Search results for "N-oxides"

showing 10 items of 30 documents

ESR study of the liposome membrane physical parameters in the heating-cooling cycles.

1998

Abstract Changes of dynamic and structural parameters of egg yolk lecithin (EYL) liposome mem­branes in the heating-cooling cycles have been studied using the E S R spin probe method. The investigations were conducted in the range of temperatures from -18 °C to +60 °C. It has been found that in the range of temperatures -15 °C to +45 °C in both the heating and the cooling run the spectroscopic parameters changed practically along the same curve (re­versible changes). However, after exceeding this range of temperatures one of the parameters (partition coefficient of the spin probe 2,2,6,6 -tetramethylpiperidine -1-oxyl; TEMPO) changed along a closed curve, showing the phenomenon of thermal h…

Range (particle radiation)Liposomefood.ingredientMaterials scienceHot TemperatureAnalytical chemistryElectron Spin Resonance SpectroscopyActive surfaceLecithinEgg YolkGeneral Biochemistry Genetics and Molecular BiologySpin probePartition coefficientCold TemperatureCyclic N-OxidesfoodMembraneLiposomesPhosphatidylcholinesMoleculeThermodynamicsSpin LabelsZeitschrift fur Naturforschung. C, Journal of biosciences
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Host–guest complexes of conformationally flexible C-hexyl-2-bromoresorcinarene and aromatic N-oxides: solid-state, solution and computational studies

2018

Host–guest complexes of C-hexyl-2-bromoresorcinarene (BrC6) with twelve potential aromatic N-oxide guests were studied using single crystal X-ray diffraction analysis and 1H NMR spectroscopy. In the solid state, of the nine obtained X-ray crystal structures, eight were consistent with the formation of BrC6-N-oxide endo complexes. The lone exception was from the association between 4-phenylpyridine N-oxide and BrC6, in that case the host forms a self-inclusion complex. BrC6, as opposed to more rigid previously studied C-ethyl-2-bromoresorcinarene and C-propyl-2-bromoresorcinarene, undergoes remarkable cavity conformational changes to host different N-oxide guests through C–H···π(host) intera…

Solid-stateCrystal structure010402 general chemistry01 natural scienceslcsh:QD241-441lcsh:Organic chemistryPolarizabilitysupramolekulaarinen kemiaresorcinareneshost–guest chemistryHost–guest chemistrylcsh:Scienceta116Biochemistry Biophysics and Structural BiologyC–H···π Interactions010405 organic chemistryChemistryOrganic Chemistryendo/exo complexationSolution phaseditopic receptors0104 chemical sciencesaromatic N-oxidesChemistryCrystallographyProton NMRPolarlcsh:QSingle crystalBeilstein Journal of Organic Chemistry
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Inclusion complexes of Cethyl-2-methylresorcinarene and pyridine N-oxides: breaking the C–I⋯−O–N+ halogen bond by host–guest complexation

2016

C ethyl-2-Methylresorcinarene forms host–guest complexes with aromatic N-oxides through multiple intra- and intermolecular hydrogen bonds and C–H⋯π interactions. The host shows conformational flexibility to accommodate 3-methylpyridine N-oxide, while retaining a crown conformation for 2-methyl- and 4-methoxypyridine N-oxides highlighting the substituent effect of the guest. N-Methylmorpholine N-oxide, a 6-membered ring aliphatic N-oxide with a methyl at the N-oxide nitrogen, is bound by the equatorial −N–CH3 group located deep in the cavity. 2-Iodopyridine N-oxide is the only guest that manifests intermolecular N–O⋯I–C halogen bond interactions, which are broken down by the host resulting i…

StereochemistrySubstituentmacromolecular substancesCrystal structure010402 general chemistryRing (chemistry)01 natural sciencespyridine N-oxideschemistry.chemical_compoundPyridineWATERGeneral Materials ScienceCRYSTAL-STRUCTURESta116Cethyl-2-methylresorcinareneCOORDINATIONHalogen bondPACKINGta114010405 organic chemistryHydrogen bondIntermolecular forceRECOGNITIONGeneral ChemistryETHYL RESORCINARENECondensed Matter PhysicsMETHYLRESORCINARENE0104 chemical sciencesCrystallographySOLID-STATEchemistryhost–guest complexationMETALMOLECULAR CAPSULEShalogen bondSingle crystalCrystEngComm
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Ascorbic Acid Oxidation in Sucrose Aqueous Model Systems at Subzero Temperatures

2004

The reduction of Tempol by ascorbic acid in concentrated sucrose solutions was measured by electron paramagnetic resonance (EPR) at temperatures ranging from 16 to −16 °C. This method allowed the determination of the rate constants (k) of this fast reaction, by recording the Tempol reduction as a function of time. The two reactants were initially separated and had to migrate for the reaction to occur. The experimental findings were compared with predicted values according to the equation for diffusion-controlled reaction proposed by Atkins. The experimental reaction rate constants were observed to be lower than the calculated ones. However, the experimental values were found to be controlle…

