Search results for "FLUORESCENCE LIFETIME"

showing 7 items of 17 documents

Neuronal activity and secreted amyloid β lead to altered amyloid β precursor protein and presenilin 1 interactions.

2013

Deposition of amyloid β (Aβ) containing plaques in the brain is one of the neuropathological hallmarks of Alzheimer's disease (AD). It has been suggested that modulation of neuronal activity may alter Aβ production in the brain. We postulate that these changes in Aβ production are due to changes in the rate-limiting step of Aβ generation, APP cleavage by γ-secretase. By combining biochemical approaches with fluorescence lifetime imaging microscopy, we found that neuronal inhibition decreases endogenous APP and PS1 interactions, which correlates with reduced Aβ production. By contrast, neuronal activation had a two-phase effect: it initially enhanced APP-PS1 interaction leading to increased …

ImmunoprecipitationBlotting WesternEndogenyMice TransgenicCleavage (embryo)PresenilinArticlelcsh:RC321-571Amyloid beta-Protein PrecursorMiceAlzheimer Diseasemental disordersmedicinePresenilin-1Premovement neuronal activityAnimalsHumansImmunoprecipitationlcsh:Neurosciences. Biological psychiatry. NeuropsychiatryFeedback PhysiologicalNeuronsPresenilin 1Neuronal activityAmyloid beta-PeptidesChemistryP3 peptideNeurotoxicityAlzheimer's diseasemedicine.diseaseImmunohistochemistryCell biologyNeurologyBiochemistrynervous systemAlzheimer's diseaseAmyloid β precursor proteinFLIM (fluorescence lifetime imaging microscopy)Neurobiology of disease
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Conformational Transitions upon Maturation Rule Surface and pH-Responsiveness of α-Lactalbumin Microparticulates

2021

De novo designed protein supramolecular structures are nowadays attracting much interest as highly performing biomaterials. While a clear advantage is provided by the intrinsic biocompatibility and...

LactalbuminAmyloidFluorescence-lifetime imaging microscopyAmyloidBiocompatibilitySurface PropertiesChemistryBiochemistry (medical)Biomedical EngineeringSupramolecular chemistryBiocompatible MaterialspH-responsivenessGeneral ChemistryMicroparticlesHydrogen-Ion ConcentrationFluorescence Lifetime ImagingBiomaterialsMaturationMaterials TestingThioflavin TLactalbuminBiophysicsProtein CondensatesParticle SizeLiquid-Liquid Phase SeparationACS Applied Bio Materials
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Nile Red lifetime reveals microplastic identity

2020

Microplastic pollution is recognized as a worldwide environmental problem. The increasing daily use and release of plastics into the environment have led to the accumulation of fragmented microplastics, with potentially awful consequences for the environment, and animal and human health. The detection and identification of microplastics are of utmost importance, but available methods are still limited. In this work, a new approach is presented for the analysis of microplastics based on hydrophobic fluorescence staining with Nile Red, using spectrally resolved confocal fluorescence microscopy and fluorescence lifetime imaging microscopy (FLIM). Significant differences were observed in the em…

MicroplasticsFluorescence-lifetime imaging microscopyMicroplastics010501 environmental sciencesManagement Monitoring Policy and Law01 natural sciences03 medical and health sciencesHuman healthchemistry.chemical_compoundOxazinesFluorescence microscopeAnimalsHumansEnvironmental ChemistryFluorescence staining030304 developmental biology0105 earth and related environmental sciences0303 health sciencesChemistryPublic Health Environmental and Occupational HealthNile redGeneral MedicineFluorescenceSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)microplastics nile red fluorescence lifetime Environmental Monitoring Humans Microplastics Oxazines Plastics Water Pollutants ChemicalAquatic environmentBiological systemPlasticsWater Pollutants ChemicalEnvironmental MonitoringEnvironmental Science: Processes & Impacts
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Multispectral fluorescence sensitivity to acidic and polyphenolic changes in Chardonnay wines – The case study of malolactic fermentation

