Search results for "choline"

showing 10 items of 1138 documents

Investigation of Temperature-Induced Phase Transitions in DOPC and DPPC Phospholipid Bilayers Using Temperature-Controlled Scanning Force Microscopy

2004

Under physiological conditions, multicomponent biological membranes undergo structural changes which help define how the membrane functions. An understanding of biomembrane structure-function relations can be based on knowledge of the physical and chemical properties of pure phospholipid bilayers. Here, we have investigated phase transitions in dipalmitoylphosphatidylcholine (DPPC) and dioleoylphosphatidylcholine (DOPC) bilayers. We demonstrated the existence of several phase transitions in DPPC and DOPC mica-supported bilayers by both atomic force microscopy imaging and force measurements. Supported DPPC bilayers show a broad L(beta)-L(alpha) transition. In addition to the main transition …

Steric effectsPhase transition12-DipalmitoylphosphatidylcholineBiophysicsPhospholipid02 engineering and technologyMicroscopy Atomic Force010402 general chemistry01 natural sciencesPhase TransitionQuantitative Biology::Subcellular Processeschemistry.chemical_compoundTransition TemperaturePhospholipidsPhysics::Biological PhysicsMembranesBilayerTransition temperaturedigestive oral and skin physiologyBiological membrane021001 nanoscience & nanotechnology0104 chemical sciencesCondensed Matter::Soft Condensed MatterCrystallographyMembranechemistryChemical physicsDipalmitoylphosphatidylcholineAluminum Silicateslipids (amino acids peptides and proteins)0210 nano-technologyBiophysical Journal
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Influence of surface chemistry on the structural organization of monomolecular protein layers adsorbed to functionalized aqueous interfaces.

1993

The molecular organization of streptavidin (SA) bound to aqueous surface monolayers of biotin-functionalized lipids and binary lipid mixtures has been investigated with neutron reflectivity and electron and fluorescence microscopy. The substitution of deuterons (2H) for protons (1H), both in subphase water molecules and in the alkyl chains of the lipid surface monolayer, was utilized to determine the interface structure on the molecular length scale. In all cases studied, the protein forms monomolecular layers underneath the interface with thickness values of approximately 40 A. A systematic dependence of the structural properties of such self-assembled SA monolayers on the surface chemistr…

StreptavidinSurface PropertiesAnalytical chemistrySynthetic membraneBiophysicsBiophysical Phenomenachemistry.chemical_compoundAdsorptionBacterial ProteinsMonolayerMoietyMoleculeAlkylchemistry.chemical_classificationNeutronsAqueous solutionChemistryPhosphatidylethanolaminesProteinsWaterMembranes ArtificialLipidsCrystallographyMicroscopy ElectronCholesterolMicroscopy FluorescenceModels ChemicalAdsorptionStreptavidinDimyristoylphosphatidylcholineResearch ArticleBiophysical journal
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Functionalized lipid tubules as tools for helical crystallization of proteins

1997

The development of functional supramolecular devices built by self-assembly of elementary molecules and with bioactive properties arouses considerable interest in the field of nanotechnology and new materials. We report here the formation of a new class of lipid tubules exhibiting both properties of molecular recognition and crystal formation for the protein streptavidin. These lipid tubules, made of biotin-containing dioctadecylamine molecules, are straight hollow cylinders with a constant diameter of 27 nm and variable length up to several micrometers. They are unilamellar with an inner diameter of about 16 nm, as shown by cryoelectron microscopy. Streptavidin binds to the biotinylated tu…

StreptavidinliposomesSupramolecular chemistryTWO-DIMENSIONAL CRYSTALSMEMBRANESCatalysisACETYLCHOLINE-RECEPTORVESICLESlipidschemistry.chemical_compoundTOXIN B-SUBUNITMolecular recognition2-DIMENSIONAL CRYSTALLIZATIONELECTRON-MICROSCOPYLiposomeChemistryVesicleOrganic Chemistrytechnology industry and agricultureCHOLERA-TOXINGeneral ChemistryCrystallographyMembranehelical structuresRESOLUTIONBiotinylationSelf-assemblyself-assembly tubulesMICROSTRUCTURESChemistry – A European Journal
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Fluorescence microscopy studies of layer/substrate interaction during the Langmuir-Blodgett transfer: Fractional condensation and local layer modific…

