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Theoretical Study of Radical Inactivation, LOX Inhibition, and Iron Chelation: The Role of Ferulic Acid in Skin Protection against UVA Induced Oxidative Stress (CROSBI ID 299168)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Amić, Ana ; Dimitrić Marković, Jasmina M. ; Marković, Zoran ; Milenković, Dejan ; Milanović, Žiko ; Antonijević, Marko ; Mastiľák Cagardová, Denisa ; Rodríguez-Guerra Pedregal, Jaime Theoretical Study of Radical Inactivation, LOX Inhibition, and Iron Chelation: The Role of Ferulic Acid in Skin Protection against UVA Induced Oxidative Stress // Antioxidants, 10 (2021), 8; 1303, 16

Podaci o odgovornosti

Amić, Ana ; Dimitrić Marković, Jasmina M. ; Marković, Zoran ; Milenković, Dejan ; Milanović, Žiko ; Antonijević, Marko ; Mastiľák Cagardová, Denisa ; Rodríguez-Guerra Pedregal, Jaime

engleski

Theoretical Study of Radical Inactivation, LOX Inhibition, and Iron Chelation: The Role of Ferulic Acid in Skin Protection against UVA Induced Oxidative Stress

Ferulic acid (FA) is used in skin formulations for protection against the damaging actions of the reactive oxygen species (ROS) produced by UVA radiation. Possible underlying protective mechanisms are not fully elucidated. By considering the kinetics of proton-coupled electron transfer (PCET) and radical-radical coupling (RRC) mechanisms, it appears that direct scavenging could be operative, providing that a high local concentration of FA is present at the place of •OH generation. The resulting FA phenoxyl radical, after the scavenging of a second •OH and keto-enol tautomerization of the intermediate, produces 5-hydroxyferulic acid (5OHFA). Inhibition of the lipoxygenase (LOX) enzyme, one of the enzymes that catalyse free radical production, by FA and 5OHFA were analysed. Results of molecular docking calculations indicate favourable binding interactions of FA and 5OHFA with the LOX active site. The exergonicity of chelation reactions of the catalytic Fe2+ ion with FA and 5OHFA indicate the potency of these chelators to prevent the formation of •OH radicals via Fenton-like reactions. The inhibition of the prooxidant LOX enzyme could be more relevant mechanism of skin protection against UVA induced oxidative stress than iron chelation and assumed direct scavenging of ROS.

ferulic acid ; 5-hydroxyferulic acid ; density functional theory (DFT) and moleculardocking ; radical scavenging ; PCET ; radical-radical coupling ; minimum energy crossing point (MECP) ; water assisted tautomerization ; lipoxygenase ; iron chelation

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Podaci o izdanju

10 (8)

2021.

1303

16

objavljeno

2076-3921

Povezanost rada

Kemija

Indeksiranost