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Flipping the Metabolic Switch: Understanding and Applying Health Benefits of Fasting

Intermittent fasting (IF) is a term used to describe a variety of eating patterns in which no or few calories are consumed for time periods that can range from 12 hours to several days, on a recurring basis. Here we focus on the physiological responses of major organ systems, including the musculosk...

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Autores principales: Anton, Stephen D., Moehl, Keelin, Donahoo, William T., Marosi, Krisztina, Lee, Stephanie, Mainous, Arch G., Leeuwenburgh, Christiaan, Mattson, Mark P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5783752/
https://www.ncbi.nlm.nih.gov/pubmed/29086496
http://dx.doi.org/10.1002/oby.22065
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author Anton, Stephen D.
Moehl, Keelin
Donahoo, William T.
Marosi, Krisztina
Lee, Stephanie
Mainous, Arch G.
Leeuwenburgh, Christiaan
Mattson, Mark P.
author_facet Anton, Stephen D.
Moehl, Keelin
Donahoo, William T.
Marosi, Krisztina
Lee, Stephanie
Mainous, Arch G.
Leeuwenburgh, Christiaan
Mattson, Mark P.
author_sort Anton, Stephen D.
collection PubMed
description Intermittent fasting (IF) is a term used to describe a variety of eating patterns in which no or few calories are consumed for time periods that can range from 12 hours to several days, on a recurring basis. Here we focus on the physiological responses of major organ systems, including the musculoskeletal system, to the onset of the metabolic switch – the point of negative energy balance at which liver glycogen stores are depleted and fatty acids are mobilized (typically beyond 12 hours after cessation of food intake). Emerging findings suggest the metabolic switch from glucose to fatty acid-derived ketones represents an evolutionarily conserved trigger point that shifts metabolism from lipid/cholesterol synthesis and fat storage to mobilization of fat through fatty acid oxidation and fatty-acid derived ketones, which serve to preserve muscle mass and function. Thus, IF regimens that induce the metabolic switch have the potential to improve body composition in overweight individuals. Moreover, IF regimens also induce the coordinated activation of signaling pathways that optimize physiological function, enhance performance, and slow aging and disease processes. Future randomized controlled IF trials should use biomarkers of the metabolic switch (e.g., plasma ketone levels) as a measure of compliance and the magnitude of negative energy balance during the fasting period.
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spelling pubmed-57837522018-04-30 Flipping the Metabolic Switch: Understanding and Applying Health Benefits of Fasting Anton, Stephen D. Moehl, Keelin Donahoo, William T. Marosi, Krisztina Lee, Stephanie Mainous, Arch G. Leeuwenburgh, Christiaan Mattson, Mark P. Obesity (Silver Spring) Article Intermittent fasting (IF) is a term used to describe a variety of eating patterns in which no or few calories are consumed for time periods that can range from 12 hours to several days, on a recurring basis. Here we focus on the physiological responses of major organ systems, including the musculoskeletal system, to the onset of the metabolic switch – the point of negative energy balance at which liver glycogen stores are depleted and fatty acids are mobilized (typically beyond 12 hours after cessation of food intake). Emerging findings suggest the metabolic switch from glucose to fatty acid-derived ketones represents an evolutionarily conserved trigger point that shifts metabolism from lipid/cholesterol synthesis and fat storage to mobilization of fat through fatty acid oxidation and fatty-acid derived ketones, which serve to preserve muscle mass and function. Thus, IF regimens that induce the metabolic switch have the potential to improve body composition in overweight individuals. Moreover, IF regimens also induce the coordinated activation of signaling pathways that optimize physiological function, enhance performance, and slow aging and disease processes. Future randomized controlled IF trials should use biomarkers of the metabolic switch (e.g., plasma ketone levels) as a measure of compliance and the magnitude of negative energy balance during the fasting period. 2017-10-31 2018-02 /pmc/articles/PMC5783752/ /pubmed/29086496 http://dx.doi.org/10.1002/oby.22065 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Anton, Stephen D.
Moehl, Keelin
Donahoo, William T.
Marosi, Krisztina
Lee, Stephanie
Mainous, Arch G.
Leeuwenburgh, Christiaan
Mattson, Mark P.
Flipping the Metabolic Switch: Understanding and Applying Health Benefits of Fasting
title Flipping the Metabolic Switch: Understanding and Applying Health Benefits of Fasting
title_full Flipping the Metabolic Switch: Understanding and Applying Health Benefits of Fasting
title_fullStr Flipping the Metabolic Switch: Understanding and Applying Health Benefits of Fasting
title_full_unstemmed Flipping the Metabolic Switch: Understanding and Applying Health Benefits of Fasting
title_short Flipping the Metabolic Switch: Understanding and Applying Health Benefits of Fasting
title_sort flipping the metabolic switch: understanding and applying health benefits of fasting
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5783752/
https://www.ncbi.nlm.nih.gov/pubmed/29086496
http://dx.doi.org/10.1002/oby.22065
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