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Exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, AMPK phosphorylation, muscle fibers, and thyroid hormone levels in rats

Exercise under fasting conditions induces a switch to lipid metabolism, eliciting beneficial metabolic effects. Knowledge of signaling responses underlying metabolic adjustments in such conditions may help to identify therapeutic strategies. Therefore, we studied the effect of mild exercise on rats...

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Autores principales: Giacco, Antonia, delli Paoli, Giuseppe, Simiele, Roberta, Caterino, Marianna, Ruoppolo, Margherita, Bloch, Wilhelm, Kraaij, Robert, Uitterlinden, André G., Santillo, Alessandra, Senese, Rosalba, Cioffi, Federica, Silvestri, Elena, Iervolino, Stefania, Lombardi, Assunta, Moreno, Maria, Goglia, Fernando, Lanni, Antonia, de Lange, Pieter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7007447/
https://www.ncbi.nlm.nih.gov/pubmed/32034884
http://dx.doi.org/10.14814/phy2.14354
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author Giacco, Antonia
delli Paoli, Giuseppe
Simiele, Roberta
Caterino, Marianna
Ruoppolo, Margherita
Bloch, Wilhelm
Kraaij, Robert
Uitterlinden, André G.
Santillo, Alessandra
Senese, Rosalba
Cioffi, Federica
Silvestri, Elena
Iervolino, Stefania
Lombardi, Assunta
Moreno, Maria
Goglia, Fernando
Lanni, Antonia
de Lange, Pieter
author_facet Giacco, Antonia
delli Paoli, Giuseppe
Simiele, Roberta
Caterino, Marianna
Ruoppolo, Margherita
Bloch, Wilhelm
Kraaij, Robert
Uitterlinden, André G.
Santillo, Alessandra
Senese, Rosalba
Cioffi, Federica
Silvestri, Elena
Iervolino, Stefania
Lombardi, Assunta
Moreno, Maria
Goglia, Fernando
Lanni, Antonia
de Lange, Pieter
author_sort Giacco, Antonia
collection PubMed
description Exercise under fasting conditions induces a switch to lipid metabolism, eliciting beneficial metabolic effects. Knowledge of signaling responses underlying metabolic adjustments in such conditions may help to identify therapeutic strategies. Therefore, we studied the effect of mild exercise on rats submitted to food withdrawal at thermoneutrality (28°C) for 3 days. Animals were housed at thermoneutrality rather than the standard housing temperature (22°C) to avoid beta‐adrenergic signaling responses that themselves affect metabolism and well‐being. Quantitative analysis of multi‐organ mRNA levels, myofibers, and serum metabolites shows that this protocol (a) boosts fat oxidation in muscle and liver, (b) reduces lipogenesis and increases gluconeogenesis in liver, (c) increases serum acylcarnitines (especially C(4)OH) and ketone bodies and the use of the latter as fuel in muscle, (d) increases Type I myofibers, and (e) is associated with an increased thyroid hormone uptake and metabolism in muscle. In addition, stool microbiome DNA analysis revealed that food withdrawal dramatically alters the presence of bacterial genera associated with ketone metabolism. Taken together, this protocol induces a drastic switch toward increased lipid and ketone metabolism compared to exercise or food withdrawal alone, which may prove beneficial and may involve local thyroid hormones, which may be regarded as exercise mimetics.
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spelling pubmed-70074472020-02-13 Exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, AMPK phosphorylation, muscle fibers, and thyroid hormone levels in rats Giacco, Antonia delli Paoli, Giuseppe Simiele, Roberta Caterino, Marianna Ruoppolo, Margherita Bloch, Wilhelm Kraaij, Robert Uitterlinden, André G. Santillo, Alessandra Senese, Rosalba Cioffi, Federica Silvestri, Elena Iervolino, Stefania Lombardi, Assunta Moreno, Maria Goglia, Fernando Lanni, Antonia de Lange, Pieter Physiol Rep Original Research Exercise under fasting conditions induces a switch to lipid metabolism, eliciting beneficial metabolic effects. Knowledge of signaling responses underlying metabolic adjustments in such conditions may help to identify therapeutic strategies. Therefore, we studied the effect of mild exercise on rats submitted to food withdrawal at thermoneutrality (28°C) for 3 days. Animals were housed at thermoneutrality rather than the standard housing temperature (22°C) to avoid beta‐adrenergic signaling responses that themselves affect metabolism and well‐being. Quantitative analysis of multi‐organ mRNA levels, myofibers, and serum metabolites shows that this protocol (a) boosts fat oxidation in muscle and liver, (b) reduces lipogenesis and increases gluconeogenesis in liver, (c) increases serum acylcarnitines (especially C(4)OH) and ketone bodies and the use of the latter as fuel in muscle, (d) increases Type I myofibers, and (e) is associated with an increased thyroid hormone uptake and metabolism in muscle. In addition, stool microbiome DNA analysis revealed that food withdrawal dramatically alters the presence of bacterial genera associated with ketone metabolism. Taken together, this protocol induces a drastic switch toward increased lipid and ketone metabolism compared to exercise or food withdrawal alone, which may prove beneficial and may involve local thyroid hormones, which may be regarded as exercise mimetics. John Wiley and Sons Inc. 2020-02-07 /pmc/articles/PMC7007447/ /pubmed/32034884 http://dx.doi.org/10.14814/phy2.14354 Text en © 2020 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Giacco, Antonia
delli Paoli, Giuseppe
Simiele, Roberta
Caterino, Marianna
Ruoppolo, Margherita
Bloch, Wilhelm
Kraaij, Robert
Uitterlinden, André G.
Santillo, Alessandra
Senese, Rosalba
Cioffi, Federica
Silvestri, Elena
Iervolino, Stefania
Lombardi, Assunta
Moreno, Maria
Goglia, Fernando
Lanni, Antonia
de Lange, Pieter
Exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, AMPK phosphorylation, muscle fibers, and thyroid hormone levels in rats
title Exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, AMPK phosphorylation, muscle fibers, and thyroid hormone levels in rats
title_full Exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, AMPK phosphorylation, muscle fibers, and thyroid hormone levels in rats
title_fullStr Exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, AMPK phosphorylation, muscle fibers, and thyroid hormone levels in rats
title_full_unstemmed Exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, AMPK phosphorylation, muscle fibers, and thyroid hormone levels in rats
title_short Exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, AMPK phosphorylation, muscle fibers, and thyroid hormone levels in rats
title_sort exercise with food withdrawal at thermoneutrality impacts fuel use, the microbiome, ampk phosphorylation, muscle fibers, and thyroid hormone levels in rats
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7007447/
https://www.ncbi.nlm.nih.gov/pubmed/32034884
http://dx.doi.org/10.14814/phy2.14354
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