A DFT and TDDFT study has been carried out on monomeric anthraquinones Emodin and Dermocybin (Em, Derm) recently proposed as natural antibacterial photosensitizers able to act also against gram-negative microbes. The computational study has been performed considering the relative amount of neutral and ionic forms of each compound in water, with the variation of pH. The occurrence of both Type I and Type II photoreactions has been explored computing the absorption properties of each species, the spin-orbit coupling constants (SOC), the vertical ionization potentials and the vertical electron affinities. The most plausible deactivation channels leading to the population of excited triplet states have been proposed. Our data indicate Emodin as more active than Dermocybin in antimicrobial photodynamic therapy throughout the Type II mechanism. Our data support a dual TypeI/II activity of the monomeric anthraquinones Emodin and Dermccybin in water, in all the considered protonation states.

Ritacca, A., Prejanò, M., Alberto, M., Marino, T., Toscano, M., Russo, N. (2024). On the antibacterial photodynamic inactivation mechanism of Emodin and Dermocybin natural photosensitizers: A theoretical investigation. JOURNAL OF COMPUTATIONAL CHEMISTRY, 45(15), 1254-1260 [10.1002/jcc.27326].

On the antibacterial photodynamic inactivation mechanism of Emodin and Dermocybin natural photosensitizers: A theoretical investigation

Alberto, ME;
2024

Abstract

A DFT and TDDFT study has been carried out on monomeric anthraquinones Emodin and Dermocybin (Em, Derm) recently proposed as natural antibacterial photosensitizers able to act also against gram-negative microbes. The computational study has been performed considering the relative amount of neutral and ionic forms of each compound in water, with the variation of pH. The occurrence of both Type I and Type II photoreactions has been explored computing the absorption properties of each species, the spin-orbit coupling constants (SOC), the vertical ionization potentials and the vertical electron affinities. The most plausible deactivation channels leading to the population of excited triplet states have been proposed. Our data indicate Emodin as more active than Dermocybin in antimicrobial photodynamic therapy throughout the Type II mechanism. Our data support a dual TypeI/II activity of the monomeric anthraquinones Emodin and Dermccybin in water, in all the considered protonation states.
Articolo in rivista - Articolo scientifico
antimicrobial photodynamic therapy; chemical equilibria; deactivation paths; Dermocybin; Emodin; spin-orbit coupling constants;
English
13-feb-2024
2024
45
15
1254
1260
reserved
Ritacca, A., Prejanò, M., Alberto, M., Marino, T., Toscano, M., Russo, N. (2024). On the antibacterial photodynamic inactivation mechanism of Emodin and Dermocybin natural photosensitizers: A theoretical investigation. JOURNAL OF COMPUTATIONAL CHEMISTRY, 45(15), 1254-1260 [10.1002/jcc.27326].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/627578
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