1991

Transfer fluorescence microscopy reveals the substrate-mediated fractional condensation and phase-selective deposition of dipalmitoylphosphatidylcholine (DPPC) and dimyristoylphosphatidylethanolamine (DMPE) monolayers during the LB-transfer. Preferentially the higher ordered liquid-condensed (LC) state is transferred onto the substrate during the transfer of a monolayer in the LC/LE (liquid/expanded) coexistence state on the water subphase. This is manifested in the directly observable attraction of LC-domains towards the three-phase line and observation of a domain-free gap as consequence of the segregation of the fluorescent probe into the floating monolayer adjacent to the three-phase li…

Substrate InteractionPolymers and PlasticsChemistryOrganic ChemistryCondensationAnalytical chemistrySubstrate (chemistry)Condensed Matter PhysicsLangmuir–Blodgett filmchemistry.chemical_compoundPhase (matter)DipalmitoylphosphatidylcholineMonolayerMaterials ChemistryLayer (electronics)Makromolekulare Chemie. Macromolecular Symposia
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Freezing without surrounding cryomedium preserves the endothelium and its function in human internal mammary arteries

2005

Abstract Purpose Cryopreserved human blood vessels may become important tools in bypass surgery. Optimal cryopreservation of an arterial graft should, therefore, preserve both histological and physiological characteristics of smooth muscle and endothelium comparable to the unfrozen artery. Methods Rings from human internal mammary arteries (IMA) were investigated in vitro either unfrozen or after immersion into a cryomedium (RPMI 1640 containing 1.8 M Me2SO and 0.1 M sucrose) and cryostorage with and without surrounding medium. Results In unfrozen IMA, neither contractile responses to noradrenaline (NA) nor endothelium-dependent relaxant responses to acetylcholine (ACH) was modified after e…

SucrosePathologymedicine.medical_specialtyEndotheliumBiologyGeneral Biochemistry Genetics and Molecular BiologyCryopreservationAndrologyNorepinephrinechemistry.chemical_compoundCryoprotective AgentsFreezingmedicineHumansDimethyl SulfoxideEndotheliumMammary ArteriesPhorbol 1213-DibutyrateProtein Kinase CProtein kinase CCryopreservationDose-Response Relationship DrugDimethyl sulfoxideTemperatureMuscle SmoothGeneral MedicineAcetylcholineCulture MediaCold TemperatureEnzyme ActivationMicroscopy ElectronDose–response relationshipmedicine.anatomical_structurechemistryCarcinogensMicroscopy Electron ScanningMammary arteryEndothelium VascularTissue PreservationGeneral Agricultural and Biological SciencesAcetylcholinemedicine.drugArteryCryobiology
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Influence of the electrical interface properties on the rheological behavior of sonicated soy lecithin dispersions

2006

A significant effect, on the rheological behavior, due to the electrical properties of vesicles formed from concentrated soy lecithin dispersions have been studied in this work. The rheopectic behavior of concentrated soy lecithin dispersions (120, 150, 180, 210 and 240 g L−1) prepared by swelling–light sonication–freezing–unfreezing procedure is studied and it is specially emphasized on the transition under steady shear from lamellar phase of planar sheets to closed structures as multilamellar vesicles. Samples have been exposed to a different number of sonication cycles (from 0 to 100) and the changes in the hysteresis loop area, the apparent viscosity and the electrophoretic mobility hav…

Surface PropertiesSonicationAnalytical chemistryLECITINAVESICULASVESICLESBiomaterialsSonicationViscosityColloid and Surface ChemistryRHEOLOGYLamellar phaseRheologyZeta potentialLECITHINVISCOSIDADViscosityChemistryVesicleApparent viscositySurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsChemical engineeringVolume fractionPhosphatidylcholinesSoybeansRheologyVISCOSITYJournal of Colloid and Interface Science
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Anomalous surface diffusion of protons on lipid membranes.

