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Can nucleotides prevent Cu-induced oxidative damage?
Rozena Baruch-Suchodolsky
,
Bilha Fischer
Department of Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
10
Scopus citations
Overview
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Keyphrases
Hydrogen Peroxide
100%
Oxidative Damage
100%
Adenosine
80%
Cu(I)
80%
IC50
60%
OH Formation
60%
Triphosphate
40%
Phosphate
40%
Fenton Reaction
40%
Antioxidant
40%
Cu Chelators
40%
Cu-Cu
20%
Catalytic Reaction
20%
Biocompatibility
20%
Methylene
20%
Cu(II)
20%
Neurodegeneration
20%
Phosphate Group
20%
Synthetic Oligonucleotides
20%
Normal Metal
20%
Biphasic Modulation
20%
AMP-PNP
20%
Trolox
20%
Ion Chelation
20%
OH Production
20%
Monophasic
20%
Cancer-associated
20%
Diabetes Disease
20%
Scavenging Process
20%
Fenton
20%
Haber-Weiss Reaction
20%
Imino
20%
Tripolyphosphate
20%
Sub-mm
20%
Metal Ion Homeostasis
20%
Inorganic Phosphate
20%
Age-related Illnesses
20%
Potential Antioxidant
20%
Cu(II) Catalysis
20%
Chemistry
Hydrogen Peroxide
100%
Nucleotide
100%
Adenosine
80%
ATP
60%
Antioxidant Agent
60%
IC50
60%
formation
60%
Chelating Agent
40%
AMP
40%
Fenton Reaction
40%
EPR Spectroscopy
20%
Chelation
20%
Ammonium Dihydrogen Phosphate
20%
Reaction Inhibitor
20%
Enhancer
20%
Fenton
20%
Weiss Annulation
20%
Inorganic Phosphate
20%
AMP-PNP
20%
Phosphate Group
20%
Trolox
20%
Metal Ion
20%
Carbene
20%