Growth hormone regulates neuroendocrine responses to weight loss via AgRP neurons

Reduction in food intake elicits neuroendocrine adaptations to counterregulate the negative energy balance, e.g. via reduction in leptin levels. Here, the authors identify an additional starvation signal, growth hormone (GH). Blocking GH receptor attenuates the fall of whole body energy expenditure...

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Autores principales: Isadora C. Furigo, Pryscila D. S. Teixeira, Gabriel O. de Souza, Gisele C. L. Couto, Guadalupe García Romero, Mario Perelló, Renata Frazão, Lucila L. Elias, Martin Metzger, Edward O. List, John J. Kopchick, J. Donato
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/d4067e42ca514c9c9b243f9101c626a6
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spelling oai:doaj.org-article:d4067e42ca514c9c9b243f9101c626a62021-12-02T15:35:52ZGrowth hormone regulates neuroendocrine responses to weight loss via AgRP neurons10.1038/s41467-019-08607-12041-1723https://doaj.org/article/d4067e42ca514c9c9b243f9101c626a62019-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-08607-1https://doaj.org/toc/2041-1723Reduction in food intake elicits neuroendocrine adaptations to counterregulate the negative energy balance, e.g. via reduction in leptin levels. Here, the authors identify an additional starvation signal, growth hormone (GH). Blocking GH receptor attenuates the fall of whole body energy expenditure during food deprivation in mice.Isadora C. FurigoPryscila D. S. TeixeiraGabriel O. de SouzaGisele C. L. CoutoGuadalupe García RomeroMario PerellóRenata FrazãoLucila L. EliasMartin MetzgerEdward O. ListJohn J. KopchickJ. DonatoNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Isadora C. Furigo
Pryscila D. S. Teixeira
Gabriel O. de Souza
Gisele C. L. Couto
Guadalupe García Romero
Mario Perelló
Renata Frazão
Lucila L. Elias
Martin Metzger
Edward O. List
John J. Kopchick
J. Donato
Growth hormone regulates neuroendocrine responses to weight loss via AgRP neurons
description Reduction in food intake elicits neuroendocrine adaptations to counterregulate the negative energy balance, e.g. via reduction in leptin levels. Here, the authors identify an additional starvation signal, growth hormone (GH). Blocking GH receptor attenuates the fall of whole body energy expenditure during food deprivation in mice.
format article
author Isadora C. Furigo
Pryscila D. S. Teixeira
Gabriel O. de Souza
Gisele C. L. Couto
Guadalupe García Romero
Mario Perelló
Renata Frazão
Lucila L. Elias
Martin Metzger
Edward O. List
John J. Kopchick
J. Donato
author_facet Isadora C. Furigo
Pryscila D. S. Teixeira
Gabriel O. de Souza
Gisele C. L. Couto
Guadalupe García Romero
Mario Perelló
Renata Frazão
Lucila L. Elias
Martin Metzger
Edward O. List
John J. Kopchick
J. Donato
author_sort Isadora C. Furigo
title Growth hormone regulates neuroendocrine responses to weight loss via AgRP neurons
title_short Growth hormone regulates neuroendocrine responses to weight loss via AgRP neurons
title_full Growth hormone regulates neuroendocrine responses to weight loss via AgRP neurons
title_fullStr Growth hormone regulates neuroendocrine responses to weight loss via AgRP neurons
title_full_unstemmed Growth hormone regulates neuroendocrine responses to weight loss via AgRP neurons
title_sort growth hormone regulates neuroendocrine responses to weight loss via agrp neurons
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/d4067e42ca514c9c9b243f9101c626a6
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