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Nucleotides and inorganic phosphates as potential antioxidants
Yael Richter
,
Bilha Fischer
Department of Chemistry
Bar-Ilan University
Research output
:
Contribution to journal
›
Article
›
peer-review
39
Scopus citations
Overview
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Keyphrases
Fenton Reaction
100%
Inorganic Phosphate
100%
Potential Antioxidant
100%
Potent Antioxidant
42%
Fe(II)
42%
Purine nucleotides
42%
Chelates
28%
Phosphate
28%
Antioxidant
28%
Concentration-dependent
28%
Biphasic Modulation
28%
Coordination Sphere
28%
Resonance Measurement
14%
Chelation
14%
Biocompatibility
14%
Dinucleotide
14%
Modulatory
14%
Nucleosides
14%
IC50 Value
14%
Metal Chelator
14%
Electron Spin Resonance
14%
Thiophosphate
14%
Antioxidant Properties
14%
Exponential Decay
14%
Fe(II) Complex
14%
Reaction Mixture
14%
OH Radical
14%
Radical Scavenger
14%
Trolox
14%
Iron Ion
14%
OH Production
14%
Modified nucleotides
14%
ATP Concentration
14%
Natural Modulators
14%
OH Concentration
14%
Ap5A
14%
Low Purine
14%
Highly Potent
14%
Modulation Mode
14%
Pro/antioxidant
14%
Multi-ligand
14%
Chemistry
Fenton Reaction
100%
Antioxidant Agent
100%
Inorganic Phosphate
100%
Nucleotide
100%
ATP
71%
Purine Nucleotide
42%
Coordination Sphere
28%
chelate
28%
Chelation
14%
Chelating Agent
14%
IC50
14%
Electron Spin
14%
Nucleoside
14%
Iron Ion
14%
Reaction Inhibitor
14%
Dinucleotide
14%
Thiophosphate
14%
Trolox
14%
Base
14%
Metal Ion
14%
Radical Scavenger
14%
Pharmacology, Toxicology and Pharmaceutical Science
Fenton Reaction
100%
Antioxidant
100%
Adenosine Triphosphate
71%
Ferrous Ion
57%
Purine Nucleotide
42%
Chelate
28%
Thiophosphate
14%
Trolox C
14%
Dinucleotide
14%
Base
14%
Chelating Agent
14%
Nucleoside
14%
IC50
14%
Metal Ion
14%
Radical Scavenger
14%