ArticleJournal of molecular modeling2026
Thermodynamic and kinetic insights into the antiradical activity of epicoccone B: a computational study.
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. Cited by 1 paper.
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Who cites it
1 citing paper in PubMed.
- Theoretical evaluation of the antiradical activity of 1-Hydroxy-anhydrolycorin-7-one and anhydrolycorin-7-one from Lycoris aurea.Journal of molecular modeling · 2026Article
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Authors and funding
5 authors.
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Abstract
contextElucidating the radical scavenging mechanisms of bioactive natural products is essential for understanding their antioxidant performance under different physiological conditions. In this work, the antioxidant activity of epicoccone B (EB) was comprehensively explored in aqueous and pentylethanoate using a quantum chemical framework. Thermodynamic analysis indicates that EB possesses multiple reactive hydroxyl sites with distinct roles depending on the medium. In water, low proton affinity values, particularly at the O8-H position, favor the SPLET pathway, while the relatively low ionization energy supports the contribution of electron transfer processes. Kinetic results further demonstrate that the overall antioxidant activity is dominated by the SET mechanism of deprotonated species, yielding a high rate constant of 1.91 × 10⁶ M⁻
methodsAll computations were carried out using density functional theory at the M06-2X/6-311 + + G(d,p) level. Fully optimized geometries and vibrational frequency calculations were performed to ensure true minima and to obtain thermodynamic properties in both aqueous and pentylethanoate environments via an SMD implicit solvation model. Frontier thermodynamic parameters, including bond dissociation energies (BDEs), proton affinities (PAs), and ionization energies (IPs), were calculated to assess the feasibility of the fHAT, SPLET, and SETPT mechanisms. The acid-base behavior of EB was evaluated through pK
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