Search results for "Fibril"

showing 10 items of 836 documents

Detection of Amyloid-β Fibrils Using Track-Etched Nanopores: Effect of Geometry and Crowding

2021

Several neurodegenerative diseases have been linked to proteins or peptides that are prone to aggregate in different brain regions. Aggregation of amyloid-β (Aβ) peptides is recognized as the main cause of Alzheimer's disease (AD) progression, leading to the formation of toxic Aβ oligomers and amyloid fibrils. The molecular mechanism of Aβ aggregation is complex and still not fully understood. Nanopore technology provides a new way to obtain kinetic and morphological aspects of Aβ aggregation at a single-molecule scale without labeling by detecting the electrochemical signal of the peptides when they pass through the hole. Here, we investigate the influence of nanoscale geometry (conical an…

AmyloidAmyloidAmyloid βSonicationBioengineeringGeometrymacromolecular substances02 engineering and technologyPolyethylene glycol010402 general chemistryFibril01 natural sciencesNanoporeschemistry.chemical_compoundAlzheimer DiseasePEG ratioHumansInstrumentationNanoscopic scaleFluid Flow and Transfer ProcessesAmyloid beta-PeptidesChemistryProcess Chemistry and Technology021001 nanoscience & nanotechnology0104 chemical sciencesKineticsNanopore0210 nano-technologyACS Sensors
researchProduct

Kinetics of different processes in human insulin amyloid formation.

2007

Human insulin has long been known to form amyloid fibrils under given conditions. The molecular basis of insulin aggregation is relevant for modeling the amyloidogenesis process, which is involved in many pathologies, as well as for improving delivery systems, used for diabetes treatments. Insulin aggregation displays a wide variety of morphologies, from small oligomeric filaments to huge floccules, and therefore different specific processes are likely to be intertwined in the overall aggregation. In the present work, we studied the aggregation kinetics of human insulin at low pH and different temperatures and concentrations. The structure and the morphogenesis of aggregates on a wide range…

AmyloidAmyloidmedicine.medical_treatmentKineticsMicroscopy Atomic ForceFibrilModels BiologicalFluorescencechemistry.chemical_compoundlight-scatteringStructural Biologyamyloid fibrilMicroscopymedicineHumansInsulinScattering RadiationMicroscopy Phase-ContrastBenzothiazolesParticle SizeMolecular BiologyFluorescent Dyesatomic force microscopyInsulinaggregationTemperatureHydrogen-Ion ConcentrationKineticsThiazolesCrystallographyMonomerchemistryBiophysicsThioflavinElongation
researchProduct

Concanavalin A aggregation and toxicity on cell cultures

2009

A number of neurodegenerative diseases are known to involve protein aggregation. Common mechanisms and structural properties of amyloids are thought to be involved in aggregation-related cytotoxicity. In this context we propose an experimental study on Concanavalin A (Con A) aggregation and use it as a model to study the relationship between cell toxicity and aggregation processes. Depending on solution conditions, Con A aggregation has been monitored by static and dynamic light scattering, Thioflavin T emission, and FTIR absorption. The morphology of different aggregate species was verified by means of Atomic Force Microscopy and Confocal Microscopy. During the aggregation pathway the nati…

AmyloidCell SurvivalBiophysicsApoptosisContext (language use)Protein aggregationMicroscopy Atomic ForceFibrilBiochemistryAnalytical Chemistrychemistry.chemical_compoundProtein structureCell Line TumorSpectroscopy Fourier Transform InfraredConcanavalin AExtracellularHumansProtein Structure QuaternaryCytotoxicityMolecular BiologyNeuronsbiologyChemistryBiochemistryConcanavalin Abiology.proteinThioflavinProtein aggregation Amyloids Citotoxicity Oligomers
researchProduct

Design and synthesis of new trehalose-conjugated pentapeptides as inhibitors of Aβ(1-42) fibrillogenesis and toxicity

2009

Aggregation of the amyloid A? peptide and its accumulation into insoluble deposits (plaques) are believed to be the main cause of neuronal dysfunction associated with Alzheimer's disease (AD); small molecules that can interfere with the A? amyloid fibril formation are therefore of interest for a potential therapeutic strategy. Three new trehalose-conjugated peptides of the well known ?-sheet breaker peptide iA?5p,were synthesized. The disaccharide was covalently attached to different sites of the LPFFD peptide chain, i.e. at the N-terminus, C-terminus or at the Asp side chain. CD spectroscopy in different solvents was used to assess changes in the peptide conformation of these compounds. Th…

AmyloidCell SurvivalPeptideMicroscopy Atomic ForceBiochemistryMass Spectrometrychemistry.chemical_compoundbeta-sheet breaker peptideStructural BiologySFMmental disordersDrug DiscoveryAnimalsbeta-sheet breaker peptidesMolecular BiologyCells CulturedChromatography High Pressure LiquidtrehaloseCerebral CortexPharmacologychemistry.chemical_classificationthioflavin Tbeta-amyloidOrganic ChemistryP3 peptideFibrillogenesisGeneral MedicineTrehaloseSmall moleculeGlycopeptideNeuronal culturesRatsPeptide Conformationneuronal cultureBiochemistrychemistryMolecular MedicineAmyloid-betaPeptidesJournal of Peptide Science
researchProduct

Thermodynamic versus Conformational Metastability in Fibril-Forming Lysozyme Solutions

2012

The role of intermolecular interaction in fibril-forming protein solutions and its relation with molecular conformation is a crucial aspect for the control and inhibition of amyloid structures. Here, we study the fibril formation and the protein-protein interactions of lysozyme at acidic pH and low ionic strength. The amyloid formation occurs after a long lag time and is preceded by the formation of oligomers, which seems to be off-pathway with respect to fibrillation. By measuring the osmotic isothermal compressibility and the collective diffusion coefficient of lysozyme in solution, we observe that the monomeric solution is kept in a thermodynamically metastable state by strong electrosta…

AmyloidConformational changeProtein ConformationDiffusionOsmolar ConcentrationHydrogen-Ion ConcentrationFibrilProtein tertiary structurePolyelectrolyteSurfaces Coatings and FilmsSolutionschemistry.chemical_compoundMonomerchemistryChemical physicsMetastabilityMaterials ChemistryThermodynamicsMuramidasePhysical and Theoretical ChemistryLysozymeProtein BindingThe Journal of Physical Chemistry B
researchProduct

Polymorphism of amyloid-beta fibrils and its effects on human erythrocyte catalase binding.

