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Resum
The synthesis, full characterization, photochemical properties, and cytotoxic activity toward cisplatin-resistant cancer cell lines of new semisquaraine-type Pt(II) complexes are presented. The synthesis of eight semisquaraine-type ligands has been carried out by means of an innovative, straightforward methodology. A thorough structural NMR and X-ray diffraction analysis of the new ligands and complexes has been done. Density functional theory calculations have allowed to assign the trans configuration of the platinum center. Through the structural modification of the ligands, it has been possible to synthesize some complexes, which have turned out to be photoactive at wavelengths that allow their activation in cell cultures and, importantly, two of them show remarkable solubility in biological media. Photodegradation processes have been studied in depth, including the structural identification of photoproducts, thus justifying the changes observed after irradiation. From biological assessment, complexes C7 and C8 have been demonstrated to behave as promising photoactivatable compounds in the assayed cancer cell lines. Upon photoactivation, both complexes are capable of inducing a higher cytotoxic effect on the tested cells compared with nonphotoactivated compounds. Among the observed results, it is remarkable to note that C7 showed a PI > 50 in HeLa cells, and C8 showed a PI > 40 in A2780 cells, being also effective over cisplatin-resistant A2780cis cells (PI = 7 and PI = 4, respectively). The mechanism of action of these complexes has been studied, revealing that these photoactivated platinum complexes would actually present a combined mode of action, a therapeutically potential advantage.
Idioma original | Anglès |
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Pàgines (de-a) | 7729–7745 |
Nombre de pàgines | 17 |
Revista | INORGANIC CHEMISTRY |
Volum | 61 |
Número | 20 |
DOIs | |
Estat de la publicació | Publicada - 23 de maig 2022 |
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Navegar pels temes de recerca de 'Synthesis and in Vitro Studies of Photoactivatable Semisquaraine-type Pt(II) Complexes'. Junts formen un fingerprint únic.Projectes
- 2 Acabat
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Desarrollo de estrategias y agentes terapéuticos innovadores
Figueredo Galimany, M. (PI), Alibes Arques, R. (Co-Investigador/a Principal), Bayon Rueda, J. P. (Investigador/a) & Busque Sanchez, F. (Investigador/a)
Ministerio de Economía y Competitividad (MINECO)
30/12/16 → 31/12/20
Projecte: Projectes i Ajuts a la Recerca
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Comprensión de las interacciones moleculares entre metales y sistemas biológicos para el diseño de aplicaciones biomédicas y biotecnológicas. Sp2-aproximacion química
Capdevila Vidal, M. M. (PI), Ghannadzadeh Samper, K. (Col.laborador/a), Barnadas Rodríguez, R. (Investigador/a), Leiva-Presa, A. (Investigador/a), Palacios Bonilla, O. (Investigador/a) & Suades Ortuño, J. (Investigador/a)
1/01/16 → 31/12/20
Projecte: Projectes i Ajuts a la Recerca
Conjunts de dades
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CCDC 2100958: Experimental Crystal Structure Determination
Morales, K. (Creador), Rodríguez-Calado, S. (Col·laborador), Hernando, J. (Col·laborador), Lorenzo, J. (Col·laborador), Rodríguez-Diéguez, A. (Col·laborador), Jaime, C. (Col·laborador), Nolis, P. (Col·laborador), Capdevila, M. (Col·laborador), Palacios, Ò. (Col·laborador), Figueredo, M. (Col·laborador) & Bayón, P. (Col·laborador), Cambridge Crystallographic Data Centre, 3 d’ag. 2021
DOI: 10.5517/ccdc.csd.cc28j6vw, http://www.ccdc.cam.ac.uk/services/structure_request?id=doi:10.5517/ccdc.csd.cc28j6vw&sid=DataCite
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