Search results for "Fluorescence microscope"

showing 10 items of 117 documents

Interaction between biotin lipids and streptavidin in monolayers: formation of oriented two-dimensional protein domains induced by surface recognitio…

1989

Highly specific ligand-receptor interactions generally characterize surface recognition reactions. Such processes can be simulated by streptavidin-biotin-specific binding. Biotin lipids have thus been synthesized, and their interaction with streptavidin (or avidin) at the air-water interface was directly shown by measurement of surface pressure isotherms and fluorescence microscopy. These proteins interact with the biotin lipid monolayer via specific binding or nonspecific adsorption. Both phenomena were clearly distinguished by use of the inactivated form of streptavidin. The binding of fluorescein-labeled streptavidin to monolayers was also directly observed by fluorescence microscopy. Th…

StreptavidinChemical PhenomenaSurface PropertiesProtein domainBiotinBiochemistrychemistry.chemical_compoundBiotinBacterial ProteinsMonolayerFluorescence microscopebiologyChemistryChemistry PhysicalPhosphatidylethanolaminestechnology industry and agricultureMembranes ArtificialHydrogen-Ion ConcentrationAvidinFluorescenceLipidsSpectrometry FluorescenceSolubilityBiotinylationbiology.proteinBiophysicsSpectrophotometry UltravioletStreptavidinAvidinBiochemistry
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Formation of protein multilayers and their competitive replacement based on self-assembled biotinylated phospholipids.

1994

Based on specific recognition processes the build-up of protein multilayers was achieved using streptavidin layers as a docking matrix. For this purpose, streptavidin was organized at biotin-containing monolayers, liposomes, and self-assembled layers on gold. Thus, mixed double and triple layers of streptavidin, Con A, Fab fragments, and hormones were prepared and characterized by fluorescence microscopy and plasmon spectroscopy. Using biotin analogues with lower binding constants several cycles of multilayer formation followed by competitive replacement could be achieved.

StreptavidinLiposomeSurface Propertiestechnology industry and agricultureBiomedical EngineeringBiophysicsBiotinProteinsBioengineeringBinding CompetitiveBiomaterialsCrystallographychemistry.chemical_compoundMolecular recognitionBiotinchemistryBacterial ProteinsDocking (molecular)BiotinylationMonolayerFluorescence microscopeStreptavidinPhospholipidsJournal of biomaterials science. Polymer edition
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Surface properties of valine-gramicidin A at the air-water interface

1996

Abstract Fluorescence microscopy, X-ray reflectivity and ellipsometry have been applied to the study of a monolayer of valine-gramicidin A (VGA) at the air-water interface to obtain insight into the conformation and orientation of VGA, and to clarify the shoulder observed in its π - A curve (12.5–16 mN m −1 , 240 – 175 A 2 molecule −1 ). At low molecular areas, the X-ray reflectivities are consistent with formation of a single layer of tubular-shaped dimers. Fluorescence microscopy yielded homogeneous pictures suggesting that on the macroscopic scale the shoulder cannot be attributed to domain formation. Thicknesses calculated from the ellipsometric isotherm are consistent with the X-ray da…

Surface (mathematics)Materials scienceMetals and AlloysAnalytical chemistrySurfaces and InterfacesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsX-ray reflectivityCrystallographyMacroscopic scaleEllipsometryValineMonolayerMaterials ChemistryFluorescence microscopeMoleculeThin Solid Films
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Printing Life-Inspired Subcellular Scale Compartments with Autonomous Molecularly Crowded Confinement.

2019

A simple, rapid, and highly controlled platform to prepare life-inspired subcellular scale compartments by inkjet printing has been developed. These compartments consist of fL-scale aqueous droplets (few µm in diameter) incorporating biologically relevant molecular entities with programmed composition and concentration. These droplets are ink-jetted in nL mineral oil drop arrays allowing for lab-on-chip studies by fluorescence microscopy and fluorescence life time imaging. Once formed, fL-droplets are stable for several hours, thus giving the possibility of readily analyze molecular reactions and their kinetics and to verify molecular behavior and intermolecular interactions. Here, this pla…

Surface PropertiesDNA hairpinBiomedical EngineeringGeneral Biochemistry Genetics and Molecular BiologyFluorescenceBiomaterialsSettore CHIM/01molecular crowdingbiomolecular confinementlife-like compartmentFluorescence microscopeInkjet printinginkjet printingBiochemistry Genetics and Molecular Biology (all)ChemistryDrop (liquid)Intermolecular forceLife timeDNABiomaterialFluorescencebiomolecular confinement; DNA hairpins; inkjet printing; life-like compartments; molecular crowdingDNA hairpinslife-like compartmentsPrinting Three-DimensionalBiophysicsMolecular probeAdvanced biosystems
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Binding, Interaction, and Organization of Proteins with Lipid Model Membranes

1991

Model membrane systems are used to investigate protein recognition and binding at interfaces. Fluorescence microscopy results are presented for interactions of the proteins, phospholipase A2 and antifluorescyl IgG, at lipid monolayer interfaces. Total internal reflection fluorescence measurements are used to quantify albumin and IgG adsorption to supported lipid monolayers.

