Cargando…

Synthesis, Crystal Structure, Spectroscopic Properties and Potential Biological Activities of Salicylate‒Neocuproine Ternary Copper(II) Complexes

Mixed ligand copper(II) complexes containing derivatives of salicylic acid and heterocyclic ligands with nitrogen donor atoms have been the subject of various studies and reviews. In this paper, synthesis and characterization of the ternary copper(II) complexes of neocuproine (2,9-dimethyl-1,10-phen...

Descripción completa

Detalles Bibliográficos
Autores principales: Kucková, Lenka, Jomová, Klaudia, Švorcová, Andrea, Valko, Marián, Segľa, Peter, Moncoľ, Ján, Kožíšek, Jozef
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6272241/
https://www.ncbi.nlm.nih.gov/pubmed/25633337
http://dx.doi.org/10.3390/molecules20022115
_version_ 1783377110172172288
author Kucková, Lenka
Jomová, Klaudia
Švorcová, Andrea
Valko, Marián
Segľa, Peter
Moncoľ, Ján
Kožíšek, Jozef
author_facet Kucková, Lenka
Jomová, Klaudia
Švorcová, Andrea
Valko, Marián
Segľa, Peter
Moncoľ, Ján
Kožíšek, Jozef
author_sort Kucková, Lenka
collection PubMed
description Mixed ligand copper(II) complexes containing derivatives of salicylic acid and heterocyclic ligands with nitrogen donor atoms have been the subject of various studies and reviews. In this paper, synthesis and characterization of the ternary copper(II) complexes of neocuproine (2,9-dimethyl-1,10-phenanthroline, Neo) and salicylate ligands (Sal) are reported. In addition, the crystal structures of ([Cu(H(2)O)(5-Cl-Sal)(Neo)] (1), [Cu(μ-Sal)(Neo)](2) (2), Cu(2)(μ-5-Cl-Sal)(5-Cl-HSal)(2)(Neo)(2)]·EtOH (3)) were determined. In order to compare structural and biological properties of the prepared complexes, spectroscopic and biological studies were performed. Results of X-ray diffraction show that prepared complexes form three types of crystal structures in a given system: monomeric, dimeric and dinuclear complex. The preliminary study on the DNA cleavage activity has shown that the complexes under study behave as the chemical nucleases in the presence of added hydrogen peroxide with slight differences in the activity (1 > 2 > 3). The complexes 1 and 2 exhibited nuclease activity itself indicating the interaction of complexes with the DNA. It has been proposed that the enhanced destructive effect of the complexes 1 and 2 on the DNA is a result of two possible mechanisms of action: (i) the conversion of closed circular DNA (form I) to the nicked DNA (form II) caused by the copper complex itself and (ii) damage of DNA by Reactive Oxygen Species (ROS)—products of the interaction of copper with hydrogen peroxide by means of Fenton reaction (hydroxyl radicals). Thus the biological activity of the prepared Cu(II) complexes containing derivatives of salicylic acid and phenanthroline molecules is substantiated by two independent mechanisms. While derivatives of salicylic acids in the coordination sphere of copper complexes are responsible for radical-scavenging activity (predominantly towards superoxide radical anion), the presence of chelating ligand 2,9-dimethyl-1,10-phenanthroline significantly enhances capability of Cu(II) complexes binding to DNA via intercalation.
format Online
Article
Text
id pubmed-6272241
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-62722412018-12-13 Synthesis, Crystal Structure, Spectroscopic Properties and Potential Biological Activities of Salicylate‒Neocuproine Ternary Copper(II) Complexes Kucková, Lenka Jomová, Klaudia Švorcová, Andrea Valko, Marián Segľa, Peter Moncoľ, Ján Kožíšek, Jozef Molecules Article Mixed ligand copper(II) complexes containing derivatives of salicylic acid and heterocyclic ligands with nitrogen donor atoms have been the subject of various studies and reviews. In this paper, synthesis and characterization of the ternary copper(II) complexes of neocuproine (2,9-dimethyl-1,10-phenanthroline, Neo) and salicylate ligands (Sal) are reported. In addition, the crystal structures of ([Cu(H(2)O)(5-Cl-Sal)(Neo)] (1), [Cu(μ-Sal)(Neo)](2) (2), Cu(2)(μ-5-Cl-Sal)(5-Cl-HSal)(2)(Neo)(2)]·EtOH (3)) were determined. In