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Dimolybdenum (II,II) paddlewheel complexes bearing non-steroidal anti-inflammatory drug ligands: Insights into the chemico-physical profile and first biological assessment

Articolo
Data di Pubblicazione:
2024
Citazione:
Dimolybdenum (II,II) paddlewheel complexes bearing non-steroidal anti-inflammatory drug ligands: Insights into the chemico-physical profile and first biological assessment / Chiaverini, Lorenzo; Notarstefano, Valentina; Tolbatov, Iogann; Umari, Paolo; Giorgini, Elisabetta; Ciccone, Lidia; Di Leo, Riccardo; Trincavelli, Letizia; Giacomelli, Chiara; Marchetti, Laura; Marzo, Tiziano; La Mendola, Diego; Marrone, Alessandro. - In: JOURNAL OF INORGANIC BIOCHEMISTRY. - ISSN 0162-0134. - 260:(2024). [10.1016/j.jinorgbio.2024.112697]
Abstract:
: Multinuclear complexes are metal compounds featured by adjacent bound metal centers that can lead to unconventional reactivity. Some M2L4-type paddlewheel dinuclear complexes with monoanionic bridging ligands feature promising properties, including therapeutic ones. Molybdenum has been studied for the formation of multiple-bonded M2+ compounds due to their unique scaffold, redox, and spectroscopic properties as well as for applications in several fields including catalysis and biology. These latter are much less explored and only sporadic studies have been carried out. Here, a series of four dimolybdenum (II,II) carboxylate paddlewheel complexes were synthesized using different Non-Steroidal Anti-Inflammatory Drugs (NSAIDs) as ligands. The reaction of (NH4)5[Mo2Cl9]·H2O with the selected NSAIDs in methanol produced the complexes Mo2(μ-O2CR)4 where RCO2 is ibuprofen (1), naproxen (2), aspirin (3) and indomethacin (4). The products were obtained in good yields and extensively characterized with integrated techniques. Stability and solution behaviour were studied using a mixed experimental and computational approach. Finally, the biological activity of 1 and 3 (i.e. the most reactive and the most stable compounds of the series, respectively) was preliminarily assessed confirming the disassembling of the molecules in the biological milieu. Overall, some very interesting results emerged for these unconventional compounds from a mechanistic point of view.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Cancer; Dimolybdenum; Metal-based complexes; NSAIDs; Paddlewheel dinuclear complexes
Elenco autori:
Chiaverini, Lorenzo; Notarstefano, Valentina; Tolbatov, Iogann; Umari, Paolo; Giorgini, Elisabetta; Ciccone, Lidia; Di Leo, Riccardo; Trincavelli, Letizia; Giacomelli, Chiara; Marchetti, Laura; Marzo, Tiziano; La Mendola, Diego; Marrone, Alessandro
Autori di Ateneo:
TOLBATOV Iogann
Link alla scheda completa:
https://iris.uniss.it/handle/11388/353349
Pubblicato in:
JOURNAL OF INORGANIC BIOCHEMISTRY
Journal
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