Keyphrases
Small Molecules
100%
Muscle Stem Cell (MuSC)
100%
Regenerability
100%
Aging Skeletal muscle
100%
Nicotinamide N-methyltransferase
100%
Methyltransferase Inhibitor
100%
NNMT Inhibitor
100%
Older Adults
37%
Aging
37%
Myofiber
37%
Inhibitor Treatment
37%
Skeletal muscle
25%
High Dose
25%
Contractile Function
25%
Tibialis Anterior muscle
25%
Muscle Regeneration
25%
Muscle Recovery
25%
Pharmacological Approaches
12%
Age-related
12%
Skeletal muscle Mass
12%
Novel Therapeutics
12%
Regeneration
12%
Aged Mice
12%
Severe Morbidity
12%
Dysregulated
12%
Skeletal muscle Strength
12%
Aging muscle
12%
Redox State
12%
Small Molecule Inhibitors
12%
Small-sized
12%
Functional Recovery
12%
Nicotinamide Adenine Dinucleotide (NAD+)
12%
5-ethynyl-2′-deoxyuridine
12%
In Vivo Analysis
12%
Cross-sectional Area
12%
Saline Control
12%
Tibialis Anterior
12%
Senescence
12%
Fiber Cross-sectional Area
12%
C2C12 Myoblasts
12%
Myoblast Differentiation
12%
Musculoskeletal Injury
12%
Large Mode Area Fiber
12%
Peak Torque
12%
Sirtuin 1 (SIRT1)
12%
Novel Mechanism of Action
12%
Large-sized
12%
Stem Cell Proliferation
12%
Age-related Deficits
12%
NAD Salvage
12%
Small Molecule Therapeutics
12%
Muscle Deterioration
12%
Barium Chloride
12%
Capacity Recovery
12%
Fiber Size Distribution
12%
Post Control
12%
Fiber Regeneration
12%
Fusion Competent Myoblast
12%
Cross-sectional Area Measurement
12%
Recovery after Injury
12%
Acute muscle Injury
12%
Medicine and Dentistry
Injury
100%
Muscle Stem Cell
100%
Nicotinamide
100%
Methyltransferase Inhibitor
100%
Skeletal Muscle
100%
Myoblast
50%
Drug Megadose
33%
Contractile Function
33%
Tibialis Anterior Muscle
33%
Muscle Regeneration
33%
In Vitro
16%
Cell Proliferation
16%
Ex Vivo
16%
Low Drug Dose
16%
Deterioration
16%
Muscle Injury
16%
Musculoskeletal Injury
16%
Deoxyuridine
16%
Sirtuin 1
16%
Methyltransferase
16%
C2C12
16%
Barium Chloride
16%
Biochemistry, Genetics and Molecular Biology
Stem Cell
100%
Small Molecule
100%
Skeletal Muscle
100%
Nicotinamide N-Methyltransferase
100%
Drug Megadose
50%
Muscle Regeneration
50%
Cell Proliferation
25%
Enzyme
25%
Low Drug Dose
25%
C2C12
25%
Deoxyuridine
25%
Sirtuin 1
25%
Neuroscience
Stem Cell
100%
Methyltransferase
100%
Skeletal Muscle
100%
Nicotinamide
100%
Myoblast
75%
In Vivo
25%
In Vitro
25%
Cell Proliferation
25%
Deoxyuridine
25%
Sirtuin 1
25%
Immunology and Microbiology
Skeletal Muscle
100%
Muscle Stem Cell
100%
Myoblast
75%
Drug Megadose
50%
Muscle Regeneration
50%
Tibialis Anterior Muscle
50%
Cell Proliferation
25%
Low Drug Dose
25%
Pharmacology, Toxicology and Pharmaceutical Science
Injury
100%
Methyltransferase Inhibitor
100%
Nicotinamide
100%
Combination Therapy
16%
Methyltransferase
16%
Deterioration
16%
Muscle Injury
16%
Sirtuin 1
16%
Deoxyuridine
16%
Musculoskeletal Injury
16%
Barium Chloride
16%