SucroseSucroseReactionDiffusionAnalytical chemistryAscorbic Acid010402 general chemistry01 natural scienceslaw.inventionCyclic N-OxidesReaction rate[SPI]Engineering Sciences [physics]chemistry.chemical_compoundViscosityReaction rate constantlawFreezing0103 physical sciencesVitamin CElectron paramagnetic resonanceAqueous solution010304 chemical physicsdiffusionElectron Spin Resonance SpectroscopyTemperatureWaterTempolNegative temperaturesGeneral ChemistryAscorbic acid0104 chemical sciencesSolutionsKineticschemistryBiochemistrySpin LabelsElectron paramagnetic resonanceGeneral Agricultural and Biological SciencesOxidation-ReductionCryoconcentrationJournal of Agricultural and Food Chemistry
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Tin compounds interaction with membranes of egg lecithin liposomes.

2007

This work is a continuation of earlier research concerning the influence of tin compounds on the dynamic properties of liposome membranes produced with lecithin hen egg yolks (EYL). The experiments were carried out at room temperature (about 25 ∞C). Four tin compounds were chosen, including three organic ones, (CH3)4Sn, (C2H5)4Sn and (C3H7)3SnCl, and one inorganic, SnCl2. The investigated compounds were admixed to water dispersions of liposomes. The content of the admixture changed within the range 0 mol-% to 11mol-% in proportion to EYL. Two spin probes were used in the experiment: 2,2,6,6-tetramethylpiperidine- 1-oxyl (TEMPO) and 2-ethyl-2-(15-methoxy-15-oxopentadecyl)-4,4-dimethyl-3-oxaz…

chemistry.chemical_classificationEgg lecithinLiposomefood.ingredientChromatographyIonic bondingchemistry.chemical_elementLecithinEgg YolkGeneral Biochemistry Genetics and Molecular BiologyCyclic N-Oxideschemistry.chemical_compoundfoodMembraneHydrocarbonchemistryLiposomesChlorinePhosphatidylcholinesAnimalsFemaleSpin LabelsTinChickensNuclear chemistryZeitschrift fur Naturforschung. C, Journal of biosciences
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Bimodal Effect of Amphiphilic Biocide Concentrations on Fluidity of Lipid Membranes

1996

Abstract Using the spin label method (ESR) it has been shown that biologically active, amphiphilic compounds (quaternary ammonium salts -AS) containing polar heads with single and double positive charge caused, at low concentrations, decrease fluidity of liposome membranes formed with egg yolk lecithin (EYL). At higher concentrations an increase in fluidity was observed. With compounds having a single positive charge minimum fluidity of membrane structure occurs in the range of 1 to 3%, with compounds containing double positive charge -in the range of 4 -6 % . That effect does not depend on polar head size and length of alkyl chains of the AS used. Analysis of the electrostatic interaction …

chemistry.chemical_classificationLiposomefood.ingredientMembrane FluidityBinding energyInorganic chemistryElectron Spin Resonance SpectroscopyEgg YolkModels BiologicalLecithinGeneral Biochemistry Genetics and Molecular BiologyDivalentCyclic N-OxidesQuaternary Ammonium CompoundsMembranefoodchemistryBiochemistryLiposomesPhosphatidylcholinesMembrane fluiditySpin LabelsUltrasonicsSpin labelAlkylZeitschrift für Naturforschung C
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Host-guest complexes of C-propyl-2-bromoresorcinarene with aromatic N-oxides*

2018

The host-guest complexes of C-propyl-2-bromoresorcinarene with pyridine N-oxide, 3-methylpyridine N-oxide, quinoline N-oxide and isoquinoline N-oxide are studied using single crystal X-ray crystallography and 1H NMR spectroscopy. The C-propyl-2-bromoresorcinarene forms endo-complexes with the aromatic N-oxides in the solid-state when crystallised from either methanol or acetone. In solution, the endo-complexes were observed only in methanol-d4. In DMSO the solvent itself is a good guest, and crystallisation provides only solvate endo-complexes. The C-propyl-2-bromoresorcinarene shows remarkable flexibility when crystallised from either methanol or acetone, and packs into one-dimensional sel…

crystal structurekemiaSupramolecular chemistryCrystal structurechemistry010402 general chemistry01 natural scienceschemistry.chemical_compoundPolymer chemistryPyridinecrystalssupramolekulaarinen kemiaAcetoneresorcinarenesmoleculesIsoquinolineta116Biochemistry Biophysics and Structural Biologyvetysidoksetta114010405 organic chemistryHydrogen bondQuinolinemolekyylitGeneral Chemistrykiteet0104 chemical sciencesaromatic N-oxidesSolventChemistrychemistryvetyhydrogenhydrogen bondsSupramolecular chemistrySUPRAMOLECULAR CHEMISTRY
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Liposomes modified by mono- and bis-phthalocyanines: A comprehensive EPR study.

