Cargando…

Oxygen Radical Scavenger Activity, EPR, NMR, Molecular Mechanics and Extended-Hückel Molecular Orbital Investigation of the Bis(Piroxicam)Copper(II) Complex

The oxygen radical scavenger activity (ORSA) of [Cu(II)(Pir)(2)] (HPir = Piroxicam = 4-hydroxy -2- methyl -N-2- pyridyl -2H- 1,2-benzothiazine -3- carboxamide 1,1-dioxide) was determined by chemiluminescence of samples obtained by mixing human neutrophils (from healthy subjects) and [Cu(II)(Pir)(2)(...

Descripción completa

Detalles Bibliográficos
Autores principales: Cini, Renzo, Pogni, Rebecca, Basosi, Riccardo, Donati, Alessandro, Rossi, Claudio, Sabadini, Luciano, Rollo, Libertario, Lorenzini, Sauro, Gelli, Renata, Marcolongo, Roberto
Formato: Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 1995
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2364950/
https://www.ncbi.nlm.nih.gov/pubmed/18472745
http://dx.doi.org/10.1155/MBD.1995.43
_version_ 1782154050100264960
author Cini, Renzo
Pogni, Rebecca
Basosi, Riccardo
Donati, Alessandro
Rossi, Claudio
Sabadini, Luciano
Rollo, Libertario
Lorenzini, Sauro
Gelli, Renata
Marcolongo, Roberto
author_facet Cini, Renzo
Pogni, Rebecca
Basosi, Riccardo
Donati, Alessandro
Rossi, Claudio
Sabadini, Luciano
Rollo, Libertario
Lorenzini, Sauro
Gelli, Renata
Marcolongo, Roberto
author_sort Cini, Renzo
collection PubMed
description The oxygen radical scavenger activity (ORSA) of [Cu(II)(Pir)(2)] (HPir = Piroxicam = 4-hydroxy -2- methyl -N-2- pyridyl -2H- 1,2-benzothiazine -3- carboxamide 1,1-dioxide) was determined by chemiluminescence of samples obtained by mixing human neutrophils (from healthy subjects) and [Cu(II)(Pir)(2)(DMF)(2)] (DMF = N,N -dimethylformammide) in DMSO/GLY/PBS (2:1:2, v/v) solution (DMSO = dimethylsulfoxide, GLY = 1,2,3-propantriol, PBS = Dulbecco’s buffer salt solution). The ratio of the residual radicals, for the HPir (1.02·10(−4)M) and [Cu(II)(Pir)(2)(DMF)(2)] (1.08·10(−5)M)/HPir (8.01·10−(−5)M) systems was higher than 12 (not stimulated) [excess of piroxicam was added (Cu/Pir molar ratio ≈1:10) in order to have most of the metal complexed as bischelate]. In contrast, the ratio of residual radicals for the CuCl(2) (1.00·10(−5)M) and [Cu(II)(Pir)(2)(DMF)(2)] (1.08·10(−5)M)/Hpir (8.01·10(−5)M)system was 5. The [Cu(II)(Pir)(2)] compound is therefore a stronger radical scavenger than either HPir or CuCl(2). A molecular mechanics (MM) analysis of the gas phase structures of neutral HPir, its zwitterionic (HPir(+-)) and anionic (Pir(-)) forms, and some Cu(II)-piroxicam complexes based on X-ray structures allowed calculation of force constants. The most stable structure for HPir has a ZZZ conformation similar to that found in the Cu(II) (and Cd(II) complexes) in the solid state as well as in the gas phase. The structure is stabilized by a strong H bond which involves the N(amide)-H and O(enolic) groups. The MM simulation for the [Cu(II)(Pir)(2)(DMF)(2)] complex showed that two high repulsive intramolecular contacts exist between a pyridyl hydrogen atom of one Pir(-) molecule with the O donor of the other ligand. These interactions activate a transition toward a pseudo-tetrahedral geometry, in the case the apical ligands are removed. On refluxing a suspension of [Cu(II)(Pir)(2)(DMF)(2)] in acetone a brown microcystalline solid with the Cu(Pir)(2)·0.5DMF stoichiometry was in fact prepared. (13)C spin-lattice relaxation rates of neutral, zwitterionic and anionic piroxicam, in DMSO solution are explained by the thermal equilibrium between the three most stable structures of the three forms, thus confirming the high quality of the force field. The EPR spectrum of [Cu(II)(Pir)(2)(DMF)(2)] (DMSO/GLY, 