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Neutrophils and respiratory tract DNA damage and mutagenesis: a review.
A.M. Knaapen
*
, N. Güngör
,
R.P. Schins
, P.J.A. Borm
,
F.J. van Schooten
*
Corresponding author for this work
NUTRIM - Institute of Nutrition and Translational Research in Metabolism
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Keyphrases
Neutrophils
100%
Respiratory Tract
100%
DNA Damage
100%
DNA mutagenesis
100%
Inflammation
33%
Genotoxicity
33%
Myeloperoxidase
16%
Airway
16%
Reactive Oxygen Species
16%
Lung
16%
Molecular Epidemiology
16%
Epidemiological Study
16%
Etiological Factors
16%
In Vitro Study
16%
In Cancer
16%
Carcinogenicity
16%
Oncogenesis
16%
Activated Neutrophils
16%
Oxidative DNA Damage
16%
Cancer Development
16%
Major Pathway
16%
Metabolic Activation
16%
Cancer Prevention Strategies
16%
Chemical Carcinogens
16%
Pharmacology, Toxicology and Pharmaceutical Science
Inflammation
100%
Respiratory Tract
100%
Malignant Neoplasm
100%
Genotoxicity
100%
Mutagenesis
100%
Carcinogen
50%
Reactive Oxygen Metabolite
50%
Carcinogenesis
50%
Carcinogenicity
50%
Myeloperoxidase
50%
INIS
neutrophils
100%
reviews
100%
dna damages
100%
mutagenesis
100%
cancer
28%
humans
28%
toxicity
28%
inflammation
28%
carcinogens
28%
lungs
14%
rats
14%
animals
14%
oxygen
14%
induction
14%
in vivo
14%
in vitro
14%
capacity
14%
causality
14%
oxidation
14%
carcinogenesis
14%
metabolic activation
14%