Medicine and Dentistry
DNA Damage
100%
Mitochondrial DNA
100%
Pulmonary Fibrosis
100%
Fibrinogen
100%
Myofibroblast
100%
Cancer Growth Factor
100%
Fibrosis
50%
Bleomycin
50%
Reactive Oxygen Species
33%
8-Oxo-2'-Deoxyguanosine
33%
Disease
16%
In Vitro
16%
Lung Fibroblast
16%
Collagen Type 1
16%
Adenoviridae
16%
Fibronectin
16%
Transgenic Mouse
16%
Smooth Muscle Actin
16%
DNA Glycosylase
16%
Intratracheal Drug Administration
16%
8-Oxoguanine
16%
Guanine
16%
Enzymatic Hydrolysis
16%
INIS
dna damages
100%
mitochondria
100%
fibrosis
100%
growth factors
66%
lungs
55%
bleomycin
33%
levels
22%
control
22%
production
22%
in vivo
22%
oxygen
22%
damage
22%
mice
22%
pathogenesis
22%
dna
22%
tissues
11%
reduction
11%
comparative evaluations
11%
in vitro
11%
enzymes
11%
diseases
11%
oxidation
11%
data
11%
humans
11%
muscles
11%
accumulation
11%
collagen
11%
fibroblasts
11%
knock-out reactions
11%
guanine
11%
adenovirus
11%
transgenic mice
11%
actin
11%
Biochemistry, Genetics and Molecular Biology
SIRT3
100%
DNA Damage
100%
Myofibroblast
100%
Fibrinogen
100%
Cancer Growth Factor
100%
Mitochondrial DNA
100%
Bleomycin
50%
Mouse Model
16%
Enzymatic Hydrolysis
16%
Wild Type
16%
Enzyme
16%
Adenoviridae
16%
Transgenic Mouse
16%
Knockout Mouse
16%
Actin
16%
DNA Glycosylase
16%
Fibroblast
16%
Guanine
16%
Fibronectin
16%
Pharmacology, Toxicology and Pharmaceutical Science
Lung Fibrosis
100%
Fibrinogen
100%
Mitochondrial DNA
100%
Cancer Growth Factor
100%
Bleomycin
50%
Fibrosis
50%
Reactive Oxygen Metabolite
33%
Mouse Model
16%
Knockout Mouse
16%
Transgenic Mouse
16%
8 Hydroxyguanine
16%
DNA Glycosyltransferase
16%
Collagen Type 1
16%
Fibronectin
16%
Adenoviridae
16%
Smooth Muscle Actin
16%
Disease
16%
Guanine
16%