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Molecular aspects of cancer cell resistance to chemotherapy
M. Rebucci,
C. Michiels
Namur Research Institute for Life Sciences
Laboratory of Cellular Biochemistry and Biology
Research output
:
Contribution to journal
›
Article
›
peer-review
8
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Keyphrases
Molecular Aspects
100%
General Mechanism
66%
Epigenetic Modification
33%
Antimetabolites
33%
Resistance Trends
33%
Tumor Stroma
33%
Acquired Resistance
33%
Nucleotide Synthesis
33%
Intrinsic Resistance
33%
Topoisomerase Activity
33%
Stemness Properties
33%
Spindle Poisons
33%
Tyrosine Kinase Receptor
33%
Tumor-associated Macrophages
33%
Topoisomerase Inhibitors
33%
Specific Biomarkers
33%
Tumor Resistance
33%
Genomic Signature
33%
Cancer Hallmarks
33%
INIS
cancer
100%
chemotherapy
100%
tumors
57%
levels
28%
modifications
28%
patients
28%
drugs
28%
reviews
14%
metabolites
14%
enzymes
14%
synthesis
14%
nucleotides
14%
genetics
14%
hypoxia
14%
biological markers
14%
kinases
14%
receptors
14%
incubation
14%
fibroblasts
14%
resist
14%
macrophages
14%
tyrosine
14%
microtubules
14%
Biochemistry, Genetics and Molecular Biology
DNA Topoisomerase
33%
Topoisomerase
33%
Tyrosine Kinase Receptor
16%
Antimetabolite
16%
Tumor-Associated Macrophage
16%
Genomic Signature
16%
Nucleotide Metabolism
16%
Pharmacology, Toxicology and Pharmaceutical Science
Antimetabolite
14%
DNA Topoisomerase Inhibitor
14%
Tumor Resistance
14%
Spindle Poison
14%
Medicine and Dentistry
Tyrosine Kinase Receptor
16%
Intracellular Signaling
16%