The Experts below are selected from a list of 360 Experts worldwide ranked by ideXlab platform
M. Ruiz - One of the best experts on this subject based on the ideXlab platform.
-
Cinoxacin complexes with divalent metal ions spectroscopic characterization crystal structure of a new dinuclear cd ii complex having two chelate bridging carboxylate groups antibacterial studies
Journal of Inorganic Biochemistry, 1998Co-Authors: M. Ruiz, R. Ortiz, L. Perelló, Juan Servercarrio, Santiago Garciagranda, M R Diaz, E CantonAbstract:Several Cinoxacin (HCx) complexes with divalent metal ions have been prepared and characterized by spectroscopic techniques. The crystal structure of [Cd 2 (Cx) 4 (H 2 O) 2 ] · 10H 2 O has been determined by X-ray diffraction. The complex is triclinic, space group with unit-cell dimensions: a =10.412(2), b =11.119(2), c =13.143(6)A, α=76.78(4)°, β =74.59(3)°, γ =77.12(3)°, V =1406.0(8) A 3 . In this complex each cadmium atom is heptacoordinated; the metal environment is formed by two O keto and two O carbox atoms from two different Cinoxacinate monoanions, two carboxylate oxygen atoms from a third Cinoxacinate ligand and by one water oxygen atom on the seventh position. Two of the Cinoxacinate ions act as tridentate chelate and bridging ligands and the other one as a bidentate chelate ligand. In the bridging monoanions the carboxylate group is behaving as a chelate ligand. All the complexes were screened for their activity against several bacteria, showing activity similar to that of Cinoxacin. Additionally, the number of bacteria killed after 3 h of incubation with Cinoxacin, [Cu(Cx) 2 ] · 2H 2 O and [Co(Cx) 3 ]Na · 10H 2 O complexes was determined against E. coli ATCC 25922; the copper compound presents paradoxical effect which has been described and related to the mechanism of action of quinolones.
-
Potentiometric and spectroscopic studies of transition-metal ions complexes with a quinolone derivative (Cinoxacin). Crystal structures of new Cu(II) and Ni(II) Cinoxacin complexes
Journal of Inorganic Biochemistry, 1997Co-Authors: M. Ruiz, R. Ortiz, L. Perelló, Julio Latorre, Juan Server-carrióAbstract:Abstract The interaction of cobalt(II), nickel(II), copper(II), and zinc(II) with Cinoxacin (HCx = 1-ethyl-1,4-dihydro-4-oxo(1,3)dioxolo(4,5-g)cinnoline-3-carboxylic acid), a 4-quinolone derivative, has been studied at metal/ligand ratios of 1:1-1:3 by means of pH-metric, spectrophotometric, and ESR methods. The formation constants have been determined and the stereochemistry for the metal ions in the species present in aqueous solutions (at 37 ± 0.1°C and I = 0.1 mol dm −3 NaCl) is discussed. In all the studied systems, complexes with different stoichiometric ratios, in which Cinoxacin acts both as neutral and deprotonated ligand, are formed. The anomalous sequence of the stepwise stability constants observed for cobalt(II) and nickel(II) systems suggests changes in stereochemistry when CoCx 2 and NiCx 2 are formed. For zinc(II) this change has to be still more pronounced since a [ZnCx] + species has not been detected. For the Cu(II) system the sequence in the stepwise stability constants indicates the preferential formation of the [CuCx] + monocomplex. The crystal and molecular structure of new Cu(II) and Ni(II) complexes of Cinoxacin have been investigated. The metal ion in [Cu(Cx) 2 H 2 O]·3H 2 O is five-coordinated and the complex crystallizes in the triclinic P 1 space group with a = 10.620(1), b = 11.358(1), c = 12.440(2) A , α = 78.25(1), β = 80.24(1), γ = 63.34(1)°, and Z = 2 . The complex [Ni(Cx) 2 -(DMSO) 2 ]·4H 2 O contains six-coordinated Ni(II) and crystallizes in the triclinic P 1 space group with a = 8.866(3), b = 9.141(1), c = 11.580(1) A , α = 69.301(9), β = 82.17(2), γ = 75.86(2)°, and Z = 1 .
V Di Stefano - One of the best experts on this subject based on the ideXlab platform.
-
comparative in vitro evaluation of cumulative release of the urinary antiseptics nalidixic acid pipemidic acid Cinoxacin and norfloxacin from white beeswax microspheres
Drug Development and Industrial Pharmacy, 1994Co-Authors: Libero Italo Giannola, V De Caro, V Di StefanoAbstract:AbstractThe in vitro diffusion of nalidixic acid (1), pipemidic acid (2), Cinoxacin (3), and norfloxacin (4) was studied. The transfer rate constants (kd) from simulated gastro-intestinal juices to simulated plasma, throughout artificial wall lipid membranes, were defined. The kd values suggested that the four drugs are absorbed both in gastric and intestinal environments in similar amounts. To obtain lack of gastric unwanted effects white beeswax microspheres containing 1, 2, 3, and 4 were investigated as a vehicle for the drug intestinal release; they were prepared by the meltable dispersion process using wetting agents. Discrete, reproducible free flowing microspheres were obtained. The drug content increased when the particle size growed; it ranged from 4% to 18%. More than 95% of the isolated microspheres were of particle size range 100–500 μm. The drug release was evaluated in vitro. Dissolution of entrapped active ingredients was greatly retarded allowing absorption only in the intestinal tract as ...