2022

International audience; In this study, stationary and time-resolvedfluorescence signatures, were statistically and chemometrically analyzed among three typologies of Chardonnay wines (A, B and C) with the objectives to evaluate their sensitivity to acidic and polyphenolic changes. For that purpose, a dataset was built using Excitation Emission Matrices of fluorescence (N = 103) decomposed by a Parallel Factor Analysis (PARAFAC), andfluorescence decays (N = 22), mathematically fitted, using the conventional exponential modeling and the phasor plot representation. Wine PARAFAC component C4 coupledwith its phasor plot g and s values enable the description of malolactic fermentation (MLF) occur…

PARAFAC componentsMultispectral imageMalatesWine010402 general chemistry01 natural sciencesFluorescenceAnalytical Chemistrychemistry.chemical_compoundFluorescence lifetimeOrganic acidsMalolactic fermentationPhenol[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyWineExcitation emission matrixQuenching (fluorescence)ChromatographyChemistryMalolactic fermentation010401 analytical chemistryPhasor plotTraceabilityGeneral MedicineFluorescence0104 chemical sciencesPolyphenolFermentation[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood ScienceFood Chemistry
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Study of Bacillus subtilis spore's : characterication of stuctures implied in its resistance

2013

The bacterial spore is a multilayer microbial form which is extremely resistant to environmental perturbations. This resistance is especially due to its unique structure which is particularly compact and weakly permeable. This work aims to identify and characterize the spore structures involved in these properties. Overall investigation methods, such as NMR and fluorescence anisotropy, have shown that the cortex of Bacillus subtilis spores is modified by temperature for level similar to that of the activation of germination. This will result in changes to the access to the inner membrane. A tool at the spore’s scale, the fluorescence lifetime imaging microscopy (FLIM) in conjunction with th…

Spores de Bacillus subtilisEthanolMembrane interneCortexInner membraneBacillus subtilis sporesImagerie en temps de vie de fluorescence[SDV.MP.BAC] Life Sciences [q-bio]/Microbiology and Parasitology/BacteriologyFluorescence lifetime imaging[SDV.BIO] Life Sciences [q-bio]/Biotechnology
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Glial Chloride Homeostasis Under Transient Ischemic Stress

2021

High water permeabilities permit rapid adjustments of glial volume upon changes in external and internal osmolarity, and pathologically altered intracellular chloride concentrations ([Cl–]int) and glial cell swelling are often assumed to represent early events in ischemia, infections, or traumatic brain injury. Experimental data for glial [Cl–]int are lacking for most brain regions, under normal as well as under pathological conditions. We measured [Cl–]int in hippocampal and neocortical astrocytes and in hippocampal radial glia-like (RGL) cells in acute murine brain slices using fluorescence lifetime imaging microscopy with the chloride-sensitive dye MQAE at room temperature. We observed s…

excitatory amino acid transportersOsmotic concentrationchemical stress mimicking ischemiaChemistryDentate gyrusINTintracellular chloride concentrationsNeurosciences. Biological psychiatry. NeuropsychiatryHippocampal formationChlorideCellular and Molecular NeuroscienceNa-K-2Cl cotransporterBiophysicsmedicineddc:610K-Cl cotransportersCotransporterHomeostasisIntracellularRC321-571NeuroscienceOriginal Researchfluorescence lifetime imaging microscopymedicine.drugFrontiers in Cellular Neuroscience
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Spectroscopic Properties of Holmium-Aluminum- Germanium Co-doped Silica Fiber

2020

We report the basic spectroscopic properties of a home-made holmium-aluminum-germanium co-doped silica fiber, designed for laser applications. We present the ground-state and excitedstate absorption spectra of the fiber along with the upconversion emission spectrum under laser action, which served for making an energy levels’ diagram of Ho3+ ion. We discuss the ways to assess the kinetics of Ho3+ 2-μm fluorescence, focusing on measuring fluorescence lifetime from 5I7 level and nonradiative decay time from 5I6 level. The simple analytical formulae, applicable for fitting of the fluorescence decay curve, are derived, which can be useful for precise modeling of holmiumdoped fiber lasers. PID20…

excited state absorptionup-conversion emission:FÍSICA [UNESCO]UNESCO::FÍSICAfluorescence lifetimePhysics::Opticsground-state absorptionholmium-doped silica fiberexcited state absorption; up-conversion emission; fluorescence lifetime
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