Increased expression of atrogenes and TWEAK family members after severe burn injury in non-burned human skeletal muscle
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Summary
It is demonstrated for the first time that severe burn in humans has a remarkable impact on gene expression in skeletal muscle of a nonburned limb of genes that promote inflammation and proteolysis.
- Type
- article
- Published
- 2013-09-01
- Cited by
- 29
- References
- 53
- Access
- Open access
- OpenAlex
- https://openalex.org/W23816995
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1446868
Keywords
Political science
References
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- Control of Muscle Size During Disuse, Disease, and Aging
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- The TWEAK-Fn14 System: Breaking the Silence of Cytokine-Induced Skeletal Muscle Wasting
- Signaling mechanisms of altered cellular responses in trauma, burn, and sepsis: role of Ca2+.
- Anabolic Effects of Oxandrolone After Severe Burn
- Suction applied to a muscle biopsy maximizes sample size.
- Muscle atrophy and hypertrophy signaling in patients with chronic obstructive pulmonary disease.
- Determinants of Skeletal Muscle Catabolism After Severe Burn
- Human Sarcopenia Reveals an Increase in SOCS-3 and Myostatin and a Reduced Efficiency of Akt Phosphorylation
- The Effects of Oxandrolone and Exercise on Muscle Mass and Function in Children With Severe Burns
- Ubiquitin‐protein ligases in muscle wasting: multiple parallel pathways?
- CYTOKINE EXPRESSION PROFILE OVER TIME IN SEVERELY BURNED PEDIATRIC PATIENTS
- Growth delay in postburn pediatric patients.
Cited by
- Serum from human burn victims impairs myogenesis and protein synthesis in primary myoblasts
- Role of the TWEAK-Fn14-cIAP1-NF-κB Signaling Axis in the Regulation of Myogenesis and Muscle Homeostasis
- The TWEAK-Fn14 Pathway: A Potent Regulator of Skeletal Muscle Biology in Health and Disease
- Temporal study following burn injury in young rats is associated with skeletal muscle atrophy, inflammation and altered myogenic regulatory factors
- TWEAK/Fn14 Signaling Axis Mediates Skeletal Muscle Atrophy and Metabolic Dysfunction
- Anthropometry, muscular strength and aerobic capacity up to 5 years after pediatric burns.
- Skeletal muscle atrogene expression and insulin resistance in a rat model of polytrauma
- The Systemic Effect of Burn Injury and Trauma on Muscle and Bone Mass and Composition
- Burn injury induces histopathological changes and cell proliferation in liver of rats.
- Satellite cell activation and apoptosis in skeletal muscle from severely burned children
- Lower-Limb Muscular Strength, Balance, and Mobility Levels in Adults Following Severe Thermal Burn Injuries
- Analysis of differentially expressed genes in white blood cells isolated from patients with major burn injuries
- Muscle Fn14 gene expression is associated with fat‐free mass retention during energy deficit at high altitude
- TWEAK/Fn14 Signals Mediate Burn Wound Repair.
- Coenzyme Q10 protects against burn‐induced mitochondrial dysfunction and impaired insulin signaling in mouse skeletal muscle
- Skeletal muscle atrogenes: from rodent models to human pathologies.
- Divergent Roles of Inflammation in Skeletal Muscle Recovery From Injury
- Behavior of skeletal muscle after severe burn injury
- Thermal injury initiates pervasive fibrogenesis in skeletal muscle.
- Dysregulation of Tweak and Fn14 in skeletal muscle of spinal muscular atrophy mice
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