ArticleJournal of molecular modeling2026
Theoretical evaluation of the antiradical activity of 1-Hydroxy-anhydrolycorin-7-one and anhydrolycorin-7-one from Lycoris aurea.
Article in Journal of molecular modeling, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
contextThe antiradical activity of 1-hydroxy-anhydrolycorin-7-one (HAlc) and anhydrolycorin-7-one (Alc), two alkaloids isolated from Lycoris aurea, was theoretically investigated toward HOO• radical scavenging in aqueous and lipid-like environments. Thermodynamic analysis showed that HAlc is more favorable than Alc as a radical scavenger, mainly due to the additional hydroxyl group, which enhances both hydrogen atom donation and deprotonation ability. Among the investigated sites, the 2-OH group of HAlc displayed the lowest BDE and PA values and the most negative Gibbs free energy changes, indicating its key role in radical quenching. In pentyl ethanoate, HAlc scavenges HOO• predominantly through the fHAT mechanism at the 2-OH position, with an overall rate constant of 4.29 × 10
methodsAll calculations were performed using Gaussian 09. The most stable conformers were optimized by density functional theory at the M06-2X/6-311++G(d,p) level. Solvent effects were described using the SMD model with water and pentyl ethanoate. The fHAT, SETPT, and SPLET mechanisms were evaluated using BDE, IP, PA, and reaction Gibbs free energies. Kinetic calculations were carried out following the QM-ORSA protocol. Transition states for fHAT reactions were confirmed by single imaginary frequencies associated with hydrogen transfer, tunneling corrections were included, and SET activation barriers were estimated using Marcus theory. Apparent and overall rate constants were calculated by considering acid-base molar fractions at pH 7.4.
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