Total internal reflection fluorescence microscopeOrientations of Proteins in Membranes databaseMembraneMembrane proteinChemistryMonolayerBiophysicsFluorescence microscopeBiological membranePlant lipid transfer proteins
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Stretch-induced Intussuceptive and Sprouting Angiogenesis in the Chick Chorioallantoic Membrane

2014

Vascular systems grow and remodel in response to not only metabolic needs, but also mechanical influences as well. Here, we investigated the influence of tissue-level mechanical forces on the patterning and structure of the chick chorioallantoic membrane (CAM) microcirculation. A dipole stretch field was applied to the CAM using custom computer-controlled servomotors. The topography of the stretch field was mapped using finite element models. After 3 days of stretch, Sholl analysis of the CAM demonstrated a 7-fold increase in conducting vessel intersections within the stretch field (p 0.05). In contrast, corrosion casting and SEM of the stretch field capillary meshwork demonstrated intense …

animal structuresTime FactorsCapillary actionFinite Element AnalysisNeovascularization PhysiologicChick EmbryoCorrosion CastingBiochemistryMechanotransduction CellularArticleChorioallantoic MembraneChick chorioallantoic membraneMicrocirculationSholl analysisFluorescence microscopeAnimalsIntussusceptive angiogenesisSprouting angiogenesisMicroscopy VideoChemistryMicrocirculationModels CardiovascularCell BiologyAnatomyCapillariesChorioallantoic membraneMicroscopy FluorescenceBiophysicsMicroscopy Electrochemical ScanningStress MechanicalCardiology and Cardiovascular Medicine
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Peptide–Membrane Interactions Monitored by Fluorescence Lifetime Imaging: A Study Case of Transportan 10

2021

The interest on detailed analysis of peptide-membrane interactions is of great interest in both fundamental and applied sciences as these may relate to both functional and pathogenic events. Such interactions are highly dynamic and spatially heterogeneous, making the investigation of the associated phenomena highly complex. The specific properties of membranes and peptide structural details, together with environmental conditions, may determine different events at the membrane interface, which will drive the fate of the peptide-membrane system. Here, we use an experimental approach based on the combination of spectroscopy and fluorescence microscopy methods to characterize the interactions …

chemistry.chemical_classificationFluorescence-lifetime imaging microscopyChemistryRecombinant Fusion ProteinsSpectrum AnalysisGalaninWasp VenomsPeptideSurfaces and InterfacesCondensed Matter PhysicsFluorescenceArticleMembraneMicroscopy FluorescenceAmphiphileElectrochemistryFluorescence microscopeHigh spatial resolutionBiophysicsPeptide−Membrane Interactions FLIM Transportan 10 PhasorGeneral Materials SciencePeptidesSpectroscopySpectroscopyLangmuir
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Coherent Electronic Coupling versus Localization in Individual Molecular Dimers

2004

International audience; The electronic excitation transfer and coherent electronic coupling strength were investigated in molecular dimers by spectrally resolved confocal fluorescence spectroscopy. The direct probe of electronic coupling strength distribution was possible due to static disorder in polymer host by single molecule measurements. The dimers with delocalized excitation were also found in comparison to emission originated from localized states. The delocalized and localized state transitions were observed for dimers which were attributed to structural fluctuations of guest-host system.

chemistry.chemical_classificationMaterials scienceDimerConfocalGeneral Physics and Astronomy02 engineering and technologyPolymer010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesCoupling (electronics)chemistry.chemical_compoundDelocalized electronchemistryFluorescence microscopePhysics::Atomic and Molecular ClustersMolecule[CHIM]Chemical SciencesAtomic physics0210 nano-technologyExcitation
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Polymeric gegenions induced variability and mobility of amphiphilic supramolecular structures on solid substrates

1992

Abstract The micromorphological variations of amphiphilic L -glutamate derivatives at air-substrate interfaces due to an adjacent mobile polymer matrix have been investigated via fluorescence microscopy. Adjusted monolayers of the L -glutamate derivatives have been transferred by LB technique out of different aggregation states onto various substrates. The substrates have been prepared by successive polymer preadsorption to the solid support. The influence of the adjacent polymer layers on the domain morphology as a function of water content and temperature has been examined intensively. Moreover, reversible domain changes induced by temperature variation of the transferred films have been …

chemistry.chemical_classificationMorphology (linguistics)Metals and AlloysAnalytical chemistryFluorescence spectrometrySupramolecular chemistrySurfaces and InterfacesPolymerSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsMatrix (chemical analysis)chemistryChemical engineeringAmphiphileMonolayerMaterials ChemistryFluorescence microscopeThin Solid Films
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Two-Dimensional Assembly Formation of Hydrophobic Helical Peptides at the Air/Water Interface: Fluorescence Microscopic Study

1995

Monolayer formation of hydrophobic α-helical peptides, X-(Ala-Aib) 8 -Y (X=Boc-, HOOCCH 2 CH 2 CO-, biotinyl, biotinyl-(Sar) 3 -; Y=OMe, OBzl, OH), at the air/water interface was studied by the fluorescence microscopic method. Some peptides showed a mound in the π-A isotherm. When the monolayer containing a small amount of FITC-labeled peptide was held at the surface pressure corresponding to the top of the mound, bright and dark domains were observed by fluorescence microscopy. Domain formation was also observed by the addition of a cationic dye (DiIC 1 ) into the subphase underneath the peptide monolayer. The mound in the π-A isotherm is, therefore, ascribed to the phase transition from a…

chemistry.chemical_classificationPhase transitionStereochemistryfungiCationic polymerizationPeptideSurfaces and InterfacesCondensed Matter PhysicsSurface pressureFluorescencelaw.inventionCrystallographychemistrylawMonolayerElectrochemistryFluorescence microscopeGeneral Materials ScienceCrystallizationSpectroscopyLangmuir
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