order to compare structural and biological properties of the prepared complexes, spectroscopic and biological studies were performed. Results of X-ray diffraction show that prepared complexes form three types of crystal structures in a given system: monomeric, dimeric and dinuclear complex. The preliminary study on the DNA cleavage activity has shown that the complexes under study behave as the chemical nucleases in the presence of added hydrogen peroxide with slight differences in the activity (1 > 2 > 3). The complexes 1 and 2 exhibited nuclease activity itself indicating the interaction of complexes with the DNA. It has been proposed that the enhanced destructive effect of the complexes 1 and 2 on the DNA is a result of two possible mechanisms of action: (i) the conversion of closed circular DNA (form I) to the nicked DNA (form II) caused by the copper complex itself and (ii) damage of DNA by Reactive Oxygen Species (ROS)—products of the interaction of copper with hydrogen peroxide by means of Fenton reaction (hydroxyl radicals). Thus the biological activity of the prepared Cu(II) complexes containing derivatives of salicylic acid and phenanthroline molecules is substantiated by two independent mechanisms. While derivatives of salicylic acids in the coordination sphere of copper complexes are responsible for radical-scavenging activity (predominantly towards superoxide radical anion), the presence of chelating ligand 2,9-dimethyl-1,10-phenanthroline significantly enhances capability of Cu(II) complexes binding to DNA via intercalation. MDPI 2015-01-27 /pmc/articles/PMC6272241/ /pubmed/25633337 http://dx.doi.org/10.3390/molecules20022115 Text en © 2015 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kucková, Lenka
Jomová, Klaudia
Švorcová, Andrea
Valko, Marián
Segľa, Peter
Moncoľ, Ján
Kožíšek, Jozef
Synthesis, Crystal Structure, Spectroscopic Properties and Potential Biological Activities of Salicylate‒Neocuproine Ternary Copper(II) Complexes
title Synthesis, Crystal Structure, Spectroscopic Properties and Potential Biological Activities of Salicylate‒Neocuproine Ternary Copper(II) Complexes
title_full Synthesis, Crystal Structure, Spectroscopic Properties and Potential Biological Activities of Salicylate‒Neocuproine Ternary Copper(II) Complexes
title_fullStr Synthesis, Crystal Structure, Spectroscopic Properties and Potential Biological Activities of Salicylate‒Neocuproine Ternary Copper(II) Complexes
title_full_unstemmed Synthesis, Crystal Structure, Spectroscopic Properties and Potential Biological Activities of Salicylate‒Neocuproine Ternary Copper(II) Complexes
title_short Synthesis, Crystal Structure, Spectroscopic Properties and Potential Biological Activities of Salicylate‒Neocuproine Ternary Copper(II) Complexes
title_sort synthesis, crystal structure, spectroscopic properties and potential biological activities of salicylate‒neocuproine ternary copper(ii) complexes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6272241/
https://www.ncbi.nlm.nih.gov/pubmed/25633337
http://dx.doi.org/10.3390/molecules20022115
work_keys_str_mv AT kuckovalenka synthesiscrystalstructurespectroscopicpropertiesandpotentialbiologicalactivitiesofsalicylateneocuproineternarycopperiicomplexes
AT jomovaklaudia synthesiscrystalstructurespectroscopicpropertiesandpotentialbiologicalactivitiesofsalicylateneocuproineternarycopperiicomplexes
AT svorcovaandrea synthesiscrystalstructurespectroscopicpropertiesandpotentialbiologicalactivitiesofsalicylateneocuproineternarycopperiicomplexes
AT valkomarian synthesiscrystalstructurespectroscopicpropertiesandpotentialbiologicalactivitiesofsalicylateneocuproineternarycopperiicomplexes
AT seglapeter synthesiscrystalstructurespectroscopicpropertiesandpotentialbiologicalactivitiesofsalicylateneocuproineternarycopperiicomplexes
AT moncoljan synthesiscrystalstructurespectroscopicpropertiesandpotentialbiologicalactivitiesofsalicylateneocuproineternarycopperiicomplexes
AT kozisekjozef synthesiscrystalstructurespectroscopicpropertiesandpotentialbiologicalactivitiesofsalicylateneocuproineternarycopperiicomplexes