2:1, v/v, 298 and 110 K) agrees with a N2O2+O2 pseudo-octahedral coordination geometry. The EPR spectrum of [Cu(II)(Pir)(2)·0.5DMF agrees with a pseudo-tetrahedral coordination geometry. The parameters extracted from the room temperature spectra of the solution phases are in agreement with the data reported for powder and frozen solutions. The extended-Hückel calculations on minimum energy structures of [Cu(II)(Pir)(2)(DMF)(2)] and [Cu(II)(Pir)(2)] (square planar) revealed that the HOMOs have a relevant character of d(x)(2)−y(2). On the other hand the HOMO of a computer generated structure for [Cu(II)(Pir)(2)] (pseudo-tetrahedral) has a relevant character of d(xy) atomic orbital. A d(xy) orbital is better suited to allow a dπ-pπ interaction to the O(2)(-) anion. Therefore this work shows that the anti-inflammatory activity of piroxicam could be due in part to the formation of [Cu(II)(Pir)(2)] chelates, which can exert a SOD-like activity.
format Text
id pubmed-2364950
institution National Center for Biotechnology Information
language English
publishDate 1995
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-23649502008-05-12 Oxygen Radical Scavenger Activity, EPR, NMR, Molecular Mechanics and Extended-Hückel Molecular Orbital Investigation of the Bis(Piroxicam)Copper(II) Complex Cini, Renzo Pogni, Rebecca Basosi, Riccardo Donati, Alessandro Rossi, Claudio Sabadini, Luciano Rollo, Libertario Lorenzini, Sauro Gelli, Renata Marcolongo, Roberto Met Based Drugs Research Article The oxygen radical scavenger activity (ORSA) of [Cu(II)(Pir)(2)] (HPir = Piroxicam = 4-hydroxy -2- methyl -N-2- pyridyl -2H- 1,2-benzothiazine -3- carboxamide 1,1-dioxide) was determined by chemiluminescence of samples obtained by mixing human neutrophils (from healthy subjects) and [Cu(II)(Pir)(2)(DMF)(2)] (DMF = N,N -dimethylformammide) in DMSO/GLY/PBS (2:1:2, v/v) solution (DMSO = dimethylsulfoxide, GLY = 1,2,3-propantriol, PBS = Dulbecco’s buffer salt solution). The ratio of the residual radicals, for the HPir (1.02·10(−4)M) and [Cu(II)(Pir)(2)(DMF)(2)] (1.08·10(−5)M)/HPir (8.01·10−(−5)M) systems was higher than 12 (not stimulated) [excess of piroxicam was added (Cu/Pir molar ratio ≈1:10) in order to have most of the metal complexed as bischelate]. In contrast, the ratio of residual radicals for the CuCl(2) (1.00·10(−5)M) and [Cu(II)(Pir)(2)(DMF)(2)] (1.08·10(−5)M)/Hpir (8.01·10(−5)M)system was 5. The [Cu(II)(Pir)(2)] compound is therefore a stronger radical scavenger than either HPir or CuCl(2). A molecular mechanics (MM) analysis of the gas phase structures of neutral HPir, its zwitterionic (HPir(+-)) and anionic (Pir(-)) forms, and some Cu(II)-piroxicam complexes based on X-ray structures allowed calculation of force constants. The most stable structure for HPir has a ZZZ conformation similar to that found in the Cu(II) (and Cd(II) complexes) in the solid state as well as in the gas phase. The structure is stabilized by a strong H bond which involves the N(amide)-H and O(enolic) groups. The MM simulation for the [Cu(II)(Pir)(2)(DMF)(2)] complex showed that two high repulsive intramolecular contacts exist between a pyridyl hydrogen atom of one Pir(-) molecule with the O donor of the other ligand. These interactions activate a transition toward a pseudo-tetrahedral geometry, in the case the apical ligands are removed. On refluxing a suspension of [Cu(II)(Pir)(2)(DMF)(2)] in acetone a brown microcystalline solid with the Cu(Pir)(2)·0.5DMF stoichiometry was in fact prepared. (13)C spin-lattice relaxation rates of neutral, zwitterionic and anionic piroxicam, in DMSO solution are explained by the thermal equilibrium between the three most