Zábojníková Tereza - One of the best experts on this subject based on the ideXlab platform.
-
Combined QM/MM decsription of interaction of Ru(II) 'piano-stool' organometallic complexes with oligomer models of DNA
Univerzita Karlova Matematicko-fyzikální fakulta, 2012Co-Authors: Zábojníková TerezaAbstract:Tato práce se zabývá hydratací čtyř organokovvých léčiv na bázi 'piano-stool' Ru(II) struktury. Jedná se o nalidixovou kyselinu, thio-nalidixovou kyselinu, ofloxacin a Cinoxacin. U všech čtyř komplexů byly spočteny termodynamické parametry 3 možných reakcí s vodou. Jelikož se jedná o kyseliny, byly reakce zkoumány pro protonované i deprotonované struktry, aby byla získána představa o chování v kyselém i neutrálním prostředí. Optimalizace byla provedena metodou hustotního funkcionálu B3PW91 v bázi 6-31+G*. Následně byla spočtena energie zoptimalizovaných struktur v bázi 6-311++G(2df,2pd)metodou B3LYP a byla provedena NPA analýza za účelem zjištění parciálních nábojů.This work is focused on 4 organometalic drugs with "piano-stool" Ru(II) structure: these complexes are: nalidixic acid, thio-nalidixic acid, ofloxacin and Cinoxacin. Thermodynamic parameters of three type of reactions with water were analyzed for each of these four complexes. All complexes were examined in both protonated and deprotonated state, since all of these complexes are acids and they behave differently in acidic and neutral enviroment. Optimalization was performed using DFT method B3PW91 in basis 6-31+G*. Energies were calculated in basis 6-311++G(2df,2pd) using DFT method B3LYP and NPA analysis was performed for finding partial charges on atoms.Department of Chemical Physics and OpticsKatedra chemické fyziky a optikyFaculty of Mathematics and PhysicsMatematicko-fyzikální fakult
-
Combined QM/MM decsription of interaction of Ru(II) 'piano-stool' organometallic complexes with oligomer models of DNA
2012Co-Authors: Zábojníková TerezaAbstract:This work is focused on 4 organometalic drugs with "piano-stool" Ru(II) structure: these complexes are: nalidixic acid, thio-nalidixic acid, ofloxacin and Cinoxacin. Thermodynamic parameters of three type of reactions with water were analyzed for each of these four complexes. All complexes were examined in both protonated and deprotonated state, since all of these complexes are acids and they behave differently in acidic and neutral enviroment. Optimalization was performed using DFT method B3PW91 in basis 6-31+G*. Energies were calculated in basis 6-311++G(2df,2pd) using DFT method B3LYP and NPA analysis was performed for finding partial charges on atoms
Juan Server-carrió - One of the best experts on this subject based on the ideXlab platform.
-
Potentiometric and spectroscopic studies of transition-metal ions complexes with a quinolone derivative (Cinoxacin). Crystal structures of new Cu(II) and Ni(II) Cinoxacin complexes
Journal of Inorganic Biochemistry, 1997Co-Authors: M. Ruiz, R. Ortiz, L. Perelló, Julio Latorre, Juan Server-carrióAbstract:Abstract The interaction of cobalt(II), nickel(II), copper(II), and zinc(II) with Cinoxacin (HCx = 1-ethyl-1,4-dihydro-4-oxo(1,3)dioxolo(4,5-g)cinnoline-3-carboxylic acid), a 4-quinolone derivative, has been studied at metal/ligand ratios of 1:1-1:3 by means of pH-metric, spectrophotometric, and ESR methods. The formation constants have been determined and the stereochemistry for the metal ions in the species present in aqueous solutions (at 37 ± 0.1°C and I = 0.1 mol dm −3 NaCl) is discussed. In all the studied systems, complexes with different stoichiometric ratios, in which Cinoxacin acts both as neutral and deprotonated ligand, are formed. The anomalous sequence of the stepwise stability constants observed for cobalt(II) and nickel(II) systems suggests changes in stereochemistry when CoCx 2 and NiCx 2 are formed. For zinc(II) this change has to be still more pronounced since a [ZnCx] + species has not been detected. For the Cu(II) system the sequence in the stepwise stability constants indicates the preferential formation of the [CuCx] + monocomplex. The crystal and molecular structure of new Cu(II) and Ni(II) complexes of Cinoxacin have been investigated. The metal ion in [Cu(Cx) 2 H 2 O]·3H 2 O is five-coordinated and the complex crystallizes in the triclinic P 1 space group with a = 10.620(1), b = 11.358(1), c = 12.440(2) A , α = 78.25(1), β = 80.24(1), γ = 63.34(1)°, and Z = 2 . The complex [Ni(Cx) 2 -(DMSO) 2 ]·4H 2 O contains six-coordinated Ni(II) and crystallizes in the triclinic P 1 space group with a = 8.866(3), b = 9.141(1), c = 11.580(1) A , α = 69.301(9), β = 82.17(2), γ = 75.86(2)°, and Z = 1 .
