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Biochemistry, Genetics and Molecular Biology
3T3-L1
100%
Anticancer
100%
Antineoplastic Activity
100%
Antiproliferative Activity
100%
Binding Energy
50%
Binding Site
50%
Cancer Cell
100%
Caspase
100%
Caspase 3
50%
Chemical Structure
50%
Crystal
50%
Crystal Structure
100%
Docking (Molecular)
100%
Electrospray Ionization
50%
Enzyme
50%
Fibroblast
50%
Flow Cytometry
100%
IC50
100%
Membrane Damage
50%
Mitochondrial Membrane
50%
Outer Mitochondrial Membrane
50%
Pharmacokinetic Properties
50%
Programmed Cell Death
50%
Resolution (Mass Spectrometry)
50%
Thiazole
100%
X Ray Diffraction
50%
Medicine and Dentistry
Anticarcinogen
33%
Antiinfective Agent
33%
Antineoplastic Activity
100%
Antiproliferative Activity
66%
Binding Energy
33%
Binding Site
33%
Cancer Cell
33%
Cancer Cell Line
33%
Carbon Nuclear Magnetic Resonance
33%
Caspase
66%
Caspase 3
33%
Chalcone
100%
Colorectal Carcinoma
33%
Docking (Molecular)
66%
Enzyme
33%
Fibroblast
33%
Flow Cytometry
66%
HT-29 Cell Line
33%
IC50
66%
In Silico
33%
Lung Carcinoma
33%
Mass Spectrum
33%
MCF-7
100%
Pharmacokinetic
33%
Programmed Cell Death
33%
Proton Nuclear Magnetic Resonance
33%
Single Crystal X-Ray Diffraction
33%
Pharmacology, Toxicology and Pharmaceutical Science
Anticarcinogen
50%
Antiinfective Agent
50%
Antiproliferative Activity
50%
Binding Site
50%
Breast Adenocarcinoma
50%
Carbon 13
50%
Carboplatin
50%
Caspase
100%
Caspase 3
50%
Chalcone
100%
Colorectal Carcinoma
50%
Electrospray Ionization
50%
Enzyme
50%
Flow Cytometry
100%
IC50
100%
Lung Carcinoma
50%
Malignant Neoplasm
100%
Membrane Damage
100%
Pharmacokinetic
50%
Chemistry
13C NMR Spectroscopy
10%
1H NMR Spectroscopy
10%
Antineoplastic Agent
20%
Antiproliferative
20%
Apoptotic
10%
Binding Energy
10%
Binding Site
10%
Chalcone
100%
Crystal Structure
100%
Cytometry
20%
Deoxyribonucleic Acid
10%
Electrospray Ionization
10%
High Resolution Mass Spectrometry (HRMS)
10%
IC50
20%
Isothermal Titration Calorimetry
100%
Molecular Docking
20%
Pharmacokinetics
10%
Single-Crystal X-Ray Crystallography
10%