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Role of PGC-1α in muscle function and aging
Chounghun Kang,
Li Li Ji
Kinesiology
Research output
:
Contribution to journal
›
Article
›
peer-review
21
Scopus citations
Overview
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Dive into the research topics of 'Role of PGC-1α in muscle function and aging'. Together they form a unique fingerprint.
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Biochemistry, Genetics and Molecular Biology
Mitochondrial Biogenesis
100%
Muscle Function
100%
Transcription
50%
Catalase
50%
Mitochondrial Disorder
50%
Gene Expression
50%
Skeletal Muscle
50%
Homeostasis
50%
Mitochondrial DNA Replication
50%
Genetic Transcription
50%
Mitochondrial Transcription Factor A
50%
Nuclear Respiratory Factor
50%
Superoxide Dismutase
50%
Peroxisome Proliferator-Activated Receptor
50%
Glutathione Peroxidase
50%
Uncoupling Protein
50%
Neuroscience
Mitochondrial Biogenesis
100%
Antioxidant
50%
Peroxisome Proliferator-Activated Receptor
50%
Gene Expression
50%
Skeletal Muscle
50%
Manganese Superoxide Dismutase
50%
Genetic Transcription
50%
Oxidizing Agent
50%
Glutathione Peroxidase 1
50%
Mitochondrial Transcription Factor A
50%
Mitochondrial DNA Replication
50%
Nuclear Respiratory Factor
50%
Catalase
50%
Muscle Atrophy
50%
Uncoupling Protein
50%
Keyphrases
Muscle Function
100%
PGC-1
100%
Muscle Aging
100%
Aging
25%
Mitochondrial Biogenesis
25%
Gene Expression
12%
Mitochondrial Dysfunction
12%
Peroxisome Proliferator-activated Receptor
12%
Skeletal muscle
12%
Molecular Mechanism
12%
Homeostasis
12%
Overexpression
12%
Sarcopenia
12%
Superoxide Dismutase 2 (SOD2)
12%
Protective Behavior
12%
Oxidative Damage
12%
Therapeutic Benefits
12%
Mitochondrial DNA Replication
12%
Gene Transcription
12%
Catalase
12%
Muscle Atrophy
12%
Glutathione Peroxidase (GSH-Px)
12%
Coactivator
12%
Uncoupling Protein
12%
Transcription Regulator
12%
Mitochondrial Transcription Factor A
12%
Nuclear Respiratory Factor 1 (NRF1)
12%
DNA Gene
12%
Oxidant-antioxidant Balance
12%
Age-related Illnesses
12%
Muscle Deterioration
12%