2016

The impact of selected metallophthalocyanines, featuring diverse molecular structure, upon the fluidity of liposome membranes was studied using the spin label EPR technique. The “mono”-type MPc’s (M = Zn, Sn; Pc = C32H16N8 is the phthalocyanine ligand) and sandwich LnPc2 complexes (Ln = Nd, Sm, Gd) were explored. Liposomes were obtained in a sonication process, from egg yolk lecithin (EYL) in water. TEMPO and 16-DOXYL spin labels were used to monitor the peripheral and central part of the lipid double layer, respectively, which allowed to localize the phthalocyanine additive within the bilayer, as well as to perform independent measurements of changes in fluidity upon addition thereof. All …

food.ingredientBiophysics02 engineering and technologyLecithinlaw.inventionCyclic N-Oxides03 medical and health scienceschemistry.chemical_compoundSonication0302 clinical medicineNuclear magnetic resonancefoodlawLecithinsOrganometallic CompoundsGeneral Materials ScienceLipid bilayerElectron paramagnetic resonanceSpin labelLiposomeChemistryLiquid crystalsBilayerElectron Spin Resonance SpectroscopySurfaces and InterfacesGeneral Chemistry021001 nanoscience & nanotechnologyCrystallographyMembraneSoft Matter030220 oncology & carcinogenesisLiposomesPhthalocyanine0210 nano-technologyBiotechnologyThe European physical journal. E, Soft matter
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CHF2819: Pharmacological profile of a novel acetylcholinesterase inhibitor

2002

CHF2819 is a novel orally active acetylcholinesterase inhibitor (AChEI) developed for the treatment of Alzheimer's disease (AD). CHF2819 is a selective inhibitor of AChE, it is 115 times more potent against this enzyme than against butyrylcholinesterase (BuChE). Moreover, CHF2819 is more selective for inhibition of central (brain) AChE than peripheral (heart) AChE. In vivo CHF2819, 0.5, 1.5, and 4.5 mg/kg p.o., significantly and in dose-dependent manner increased acetylcholine (ACh) levels in hippocampus of young adult rats. Moreover, aging animals, with lower basal ACh levels than young adult rats, also exhibit a marked increase in hippocampal levels of this neurotransmitter after administ…

medicine.medical_specialtymedicine.drug_classPhenylcarbamatesPharmacologyHippocampusArticleCyclic N-Oxideschemistry.chemical_compoundNeurochemicalAlzheimer DiseaseDopamineInternal medicinemedicineAnimalsBiogenic MonoaminesAmino AcidsNeurotransmitterButyrylcholinesteraseCholinesterasePharmacologybiologybusiness.industryGlutamate receptoracetylcholinesterase inhibitors; alzheimer's disease; amino acids; chf2819; ganstigmine; neurotransmitters; rat hippocampusAcetylcholineRatsNeuropsychology and Physiological PsychologyEndocrinologyAcetylcholinesterase inhibitorchemistrybiology.proteinCarbamatesCholinesterase InhibitorsbusinessAcetylcholinemedicine.drug
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Halogen-Bonded Co-Crystals of Aromatic N-oxides : Polydentate Acceptors for Halogen and Hydrogen Bonds

2017

The C-ethyl-2-methylresorcinarene (1) forms 1:1 in-cavity complexes with aromatic N,N′-dioxides, only if each of the aromatic rings has an N−O group. The structurally different C-shaped 2,2′-bipyridine N,N′-dioxide (2,2′-BiPyNO) and the linear rod-shaped 4,4′-bipyridine N,N′-dioxide (4,4′-BiPyNO) both form 1:1 in-cavity complexes with the host resorcinarene in C4v crown and C2v conformations, respectively. In the solid state, the host–guest interactions between the 1,3-bis(4-pyridyl)propane N,N′-dioxide (BiPyPNO) and the host 1 stabilize the unfavorable anti-gauche conformation. Contrary to the N,N′-dioxide guests, the mono-N-oxide guest, 4-phenylpyridine N-oxide (4PhPyNO), does not form an…

polydentateDenticityGeneral Chemical EngineeringcooperativityInorganic chemistryCooperativity010402 general chemistry01 natural sciencesInorganic Chemistrychemistry.chemical_compounddiiodoperfluoroalkanesPyridinelcsh:QD901-999General Materials ScienceC−H···O interactionsta116hydrogen bondN−O groupHalogen bondvetysidokset010405 organic chemistryChemistryHydrogen bondH···O interactionsperfluoroalkylCondensed Matter Physicshalogen bond; hydrogen bond; aromatic N-oxides; perfluoroalkyl; diiodoperfluoroalkanes; polydentate; N−O group; cooperativity; C−H···O interactionsAcceptor0104 chemical sciencesaromatic N-oxidesCrystallographyHalogenorgaaninen kemiahalogen bondlcsh:CrystallographySingle crystalC−röntgenkristallografia
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