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Keyphrases
Malignant Glioma
100%
Mechanistic Role
100%
DNA Damage Response
100%
Sterile alpha Motif
100%
Therapeutic Implications
100%
HD Domain
71%
DNA Damage
29%
Treatment Resistance
21%
DNA End Resection
16%
Homologous Recombination
16%
DNA Double-strand Break Repair
16%
Radiation Therapy
16%
High Probability
16%
CtIP
16%
Glioma Therapy
13%
Double-stranded DNA (dsDNA)
13%
Glioma
10%
Temozolomide
8%
Viral Accessory Proteins
8%
Recombination-independent
8%
Surgical Resection
8%
Patient Outcomes
8%
Cancer Cell Lines
8%
DNA Repair Pathways
8%
Non-dividing Cells
8%
Overall Survival
8%
Tumor Samples
8%
Triphosphohydrolase
8%
Oligodendroglioma
8%
NTPDase
8%
Endogenous Levels
8%
Deoxyribonucleoside Triphosphates
8%
Cancer Cell Death
8%
In Cancer
8%
Putative Drug Targets
8%
Cancer Cells
8%
Combination of Therapies
8%
Reverse Transcription
8%
Inducing Agents
8%
Central Nervous System Malignancies
8%
Patient Prognosis
8%
Well-defined
8%
HIV-1 Infection
8%
Conventional Treatment
8%
Glioma Patients
8%
DNA Double-strand Breaks
8%
Novel Genes
8%
High-level Expression
8%
Therapeutic Agents
8%
Glioblastoma Tumor
8%
Temozolomide Therapy
8%
Effective Treatment
8%
Survival Probability
5%
Poor Prognosis
5%
Proteasomal Degradation
5%
Astrocytoma
5%
Normal Brain Tissue
5%
Biochemistry, Genetics and Molecular Biology
Synapsin I
100%
DNA Damage Response
100%
Sterile Alpha Motif
100%
HD Domain
71%
Double-Strand DNA Break
24%
DNA Damage
24%
Cancer Cell
24%
Homologous Recombination
16%
DNA Repair
8%
Overall Survival
8%
Human Immunodeficiency Virus 1
8%
Reverse Transcription
8%
Cell Death
8%
Erethism
5%
Vpx
5%
Immunology and Microbiology
DNA Damage Response
100%
Sterile Alpha Motif
100%
Double-Strand DNA Break
24%
DNA Damage
24%
Cancer Cell
16%
Homologous Recombination
16%
Overall Survival
8%
Cell Death
8%
Cancer Cell Line
8%
Human Immunodeficiency Virus 1
8%
Reverse Transcription
8%
Therapeutic Target
8%
Infection
8%
Central Nervous System
8%
Infectious Disease
8%
DNA Repair
8%
Hypersensitivity
5%
Brain Tissue
5%
Vpx
5%