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The genotype of the human cancer cell: Implications for risk analysis
Jerry R. Williams
, James Russell
,
John F. Dicello
, Mack H. Mabry
School of Medicine
Research output
:
Contribution to journal
›
Article
›
peer-review
10
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Scopus citations
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Keyphrases
Genotype
100%
Cancer Cells
100%
Risk Analysis
100%
Carcinogen
57%
Carcinogenic Mechanism
42%
Hypermutation
42%
Human Population
42%
Genetic Predisposition
28%
Human Cancer
28%
Mutated Genes
28%
Exposure Level
28%
Cancer Incidence
28%
Hyperproliferation
28%
Hypermutable
28%
Tumor
14%
Gene Expression
14%
High Dose
14%
Cancer Risk
14%
Rate Limiting
14%
Protective Effect
14%
Oncogenesis
14%
Mutagenesis
14%
Risk Estimation
14%
Genetic Changes
14%
Genetic Defects
14%
Large Database
14%
Systems Change
14%
Gene Activation
14%
Cancer Phenotype
14%
Cancer Types
14%
Mutational Event
14%
Change Patterns
14%
Tissue Type
14%
Relative Role
14%
Cancer Genes
14%
Test Agent
14%
Environmental Levels
14%
Cell Progression
14%
Gene Inactivation
14%
Isolated Tumor Cells
14%
Cancer Prediction
14%
Dose Exposure
14%
Multiple Events
14%
Current Mechanism
14%
Hypersusceptible
14%
Quantitative Biomarkers
14%
Overall Cancer
14%
Carcinogenic Effect
14%
Observed Frequency
14%
Biochemistry, Genetics and Molecular Biology
Genotyping
100%
Cancer Cell
100%
Genetic Predisposition
66%
Mutated Genes
66%
Genetics
33%
Drug Megadose
33%
Gene Mutation
33%
Gene Expression
33%
Carcinogenesis
33%
Mutagenesis
33%
Gene Activation
33%
Gene Inactivation
33%
Pharmacology, Toxicology and Pharmaceutical Science
Malignant Neoplasm
100%
Carcinogen
33%
Genetic Predisposition
16%
Syndrome
8%
Carcinogenesis
8%
Genetic Disorder
8%
Mutagenesis
8%