stable structures of the three forms, thus confirming the high quality of the force field. The EPR spectrum of [Cu(II)(Pir)(2)(DMF)(2)] (DMSO/GLY, 2:1, v/v, 298 and 110 K) agrees with a N2O2+O2 pseudo-octahedral coordination geometry. The EPR spectrum of [Cu(II)(Pir)(2)·0.5DMF agrees with a pseudo-tetrahedral coordination geometry. The parameters extracted from the room temperature spectra of the solution phases are in agreement with the data reported for powder and frozen solutions. The extended-Hückel calculations on minimum energy structures of [Cu(II)(Pir)(2)(DMF)(2)] and [Cu(II)(Pir)(2)] (square planar) revealed that the HOMOs have a relevant character of d(x)(2)−y(2). On the other hand the HOMO of a computer generated structure for [Cu(II)(Pir)(2)] (pseudo-tetrahedral) has a relevant character of d(xy) atomic orbital. A d(xy) orbital is better suited to allow a dπ-pπ interaction to the O(2)(-) anion. Therefore this work shows that the anti-inflammatory activity of piroxicam could be due in part to the formation of [Cu(II)(Pir)(2)] chelates, which can exert a SOD-like activity. Hindawi Publishing Corporation 1995 /pmc/articles/PMC2364950/ /pubmed/18472745 http://dx.doi.org/10.1155/MBD.1995.43 Text en Copyright © 1995 Hindawi Publishing Corporation. http://creativecommons.org/licenses/by/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Cini, Renzo
Pogni, Rebecca
Basosi, Riccardo
Donati, Alessandro
Rossi, Claudio
Sabadini, Luciano
Rollo, Libertario
Lorenzini, Sauro
Gelli, Renata
Marcolongo, Roberto
Oxygen Radical Scavenger Activity, EPR, NMR, Molecular Mechanics and Extended-Hückel Molecular Orbital Investigation of the Bis(Piroxicam)Copper(II) Complex
title Oxygen Radical Scavenger Activity, EPR, NMR, Molecular Mechanics and Extended-Hückel Molecular Orbital Investigation of the Bis(Piroxicam)Copper(II) Complex
title_full Oxygen Radical Scavenger Activity, EPR, NMR, Molecular Mechanics and Extended-Hückel Molecular Orbital Investigation of the Bis(Piroxicam)Copper(II) Complex
title_fullStr Oxygen Radical Scavenger Activity, EPR, NMR, Molecular Mechanics and Extended-Hückel Molecular Orbital Investigation of the Bis(Piroxicam)Copper(II) Complex
title_full_unstemmed Oxygen Radical Scavenger Activity, EPR, NMR, Molecular Mechanics and Extended-Hückel Molecular Orbital Investigation of the Bis(Piroxicam)Copper(II) Complex
title_short Oxygen Radical Scavenger Activity, EPR, NMR, Molecular Mechanics and Extended-Hückel Molecular Orbital Investigation of the Bis(Piroxicam)Copper(II) Complex
title_sort oxygen radical scavenger activity, epr, nmr, molecular mechanics and extended-hückel molecular orbital investigation of the bis(piroxicam)copper(ii) complex
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2364950/
https://www.ncbi.nlm.nih.gov/pubmed/18472745
http://dx.doi.org/10.1155/MBD.1995.43
work_keys_str_mv AT cinirenzo oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex
AT pognirebecca oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex
AT basosiriccardo oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex
AT donatialessandro oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex
AT rossiclaudio oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex
AT sabadiniluciano oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex
AT rollolibertario oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex
AT lorenzinisauro oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex
AT gellirenata oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex
AT marcolongoroberto oxygenradicalscavengeractivityeprnmrmolecularmechanicsandextendedhuckelmolecularorbitalinvestigationofthebispiroxicamcopperiicomplex