2014

AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the vicinity of lipid membranes. To asses the energetics and mobility of a proton near a membrane, we simulated an excess proton near a solvated DMPC bilayer at 323 K, using a recently developed method to include the Grotthuss proton shuttling mechanism in classical molecular dynamics simulations. We obtained a proton surface affinity of −13.0 ± 0.5 kJ mol−1. The proton interacted strongly with both lipid headgroup and linker carbonyl oxygens. Furthermore, the surface diffusion of the proton was anomalous, with a subdiffusive regime over the first few nanoseconds, followed by a superdiffusive re…

Surface diffusionPhysics::Biological PhysicsProtonChemistryBilayerLipid BilayersBiophysicsDiffusionQuantitative Biology::Subcellular ProcessesMolecular dynamicsCrystallographymolecular-dynamics simulationsMembraneDiffusion processChemical physicsphosphatidylcholine bilayersRestricted DiffusionChannels and TransportersProtonsDiffusion (business)Dimyristoylphosphatidylcholineta116
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Transcutol containing vesicles for topical delivery of minoxidil

2010

The aim of this work was to evaluate the ability of Transcutol (Trc) to produce elastic vesicles with soy lecithin (SL) and study the influence of the obtained vesicles on in vitro (trans)dermal delivery of minoxidil. To this purpose, so-called penetration enhancer-containing vesicles (PEVs) were prepared using Trc aqueous solutions (5-10-20-30% v/v) as hydrophilic phase. SL liposomes, without Trc, were used as control. Prepared formulations were characterized in terms of size distribution, morphology, zeta potential, deformability, and rheological behavior. The influence of the obtained PEVs on (trans)dermal delivery of minoxidil was studied by in vitro diffusion experiments through pig sk…

SwineStereochemistryVasodilator AgentsPharmaceutical ScienceAdministration CutaneousDiffusionExcipientschemistry.chemical_compoundDrug Delivery SystemsDrug Stabilitystomatognathic systemPhosphatidylcholineLecithinsZeta potentialmedicineAnimalsParticle SizeMicroparticleSkinDrug CarriersLiposomeAqueous solutionChromatographyChemistryVesiclefungiPenetration (firestop)MinoxidilLiposomesMinoxidilEthylene Glycolsmedicine.drugJournal of Drug Targeting
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A muscarinic mechanism inhibiting the release of noradrenaline from peripheral adrenergic nerve fibres by nicotinic agents.

1968

SympathomimeticsMalemedicine.medical_specialtySympathetic nervous systemSympathetic Nervous SystemReceptors DrugGuinea PigsAdrenergicParasympathomimeticsPharmacologyPiperazinesNorepinephrine (medication)NorepinephrineHeart Conduction SystemInternal medicineMuscarinic acetylcholine receptormedicineAnimalsHeart AtriaSympathomimeticsDrug AntagonismChemistryGeneral MedicinePeripheralPerfusionmedicine.anatomical_structureEndocrinologyParasympathomimeticsFemaleRabbitsDrug Antagonismmedicine.drugResearch Article
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Recent progress in understanding cholinergic function at the cellular and molecular levels

1992

Cholinergic transmission can claim to be the first form of chemical neurotransmission to be investigated by pharmacological and electrophysiological methods and the first in which both the transmitter and its receptor have been isolated and characterized. One reason for this is that neuromuscular transmission is cholinergic and the neuromuscular junction (especially that of frogs) is a readily investigated synapse in which responses are recorded by a muscular twitch — something which can be appreciated by direct observation and which does not require sophisticated equipment. Another is that in the form of the electric organs of strongly electric fish Nature has provided a tissue embryologic…

Synapsemedicine.anatomical_structuremedicineNeuromuscular transmissionCholinergicBiologySynaptic vesicleNeuroscienceElectric fishNeuromuscular junctionAcetylcholinemedicine.drugAcetylcholine receptor
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