R. Ortiz - One of the best experts on this subject based on the ideXlab platform.
-
Cinoxacin complexes with divalent metal ions spectroscopic characterization crystal structure of a new dinuclear cd ii complex having two chelate bridging carboxylate groups antibacterial studies
Journal of Inorganic Biochemistry, 1998Co-Authors: M. Ruiz, R. Ortiz, L. Perelló, Juan Servercarrio, Santiago Garciagranda, M R Diaz, E CantonAbstract:Several Cinoxacin (HCx) complexes with divalent metal ions have been prepared and characterized by spectroscopic techniques. The crystal structure of [Cd 2 (Cx) 4 (H 2 O) 2 ] · 10H 2 O has been determined by X-ray diffraction. The complex is triclinic, space group with unit-cell dimensions: a =10.412(2), b =11.119(2), c =13.143(6)A, α=76.78(4)°, β =74.59(3)°, γ =77.12(3)°, V =1406.0(8) A 3 . In this complex each cadmium atom is heptacoordinated; the metal environment is formed by two O keto and two O carbox atoms from two different Cinoxacinate monoanions, two carboxylate oxygen atoms from a third Cinoxacinate ligand and by one water oxygen atom on the seventh position. Two of the Cinoxacinate ions act as tridentate chelate and bridging ligands and the other one as a bidentate chelate ligand. In the bridging monoanions the carboxylate group is behaving as a chelate ligand. All the complexes were screened for their activity against several bacteria, showing activity similar to that of Cinoxacin. Additionally, the number of bacteria killed after 3 h of incubation with Cinoxacin, [Cu(Cx) 2 ] · 2H 2 O and [Co(Cx) 3 ]Na · 10H 2 O complexes was determined against E. coli ATCC 25922; the copper compound presents paradoxical effect which has been described and related to the mechanism of action of quinolones.
-
Potentiometric and spectroscopic studies of transition-metal ions complexes with a quinolone derivative (Cinoxacin). Crystal structures of new Cu(II) and Ni(II) Cinoxacin complexes
Journal of Inorganic Biochemistry, 1997Co-Authors: M. Ruiz, R. Ortiz, L. Perelló, Julio Latorre, Juan Server-carrióAbstract:Abstract The interaction of cobalt(II), nickel(II), copper(II), and zinc(II) with Cinoxacin (HCx = 1-ethyl-1,4-dihydro-4-oxo(1,3)dioxolo(4,5-g)cinnoline-3-carboxylic acid), a 4-quinolone derivative, has been studied at metal/ligand ratios of 1:1-1:3 by means of pH-metric, spectrophotometric, and ESR methods. The formation constants have been determined and the stereochemistry for the metal ions in the species present in aqueous solutions (at 37 ± 0.1°C and I = 0.1 mol dm −3 NaCl) is discussed. In all the studied systems, complexes with different stoichiometric ratios, in which Cinoxacin acts both as neutral and deprotonated ligand, are formed. The anomalous sequence of the stepwise stability constants observed for cobalt(II) and nickel(II) systems suggests changes in stereochemistry when CoCx 2 and NiCx 2 are formed. For zinc(II) this change has to be still more pronounced since a [ZnCx] + species has not been detected. For the Cu(II) system the sequence in the stepwise stability constants indicates the preferential formation of the [CuCx] + monocomplex. The crystal and molecular structure of new Cu(II) and Ni(II) complexes of Cinoxacin have been investigated. The metal ion in [Cu(Cx) 2 H 2 O]·3H 2 O is five-coordinated and the complex crystallizes in the triclinic P 1 space group with a = 10.620(1), b = 11.358(1), c = 12.440(2) A , α = 78.25(1), β = 80.24(1), γ = 63.34(1)°, and Z = 2 . The complex [Ni(Cx) 2 -(DMSO) 2 ]·4H 2 O contains six-coordinated Ni(II) and crystallizes in the triclinic P 1 space group with a = 8.866(3), b = 9.141(1), c = 11.580(1) A , α = 69.301(9), β = 82.17(2), γ = 75.86(2)°, and Z = 1 .