Photodynamic action of Pd(II)/porphyrin complexes against melanoma cells

dc.creatorMoraes , Edynara Cruz de
dc.creatorMello, Marcos Vinicius Palmeira de
dc.creatorSilva, Lívia do Carmo
dc.creatorCurcio, Juliana Santana de
dc.creatorGraça, Alex Marchezini
dc.creatorDutra, Jocely de Lucena
dc.creatorAlonso, Antonio
dc.creatorSouza, Guilherme Rocha Lino de
dc.creatorBatista, Alzir Azevedo
dc.creatorLacerda, Elisângela de Paula Silveira
dc.creatorGonçalves, Pablo José
dc.date.accessioned2026-09-02T10:56:41Z
dc.date.available2026-09-02T10:56:41Z
dc.date.issued2026
dc.description.abstractPhotodynamic therapy (PDT) is an emerging strategy for cancer treatment and represents a promising approach for melanoma, one of the most aggressive and therapy-resistant forms of skin cancer. In this study, meso-tetra(4- pyridyl)porphyrin complexes coordinated with palladium(II)/diphosphine ligands (Porf@dppe, Porf@dppp, Porf@dppb, and Porf@dppf; dppe = 1,2-bis(diphenylphosphino)ethane, dppp = 1,3-bis(diphenylphosphino) propane, dppb = 1,4-bis(diphenylphosphino)butane, and dppf = 1,1′-bis(diphenylphosphino)ferrocene), previously shown to display favorable lipophilicity and efficient singlet oxygen production, were evaluated against human (A375) and murine (B16–F10) melanoma cells, as well as non-cancerous keratinocytes (HaCaT). Cytotoxicity measured after a 90 min incubation period yielded dark IC50 values between 0.6 and 8.6 μM, whereas light irradiation (λ = 415 nm, 1.8 J cm− 2 , 36 mW cm− 2 ) resulted in markedly lower IC50 values in the nanomolar range (2–27 nM). Irradiation increased intracellular ROS levels, induced morphological alterations in A375 cells, inhibited long-term proliferation, and reduced cell migration, particularly for Porf@dppb and Porf@dppf. The highest cytotoxicity was observed for Porf@dppf, likely due to the redox-active ferrocene unit promoting Fentontype reactions and enhanced hydroxyl radical formation. Electron paramagnetic resonance (EPR) spin-trapping experiments confirmed light-induced generation of hydroxyl radicals and superoxide anion, with significantly higher hydroxyl radical production observed for Porf@dppf. The photodynamic activity of these complexes is attributed to efficient ROS production involving simultaneous contributions from both Type I and Type II mechanisms. Moderate binding to bovine serum albumin suggests possible albumin-mediated plasma transport. Overall, palladium(II)/diphosphine porphyrin complexes emerge as promising photosensitizers for melanoma photodynamic therapy.
dc.identifier.citationMORAES, Edynara Cruz de et al. Photodynamic action of Pd(II)/porphyrin complexes against melanoma cells. European Journal of Medicinal Chemistry, Paris, v. 309, e118751, 2026. DOI: 10.1016/j.ejmech.2026.118751. Disponível em: https://www.sciencedirect.com/science/article/pii/S0223523426001960. Acesso em: 31 ago. 2026.
dc.identifier.doi10.1016/j.ejmech.2026.118751
dc.identifier.issn0223-5234
dc.identifier.issne- 1768-3254
dc.identifier.urihttps://repositorio.bc.ufg.br//handle/ri/31517
dc.language.isoeng
dc.publisher.countryFranca
dc.publisher.departmentInstituto de Física - IF (RMG)
dc.publisher.programPrograma de Pós-graduação em Física
dc.rightsAcesso Aberto
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.subjectPhotodynamic therapy
dc.subjectSkin cancer Porphyrin
dc.subjectROS
dc.subjectSinglet oxygen
dc.subject.ODS3 - Saúde e bem-estar
dc.subject.ODS9 - Industria, inovação e infraestrutura
dc.titlePhotodynamic action of Pd(II)/porphyrin complexes against melanoma cells
dc.typeArtigo

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