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1.
Chem Biol Drug Des ; 81(3): 414-9, 2013 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-23405943

RESUMO

This theoretical and experimental study describes the design and evaluation of the free-radical scavenging effect for the molecular association of 4-aminophenol and salicylate derivatives. For this purpose, we employed theoretical methods for the selection of antioxidant drugs and the rapid methods of evaluation: the 1,1-diphenyl-2-picrylhydrazyl radical and the thiobarbituric acid reactive substances in the lipid peroxidation initiated by Fe(2+) and ascorbic acid in human erythrocytes. The associate derivatives exhibited a more potent inhibition than the salicylic acid, while the benzoyl compound exhibited a more potent inhibition than paracetamol. The molecular parameters related to the electron distribution and structure (ionization potential and energy of the highest occupied molecular orbital) correlated very well with the antioxidant action of the compounds studied here in different tests.


Assuntos
Aminofenóis/química , Desenho de Fármacos , Sequestradores de Radicais Livres/química , Salicilatos/química , Aminofenóis/síntese química , Aminofenóis/farmacologia , Desenho Assistido por Computador , Avaliação Pré-Clínica de Medicamentos , Eritrócitos/efeitos dos fármacos , Eritrócitos/metabolismo , Sequestradores de Radicais Livres/síntese química , Sequestradores de Radicais Livres/farmacologia , Humanos , Peroxidação de Lipídeos/efeitos dos fármacos , Teoria Quântica , Salicilatos/síntese química , Salicilatos/farmacologia , Relação Estrutura-Atividade
2.
Int J Mol Sci ; 13(6): 7594-7606, 2012.
Artigo em Inglês | MEDLINE | ID: mdl-22837715

RESUMO

Quantum chemical calculations at the B3LYP/6-31G* level of theory were employed for the structure-activity relationship and prediction of the antioxidant activity of edaravone and structurally related derivatives using energy (E), ionization potential (IP), bond dissociation energy (BDE), and stabilization energies (ΔE(iso)). Spin density calculations were also performed for the proposed antioxidant activity mechanism. The electron abstraction is related to electron-donating groups (EDG) at position 3, decreasing the IP when compared to substitution at position 4. The hydrogen abstraction is related to electron-withdrawing groups (EDG) at position 4, decreasing the BDE(CH) when compared to other substitutions, resulting in a better antioxidant activity. The unpaired electron formed by the hydrogen abstraction from the C-H group of the pyrazole ring is localized at 2, 4, and 6 positions. The highest scavenging activity prediction is related to the lowest contribution at the carbon atom. The likely mechanism is related to hydrogen transfer. It was found that antioxidant activity depends on the presence of EDG at the C(2) and C(4) positions and there is a correlation between IP and BDE. Our results identified three different classes of new derivatives more potent than edaravone.


Assuntos
Antioxidantes/química , Antipirina/análogos & derivados , Modelos Químicos , Antipirina/química , Edaravone
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