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DNA repair activity for oxidative damage and risk of lung cancer
Tamar Paz-Elizur
, Meir Krupsky
, Sara Blumenstein
, Dalia Elinger
, Edna Schechtman
, Zvi Livneh
Department of Industrial Engineering and Management
Research output
:
Contribution to journal
›
Article
›
peer-review
268
Scopus citations
Overview
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Dive into the research topics of 'DNA repair activity for oxidative damage and risk of lung cancer'. Together they form a unique fingerprint.
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Keyphrases
Confidence Interval
100%
Odds Ratio
100%
Lung Cancer
100%
Oxidative Damage
100%
Smokers
100%
DNA Repair Capacity
100%
Lung Cancer Risk
100%
8-oxoguanine
100%
Control Subjects
66%
Peripheral Blood Mononuclear Cells
66%
Smoking Status
66%
G Protein
66%
Non-small Cell Lung Cancer (NSCLC)
66%
Healthy Controls
33%
Relative Risk
33%
Conditional Logistic Regression
33%
Adjusted Odds Ratio
33%
DNA Repair Enzymes
33%
Epidemiologic
33%
Oxidative DNA Damage
33%
Smoking Cessation
33%
Non-smokers
33%
Genetic Predisposition
33%
Statistical Test
33%
Effective Strategies
33%
Cigarette Smoking
33%
Cumulative Effects
33%
Protein Extract
33%
Glycoside Hydrolase
33%
Lung Tissue
33%
Lung Cancer Treatment
33%
Synthetic DNA
33%
DNA Lesions
33%
DNA Oligonucleotides
33%
Cleavage Products
33%
Activity Status
33%
Biochemistry, Genetics and Molecular Biology
DNA Repair
100%
DNA Damage
100%
Peripheral Blood Mononuclear Cell
100%
G Protein
100%
Oligonucleotide
50%
DNA Ligase
50%
Prospective Study
50%
Case-Control Study
50%
Genetic Predisposition
50%
Smoking Cessation
50%
Statistical Test
50%
Glycosylase
50%
Pharmacology, Toxicology and Pharmaceutical Science
Lung Cancer
100%
8 Hydroxyguanine
42%
Guanine Nucleotide Binding Protein
28%
Non Small Cell Lung Cancer
28%
Prospective Study
14%
Case-Control Study
14%
Genetic Predisposition
14%
DNA Ligase
14%
Synthetic DNA
14%
Oligonucleotide
14%