phospho-ERK1/2(+) neurons in the locus ceruleus (Wenzel and Wenzel, 1812) (LC) and the nucleus of solitary tract (>1840) (NTS). Thus, the 2-DG-activation of certain RB neurons is more rapid than perhaps previously realized, engaging neurons that serve multiple functional systems and which are of varying cellular phenotypes. Mapping these populations within standardized brain atlas maps streamlines their targeting and/or comparable mapping in preclinical rodent models of disease. MDPI 2023-03-24 /pmc/articles/PMC10095283/ /pubmed/37048567 http://dx.doi.org/10.3390/jcm12072483 Text en © 2023 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
Tapia, Geronimo P.
Agostinelli, Lindsay J.
Chenausky, Sarah D.
Padilla, Jessica V. Salcido
Navarro, Vanessa I.
Alagh, Amy
Si, Gabriel
Thompson, Richard H.
Balivada, Sivasai
Khan, Arshad M.
Glycemic Challenge Is Associated with the Rapid Cellular Activation of the Locus Ceruleus and Nucleus of Solitary Tract: Circumscribed Spatial Analysis of Phosphorylated MAP Kinase Immunoreactivity
title Glycemic Challenge Is Associated with the Rapid Cellular Activation of the Locus Ceruleus and Nucleus of Solitary Tract: Circumscribed Spatial Analysis of Phosphorylated MAP Kinase Immunoreactivity
title_full Glycemic Challenge Is Associated with the Rapid Cellular Activation of the Locus Ceruleus and Nucleus of Solitary Tract: Circumscribed Spatial Analysis of Phosphorylated MAP Kinase Immunoreactivity
title_fullStr Glycemic Challenge Is Associated with the Rapid Cellular Activation of the Locus Ceruleus and Nucleus of Solitary Tract: Circumscribed Spatial Analysis of Phosphorylated MAP Kinase Immunoreactivity
title_full_unstemmed Glycemic Challenge Is Associated with the Rapid Cellular Activation of the Locus Ceruleus and Nucleus of Solitary Tract: Circumscribed Spatial Analysis of Phosphorylated MAP Kinase Immunoreactivity
title_short Glycemic Challenge Is Associated with the Rapid Cellular Activation of the Locus Ceruleus and Nucleus of Solitary Tract: Circumscribed Spatial Analysis of Phosphorylated MAP Kinase Immunoreactivity
title_sort glycemic challenge is associated with the rapid cellular activation of the locus ceruleus and nucleus of solitary tract: circumscribed spatial analysis of phosphorylated map kinase immunoreactivity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10095283/
https://www.ncbi.nlm.nih.gov/pubmed/37048567
http://dx.doi.org/10.3390/jcm12072483
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