Back to Search
Start Over
Antioxidant Activity of Deferasirox and Its Metal Complexes in Model Systems of Oxidative Damage: Comparison with Deferiprone
- Source :
- Molecules, Vol 26, Iss 5064, p 5064 (2021), Molecules, Volume 26, Issue 16
- Publication Year :
- 2021
- Publisher :
- MDPI AG, 2021.
-
Abstract
- Deferasirox is an orally active, lipophilic iron chelating drug used on thousands of patients worldwide for the treatment of transfusional iron overload. The essential transition metals iron and copper are the primary catalysts of reactive oxygen species and oxidative damage in biological systems. The redox effects of deferasirox and its metal complexes with iron, copper and other metals are of pharmacological, toxicological, biological and physiological importance. Several molecular model systems of oxidative damage caused by iron and copper catalysis including the oxidation of ascorbic acid, the peroxidation of linoleic acid micelles and the oxidation of dihydropyridine have been investigated in the presence of deferasirox using UV-visible and NMR spectroscopy. Deferasirox has shown antioxidant activity in all three model systems, causing substantial reduction in the rate of oxidation and oxidative damage. Deferasirox showed the greatest antioxidant activity in the oxidation of ascorbic acid with the participation of iron ions and reduced the reaction rate by about a 100 times. Overall, deferasirox appears to have lower affinity for copper in comparison to iron. Comparative studies of the antioxidant activity of deferasirox and the hydrophilic oral iron chelating drug deferiprone in the peroxidation of linoleic acid micelles showed lower efficiency of deferasirox in comparison to deferiprone.
- Subjects :
- linoleic acid
Antioxidant
Iron Overload
dihydropyridine
medicine.medical_treatment
Iron
Pharmaceutical Science
antioxidant activity
Organic chemistry
Ascorbic Acid
Iron Chelating Agents
Redox
Article
Antioxidants
Analytical Chemistry
Lipid peroxidation
Fenton reaction
chemistry.chemical_compound
QD241-441
copper chelation
Coordination Complexes
Drug Discovery
medicine
deferiprone
Humans
Physical and Theoretical Chemistry
chemistry.chemical_classification
Reactive oxygen species
iron chelation
Deferasirox
lipid peroxidation
Copper Chelation
Ascorbic acid
NMR
Oxidative Stress
chemistry
Chemistry (miscellaneous)
Metals
Molecular Medicine
Deferiprone
Reactive Oxygen Species
Oxidation-Reduction
deferasirox
Nuclear chemistry
medicine.drug
Subjects
Details
- Language :
- English
- ISSN :
- 14203049
- Volume :
- 26
- Issue :
- 5064
- Database :
- OpenAIRE
- Journal :
- Molecules
- Accession number :
- edsair.doi.dedup.....2a3059ab697c38dcef1f3c14bd13e322