Medicine and Dentistry
Programmed Cell Death
100%
Antineoplastic Activity
100%
In Silico
100%
Diphenyl Ether
100%
Pyridine Derivative
100%
A-549 Cell Line
66%
IC50
66%
Cell Viability
33%
In Vitro
33%
Acridine Orange
33%
Ethidium Bromide
33%
Morphology
33%
Mitosis
33%
DNA Fragmentation
33%
Cell Cycle M Phase
33%
Flow Cytometry
33%
Cell Cycle Arrest
33%
Cell Cycle Checkpoint
33%
Binding Energy
33%
Nucleosome
33%
Biochemistry, Genetics and Molecular Biology
In Silico Study
100%
Antineoplastic Activity
100%
IC50
100%
Acridine Orange
50%
Morphology
50%
Cell Viability
50%
Cell Cycle Arrest
50%
Cell Cycle Checkpoint
50%
Cell Cycle M Phase
50%
Staining
50%
DNA Fragmentation
50%
Mitosis
50%
Binding Energy
50%
Nucleosome
50%
Ethidium Bromide
50%
Flow Cytometry
50%
INIS
apoptosis
100%
synthesis
100%
pyridine
100%
phenyl ether
100%
dna
66%
fragmentation
66%
in vitro
33%
bromides
33%
cell cycle
33%
viability
33%
values
33%
nucleosomes
33%
acridine orange
33%
binding energy
33%
morphological changes
33%
Chemistry
IC50
100%
Deoxyribonucleic Acid
100%
Diphenyl Ether
100%
Cell Viability
50%
Calorific Value
50%
Binding Energy
50%
Acridine Orange
50%
Cytometry
50%
Ethidium Bromide
50%
Pharmacology, Toxicology and Pharmaceutical Science
Pyridine Derivative
100%
Diphenyl Ether
100%
IC50
100%
Flow Cytometry
50%
Cell Viability
50%
Ethidium Bromide
50%
Acridine Orange
50%