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Tytuł pozycji:

Mechanisms of exercise as a preventative measure to muscle wasting.

Tytuł:
Mechanisms of exercise as a preventative measure to muscle wasting.
Autorzy:
Graham ZA; Birmingham VA Medical Center, Birmingham, Alabama.; Florida Institute for Human and Machine Cognition, Pensacola, Florida.; Department of Cell, Developmental, and Integrative Biology, The University of Alabama at Birmingham, Birmingham, Alabama.; UAB Center for Exercise Medicine, The University of Alabama at Birmingham, Birmingham, Alabama.
Lavin KM; Florida Institute for Human and Machine Cognition, Pensacola, Florida.; Department of Cell, Developmental, and Integrative Biology, The University of Alabama at Birmingham, Birmingham, Alabama.; UAB Center for Exercise Medicine, The University of Alabama at Birmingham, Birmingham, Alabama.
O'Bryan SM; Department of Cell, Developmental, and Integrative Biology, The University of Alabama at Birmingham, Birmingham, Alabama.; UAB Center for Exercise Medicine, The University of Alabama at Birmingham, Birmingham, Alabama.
Thalacker-Mercer AE; Department of Cell, Developmental, and Integrative Biology, The University of Alabama at Birmingham, Birmingham, Alabama.; UAB Center for Exercise Medicine, The University of Alabama at Birmingham, Birmingham, Alabama.
Buford TW; UAB Center for Exercise Medicine, The University of Alabama at Birmingham, Birmingham, Alabama.; Division of Gerontology, Geriatrics and Palliative Care, Department of Medicine, The University of Alabama at Birmingham, Birmingham, Alabama.; Nathan Shock Center, The University of Alabama at Birmingham, Birmingham, Alabama.
Ford KM; Florida Institute for Human and Machine Cognition, Pensacola, Florida.
Broderick TJ; Florida Institute for Human and Machine Cognition, Pensacola, Florida.
Bamman MM; Florida Institute for Human and Machine Cognition, Pensacola, Florida.; Department of Cell, Developmental, and Integrative Biology, The University of Alabama at Birmingham, Birmingham, Alabama.; UAB Center for Exercise Medicine, The University of Alabama at Birmingham, Birmingham, Alabama.; Division of Gerontology, Geriatrics and Palliative Care, Department of Medicine, The University of Alabama at Birmingham, Birmingham, Alabama.
Źródło:
American journal of physiology. Cell physiology [Am J Physiol Cell Physiol] 2021 Jul 01; Vol. 321 (1), pp. C40-C57. Date of Electronic Publication: 2021 May 05.
Typ publikacji:
Journal Article; Research Support, N.I.H., Extramural; Research Support, U.S. Gov't, Non-P.H.S.; Review
Język:
English
Imprint Name(s):
Original Publication: Bethesda, Md. : American Physiological Society,
MeSH Terms:
Protein Biosynthesis*
Muscle Proteins/*genetics
Muscle, Skeletal/*metabolism
Muscular Atrophy/*prevention & control
Resistance Training/*methods
Sepsis/*metabolism
Adaptation, Physiological ; Animals ; Bed Rest/adverse effects ; Burns/genetics ; Burns/metabolism ; Burns/pathology ; Burns/rehabilitation ; Epigenesis, Genetic ; Humans ; Muscle Denervation/rehabilitation ; Muscle Proteins/biosynthesis ; Muscle, Skeletal/injuries ; Muscle, Skeletal/innervation ; Muscle, Skeletal/physiopathology ; Muscular Atrophy/genetics ; Muscular Atrophy/metabolism ; Muscular Atrophy/pathology ; Proteolysis ; Quality of Life/psychology ; Sedentary Behavior ; Sepsis/microbiology ; Sepsis/pathology ; Sepsis/rehabilitation ; Signal Transduction ; Weightlessness/adverse effects
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Grant Information:
P2C HD086851 United States HD NICHD NIH HHS; T32 HD071866 United States HD NICHD NIH HHS; IK2 RX002781 United States RX RRD VA; U01 AR071133 United States AR NIAMS NIH HHS; R01HD084124 HHS | NIH | Office of Extramural Research, National Institutes of Health (OER); P2CHD086851 HHS | NIH | Office of Extramural Research, National Institutes of Health (OER); R01 HD084124 United States HD NICHD NIH HHS; T32HD071866 HHS | NIH | Office of Extramural Research, National Institutes of Health (OER); U01AR071133 HHS | NIH | Office of Extramural Research, National Institutes of Health (OER)
Contributed Indexing:
Keywords: epigenetics; exercise; muscle wasting; resistance training; skeletal muscle
Substance Nomenclature:
0 (Muscle Proteins)
Entry Date(s):
Date Created: 20210505 Date Completed: 20210909 Latest Revision: 20211105
Update Code:
20240104
PubMed Central ID:
PMC8424676
DOI:
10.1152/ajpcell.00056.2021
PMID:
33950699
Czasopismo naukowe
Skeletal muscle is the most abundant tissue in healthy individuals and it has important roles in health beyond voluntary movement. The overall mass and energy requirements of skeletal muscle require it to be metabolically active and flexible to multiple energy substrates. The tissue has evolved to be largely load dependent and it readily adapts in a number of positive ways to repetitive overload, such as various forms of exercise training. However, unloading from extended bed rest and/or metabolic derangements in response to trauma, acute illness, or severe pathology, commonly results in rapid muscle wasting. Decline in muscle mass contributes to multimorbidity, reduces function, and exerts a substantial, negative impact on the quality of life. The principal mechanisms controlling muscle mass have been well described and these cellular processes are intricately regulated by exercise. Accordingly, exercise has shown great promise and efficacy in preventing or slowing muscle wasting through changes in molecular physiology, organelle function, cell signaling pathways, and epigenetic regulation. In this review, we focus on the role of exercise in altering the molecular landscape of skeletal muscle in a manner that improves or maintains its health and function in the presence of unloading or disease.epigenetics; exercise; muscle wasting; resistance training; skeletal muscle.

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