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New multifunctional heterobinuclear palladium (II) complexes based on organometallic dithiocarbazate ligands
Authors:Yosselin Huentupil  Patricio Chung  Néstor Novoa  A Hugo Klahn  Manuela E Medina  Jonathan Cisterna  Iván Brito  Andrés Rivera  Rodrigo López-Muñoz  Rodrigo Arancibia
Institution:1. Laboratorio de Química Inorgánica y Organometálica, Facultad de Ciencias Químicas, Universidad de Concepción, Concepción, Chile;2. Instituto de Química, Pontificia Universidad Católica de Valparaíso, Casilla, Valparaíso, 4059 Chile;3. Instituto de Ciencias de Materiales de Madrid, Consejo Superior de Investigaciones, Científicas, Sor Juana Inés de la Cruz 3, Madrid, 28049 Spain;4. Departamento de Química, Facultad de Ciencias Básicas, Universidad de Antofagasta, Casilla 170, Antofagasta, Chile;5. Instituto de Farmacología y Morfofisiología, Facultad de Ciencias Veterinarias Universidad Austral de Chile, Valdivia, Chile
Abstract:In the research of new compounds with multifunctional applications, heterobinuclear palladium (II) complexes based on organometallic dithiocarbazates (DTCZs) have been isolated. The organometallic DTCZ ligands of the general formula {(η5-C5H4)-CH=NNHC(S)SCH3}]MLn MLn = Re (CO)3 ( 2a ); Mn (CO)3 ( 2b ); FeCp ( 2c )] were prepared by the reaction between formyl organometallic precursors ( 1a−c ) with S-methyldithiocarbazate. Subsequently, a two-step reaction of 2a−c with: (i) K2PdCl4] and (ii) PPh3 yielded heterobinuclear complexes Pd{MLn(η5-C5H4)-CH=NNHC(S)SCH3}–(Cl)(PPh3)] MLn = Re (CO)3 ( 3a ); Mn (CO)3 ( 3b ); FeCp ( 3c )]. All compounds were characterized by conventional spectroscopic techniques (infrared spectroscopy, nuclear magnetic resonance spectroscopy, mass spectrometry and elemental analysis). In addition, the molecular structures of 2a , 2c and 3c were determined by single-crystal X-ray diffraction. The new palladium (II) complexes ( 3a−c ) were evaluated as antiproliferative agents against non-small cell lung cancer cells (H1299 cells). Complexes 3a and 3b containing cyrhetrenyl- and cymantrenyl-DTCZ ligands, respectively, were more active than their ferrocenyl analogue 3c . The activity was associated with the electron-withdrawing properties of the (η5-C5H4)M (CO)3 moieties and their better lipophilicity than that of the ferrocenyl analogue. In addition, we studied the capacity of metalloligands ( 2a−c ) and palladium (II) complexes ( 3a−c ) to remove methylene blue in water under UV–visible light irradiation. The results established that the complexes showed moderate efficiency and were less active than their corresponding free ligands.
Keywords:cancer  characterization  methylene blue dye  organometallic dithiocarbazate complexes  X-ray
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