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  4. Hydroxyl Radical Generation and Dna Nuclease Activity: A Mechanistic Study Based on a Surface-Immobilized Copper Thioether Clip-Phen Derivative
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Hydroxyl Radical Generation and Dna Nuclease Activity: A Mechanistic Study Based on a Surface-Immobilized Copper Thioether Clip-Phen Derivative

Journal
Chemistry - a European Journal
ISSN
1521-3765
Date Issued
2016
Author(s)
Aliaga-Vidal, C  
Aliaga-Vidal, C  
Lemus-Chavez, L  
Lemus-Chavez, L  
DOI
https://doi.org/10.1002/chem.201601719
Abstract
Coordination compounds of copper have been invoked as major actors in processes involving the reduction of molecular oxygen, mostly with the generation of radical species the assignment for which has, so far, not been fully addressed. In the present work, we have carried out studies in solution and on surfaces to gain insights into the nature of the radical oxygen species (ROS) generated by a copper(II) coordination compound containing a thioether clip-phen derivative, 1,3-bis(1,10-phenanthrolin-2-yloxy)-N-(4-(methylthio)benzylidene)propan-2-amine (2CP-Bz-SMe), enabling its adsorption/immobilization to gold surfaces. Whereas surface plasmon resonance (SPR) and electrochemistry of the adsorbed complex indicated the formation of a dimeric CuIintermediate containing molecular oxygen as a bridging ligand, scanning electrochemical microscopy (SECM) and nuclease assays pointed to the generation of a ROS species. Electron paramagnetic resonance (EPR) data reinforced such conclusions, indicating that radical production was dependent on the amount of oxygen and H2O2, thus pointing to a mechanism involving a Fenton-like reaction that results in the production of OH.. © 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
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