Insights into bovine serum albumin (BSA) photooxidation mediated by mono-cationic porphyrins with Pd(II), Pt(II), and Ru(II) bipyridyl complexes

dc.creatorSilva, Juliany Naura Marciel da
dc.creatorDesordi, Jaqueline Cristine
dc.creatorDucas, Eli Silveira Alves
dc.creatorChaves, Otávio Augusto
dc.creatorCarmo, Marcos Eduardo Gomes do
dc.creatorPatrocinio, Antonio Otavio de Toledo
dc.creatorIglesias, Bernardo Almeida
dc.creatorGonçalves, Pablo José
dc.date.accessioned2026-09-14T12:28:00Z
dc.date.available2026-09-14T12:28:00Z
dc.date.issued2026
dc.description.abstractPorphyrins are well-established photosensitizers for photodynamic therapy (PDT), and mono-cationic derivatives often display enhanced interactions with biological targets; however, their interactions with albumins remain insufficiently understood. In this study, we investigated the interaction between bovine serum albumin (BSA) and the photooxidative behavior (halogen-lamp irradiation) of a mono-cationic free-base porphyrin (H₂MPyP) and its Pd(II), Pt(II), and Ru(II) complexes, alongside comprehensive electrochemical, photophysical, and protein-binding characterizations. Compared with tetra-cationic analogues, the mono-cationic porphyrins were more efficient at populating the triplet state and generating singlet oxygen. Among them, H₂MPyP, PdMPyP, and PtMPyP exhibited high triplet quantum yields (ΦT ≈ 0.85), with H₂MPyP showing the highest singlet oxygen yield (ΦΔ = 0.70). All compounds promoted BSA photooxidation, with the overall efficiency following PtMPyP > PdMPyP > H₂MPyP > RuMPyP; notably, PtMPyP displayed the highest photodegradation rate constant (kpd = 0.286 min−1). Molecular docking located all porphyrins at site III (IB subdomain), stabilized by hydrophobic and π–cation interactions. No single descriptor (ΦΔ, lipophilicity, or affinity) alone accounted for reactivity, supporting an “exposure–affinity window”: productive protein photooxidation requires sufficient binding for colocalization with BSA but adequate exposure to O₂ near oxidizable residues. These findings show that metal coordination fine-tunes both excited-state deactivation and protein oxidation, offering actionable guidelines for designing next-generation PDT photosensitizers with improved efficiency and selectivity.
dc.identifier.citationSILVA, Juliany Naura Marciel et al. Insights into bovine serum albumin (BSA) photooxidation mediated by mono-cationic porphyrins with Pd(II), Pt(II), and Ru(II) bipyridyl complexes. Journal of Photochemistry and Photobiology A: chemistry, v. 472, e116793, 2026. DOI: 10.1016/j.jphotochem.2025.116793. Disponível em: https://www.sciencedirect.com/science/article/pii/S1010603025005337. Acesso em: 8 set. 2026.
dc.identifier.doi10.1016/j.jphotochem.2025.116793
dc.identifier.issne- 1873-2666
dc.identifier.urihttps://www.sciencedirect.com/science/article/pii/S1010603025005337
dc.language.isoeng
dc.publisher.countryHolanda
dc.publisher.departmentInstituto de Física - IF (RMG)
dc.publisher.programPrograma de Pós-graduação em Física
dc.rightsAcesso Restrito
dc.subjectPhotophysical properties
dc.subjectTriplet quantum yield
dc.subjectSinglet oxygen
dc.subjectPhotodynamic therapy (PDT)
dc.subjectProtein photooxidation
dc.subjectBovine serum albumin (BSA)
dc.subjectMolecular docking
dc.subjectLaser flash photolysis
dc.subject.ODS9 - Industria, inovação e infraestrutura
dc.titleInsights into bovine serum albumin (BSA) photooxidation mediated by mono-cationic porphyrins with Pd(II), Pt(II), and Ru(II) bipyridyl complexes
dc.typeArtigo

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