(2021) Density functional theory studies of the antioxidants-a review. JOURNAL OF MOLECULAR MODELING. ISSN 1610-2940 0948-5023 J9 - J MOL MODEL
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Abstract
The following review article attempts to compare the antioxidant activity of the compounds. For this purpose, density functional theory/Becke three-parameter Lee-Yang-Parr (DFT/B3LYP) methodology was carried out instead of using pharmacological methodologies because of economic benefits and high accuracy. This methodology filtrates the compounds with the lowest antioxidant activity. At first, the Koopmans' theorem was carried out to calculate some descriptors to compare antioxidants. The energy of the highest occupied molecular orbitals (HOMO) was accepted as the best indicator, and then some studies confirmed that the highest occupied molecular orbital/lowest unoccupied molecular orbital (HOMO-LUMO) energy gap is the more precise descriptor. Although it would be better to compare spin density distribution (SDD) on the oxygen of the corresponding radical in the polarizable continuum model (PCM) to evaluate their capability to chain reaction inhibition. Next, it was mentioned that in the multi-target directed ligands (MTDLs), the antioxidant is connected to other moieties in para positions to create better antioxidants or novel hybrid compounds. Indeed, SDD was introduced as a descriptor for MTDL antioxidant effectiveness. Then, the relation between antioxidants and aromaticity was investigated. The more the aromaticity of an antioxidant, the more stable the corresponding radical is. Subsequently, in preferred antioxidant activity, it was defined that the hydrogen atom transfer (HAT) mechanism is more favored in metabolism phase I. It has been seen that the solvent model can change the antioxidant mechanism. Therefore, the solvent model is more important than the chemical structure of antioxidants, and an ideal antioxidant should be evaluated in PCM for pharmacological evaluations.
Item Type: | Article |
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Keywords: | Antioxidant Highest occupied molecular orbital Spin density distribution Polarizable continuum model BOND-DISSOCIATION ENERGY MOLECULAR-ORBITAL THEORY SPECTROSCOPIC CHARACTERIZATION THEORETICAL ELUCIDATION CHEMICAL-REACTIVITY CRYSTAL-STRUCTURE DFT CALCULATIONS EXPLANATION DERIVATIVES DFT/B3LYP |
Journal or Publication Title: | JOURNAL OF MOLECULAR MODELING |
Journal Index: | ISI |
Volume: | 27 |
Number: | 9 |
Identification Number: | https://doi.org/10.1007/s00894-021-04891-1 |
ISSN: | 1610-2940 0948-5023 J9 - J MOL MODEL |
Depositing User: | Zahra Otroj |
URI: | http://eprints.mui.ac.ir/id/eprint/17341 |
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