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Balanced Diet-Fed Fat-1 Transgenic Mice Exhibit Lower Hindlimb Suspension-Induced Soleus Muscle Atrophy

The consequences of two-week hindlimb suspension (HS) on skeletal muscle atrophy were investigated in balanced diet-fed Fat-1 transgenic and C57BL/6 wild-type mice. Body composition and gastrocnemius fatty acid composition were measured. Skeletal muscle force, cross-sectional area (CSA), and signali...

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Autores principales: Marzuca-Nassr, Gabriel Nasri, Murata, Gilson Masahiro, Martins, Amanda Roque, Vitzel, Kaio Fernando, Crisma, Amanda Rabello, Torres, Rosângela Pavan, Mancini-Filho, Jorge, Kang, Jing Xuan, Curi, Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5691716/
https://www.ncbi.nlm.nih.gov/pubmed/28984836
http://dx.doi.org/10.3390/nu9101100
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author Marzuca-Nassr, Gabriel Nasri
Murata, Gilson Masahiro
Martins, Amanda Roque
Vitzel, Kaio Fernando
Crisma, Amanda Rabello
Torres, Rosângela Pavan
Mancini-Filho, Jorge
Kang, Jing Xuan
Curi, Rui
author_facet Marzuca-Nassr, Gabriel Nasri
Murata, Gilson Masahiro
Martins, Amanda Roque
Vitzel, Kaio Fernando
Crisma, Amanda Rabello
Torres, Rosângela Pavan
Mancini-Filho, Jorge
Kang, Jing Xuan
Curi, Rui
author_sort Marzuca-Nassr, Gabriel Nasri
collection PubMed
description The consequences of two-week hindlimb suspension (HS) on skeletal muscle atrophy were investigated in balanced diet-fed Fat-1 transgenic and C57BL/6 wild-type mice. Body composition and gastrocnemius fatty acid composition were measured. Skeletal muscle force, cross-sectional area (CSA), and signaling pathways associated with protein synthesis (protein kinase B, Akt; ribosomal protein S6, S6, eukaryotic translation initiation factor 4E-binding protein 1, 4EBP1; glycogen synthase kinase3-beta, GSK3-beta; and extracellular-signal-regulated kinases 1/2, ERK 1/2) and protein degradation (atrophy gene-1/muscle atrophy F-box, atrogin-1/MAFbx and muscle RING finger 1, MuRF1) were evaluated in the soleus muscle. HS decreased soleus muscle wet and dry weights (by 43% and 26%, respectively), muscle isotonic and tetanic force (by 29% and 18%, respectively), CSA of the soleus muscle (by 36%), and soleus muscle fibers (by 45%). Fat-1 transgenic mice had a decrease in the ω-6/ω-3 polyunsaturated fatty acids (PUFAs) ratio as compared with C57BL/6 wild-type mice (56%, p < 0.001). Fat-1 mice had lower soleus muscle dry mass loss (by 10%) and preserved absolute isotonic force (by 17%) and CSA of the soleus muscle (by 28%) after HS as compared with C57BL/6 wild-type mice. p-GSK3B/GSK3B ratio was increased (by 70%) and MuRF-1 content decreased (by 50%) in the soleus muscle of Fat-1 mice after HS. Balanced diet-fed Fat-1 mice are able to preserve in part the soleus muscle mass, absolute isotonic force and CSA of the soleus muscle in a disuse condition.
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spelling pubmed-56917162017-11-22 Balanced Diet-Fed Fat-1 Transgenic Mice Exhibit Lower Hindlimb Suspension-Induced Soleus Muscle Atrophy Marzuca-Nassr, Gabriel Nasri Murata, Gilson Masahiro Martins, Amanda Roque Vitzel, Kaio Fernando Crisma, Amanda Rabello Torres, Rosângela Pavan Mancini-Filho, Jorge Kang, Jing Xuan Curi, Rui Nutrients Article The consequences of two-week hindlimb suspension (HS) on skeletal muscle atrophy were investigated in balanced diet-fed Fat-1 transgenic and C57BL/6 wild-type mice. Body composition and gastrocnemius fatty acid composition were measured. Skeletal muscle force, cross-sectional area (CSA), and signaling pathways associated with protein synthesis (protein kinase B, Akt; ribosomal protein S6, S6, eukaryotic translation initiation factor 4E-binding protein 1, 4EBP1; glycogen synthase kinase3-beta, GSK3-beta; and extracellular-signal-regulated kinases 1/2, ERK 1/2) and protein degradation (atrophy gene-1/muscle atrophy F-box, atrogin-1/MAFbx and muscle RING finger 1, MuRF1) were evaluated in the soleus muscle. HS decreased soleus muscle wet and dry weights (by 43% and 26%, respectively), muscle isotonic and tetanic force (by 29% and 18%, respectively), CSA of the soleus muscle (by 36%), and soleus muscle fibers (by 45%). Fat-1 transgenic mice had a decrease in the ω-6/ω-3 polyunsaturated fatty acids (PUFAs) ratio as compared with C57BL/6 wild-type mice (56%, p < 0.001). Fat-1 mice had lower soleus muscle dry mass loss (by 10%) and preserved absolute isotonic force (by 17%) and CSA of the soleus muscle (by 28%) after HS as compared with C57BL/6 wild-type mice. p-GSK3B/GSK3B ratio was increased (by 70%) and MuRF-1 content decreased (by 50%) in the soleus muscle of Fat-1 mice after HS. Balanced diet-fed Fat-1 mice are able to preserve in part the soleus muscle mass, absolute isotonic force and CSA of the soleus muscle in a disuse condition. MDPI 2017-10-06 /pmc/articles/PMC5691716/ /pubmed/28984836 http://dx.doi.org/10.3390/nu9101100 Text en © 2017 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Marzuca-Nassr, Gabriel Nasri
Murata, Gilson Masahiro
Martins, Amanda Roque
Vitzel, Kaio Fernando
Crisma, Amanda Rabello
Torres, Rosângela Pavan
Mancini-Filho, Jorge
Kang, Jing Xuan
Curi, Rui
Balanced Diet-Fed Fat-1 Transgenic Mice Exhibit Lower Hindlimb Suspension-Induced Soleus Muscle Atrophy
title Balanced Diet-Fed Fat-1 Transgenic Mice Exhibit Lower Hindlimb Suspension-Induced Soleus Muscle Atrophy
title_full Balanced Diet-Fed Fat-1 Transgenic Mice Exhibit Lower Hindlimb Suspension-Induced Soleus Muscle Atrophy
title_fullStr Balanced Diet-Fed Fat-1 Transgenic Mice Exhibit Lower Hindlimb Suspension-Induced Soleus Muscle Atrophy
title_full_unstemmed Balanced Diet-Fed Fat-1 Transgenic Mice Exhibit Lower Hindlimb Suspension-Induced Soleus Muscle Atrophy
title_short Balanced Diet-Fed Fat-1 Transgenic Mice Exhibit Lower Hindlimb Suspension-Induced Soleus Muscle Atrophy
title_sort balanced diet-fed fat-1 transgenic mice exhibit lower hindlimb suspension-induced soleus muscle atrophy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5691716/
https://www.ncbi.nlm.nih.gov/pubmed/28984836
http://dx.doi.org/10.3390/nu9101100
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