2009

The Alzheimer's amyloid-beta (Abeta) peptide exists as a number of naturally occurring forms due to differential proteolytic processing of its precursor molecule. Many of the Abeta peptides of different lengths form fibrils in vitro, which often show polymorphisms in the fibril structure. This study presents a TEM based analysis of fibril formation by eighteen different Abeta peptides ranging in length from 5 to 43 amino acids. Spectrophotometric analysis of Congo red binding to the fibrillar material has been assessed and the binding of human erythrocyte catalase (HEC) to Abeta fibrils has also been investigated by TEM. The results show that a diverse range of Abeta peptides form fibrils a…

AmyloidErythrocytesGeneral Physics and AstronomyPeptidemacromolecular substancesPlasma protein bindingFibrilchemistry.chemical_compoundMicroscopy Electron TransmissionStructural BiologyHumansGeneral Materials Sciencechemistry.chemical_classificationbiologyStaining and LabelingCongo RedCell BiologyCatalaseIn vitroAmino acidCongo redPolymorphism (materials science)BiochemistrychemistryCatalaseSpectrophotometrybiology.proteinProtein BindingMicron (Oxford, England : 1993)
researchProduct

Thioflavin T Hydroxylation at Basic pH and Its Effect on Amyloid Fibril Detection

2008

The fluorescent dye thioflavin T (ThT) is commonly used for in situ amyloid fibril detection. In this work, we focused on the spectroscopic properties and chemical stability of ThT in aqueous solution as a function of pH, temperature, and dye concentration. A reversible hydroxylation process occurs in alkaline solutions, which was characterized using a combination of UV-vis absorption spectroscopy, proton NMR, and density functional theory (DFT). On the basis of these studies, we propose a chemical structure for the hydroxylated form. Finally, by means of fluorescence spectroscopy, ThT hydroxylation effects on in situ amyloid detection have been investigated, providing new insights on the e…

AmyloidMagnetic Resonance SpectroscopyAqueous solutionTemperatureThioflavin T AmyloidHydrogen-Ion ConcentrationHydroxylationPhotochemistryFibrilFluorescenceFluorescence spectroscopySurfaces Coatings and FilmsHydroxylationKineticsThiazoleschemistry.chemical_compoundchemistryMaterials ChemistryProton NMROrganic chemistrySpectrophotometry UltravioletThioflavinChemical stabilityBenzothiazolesPhysical and Theoretical ChemistryThe Journal of Physical Chemistry B
researchProduct

Negative staining across holes: application to fibril and tubular structures.

2007

The negative staining technique, when used with holey carbon support films, presents superior imaging conditions than is the case when samples are adsorbed to continuous carbon films. A demonstration of this negative staining approach is presented, using ammonium molybdate in combination with trehalose, applied to several fibrillar and tubular samples. Fibrils formed from the amyloid-beta peptide and the protease inhibitor pepstain A spread very well unsupported across holes and the different polymorphic fibril forms can be readily assessed. However, tubular forms of amyloid-beta have a tendency to be flattened, due to surface tension forces prior to and during specimen drying. Sub-fibril a…

AmyloidMaterials scienceGeneral Physics and Astronomychemistry.chemical_elementFibrilNegative Stainingchemistry.chemical_compoundFerrihydriteMicroscopy Electron TransmissionStructural BiologyIron-Binding ProteinsPepstatinsAnimalsHumansNanotechnologyGeneral Materials ScienceAmmonium molybdateMolybdenumAmyloid beta-PeptidesProteinsTrehaloseCell BiologyDNATrehaloseNegative stainCarbonStainingRatsCrystallographyCarbon filmchemistryBiophysicsCollagenPeptidesCarbonMicron (Oxford, England : 1993)
researchProduct

The Boson Peak of Amyloid Fibrils: Probing the Softness of Protein Aggregates by Inelastic Neutron Scattering

2014

Proteins and polypeptides are characterized by low-frequency vibrations in the terahertz regime responsible for the so-called "boson peak". The shape and position of this peak are related to the mechanical properties of peptide chains. Amyloid fibrils are ordered macromolecular assemblies, spontaneously formed in nature, characterized by unique biological and nanomechanical properties. In this work, we investigate the effects of the amyloid state and its polymorphism on the boson peak. We used inelastic neutron scattering to probe low-frequency vibrations of the glucagon polypeptide in the native state and in two different amyloid morphologies in both dry and hydrated sample states. The dat…

AmyloidPhysics::Biological PhysicsQuantitative Biology::BiomoleculesChemistryProtein dynamicsNeutron diffractionNeutron scatteringProtein aggregationFibrilVibrationAmyloid Protein dynamics collective motions boson peakInelastic neutron scatteringSurfaces Coatings and FilmsNeutron DiffractionMicroscopy Electron TransmissionChemical physicsMolecular vibrationSpectroscopy Fourier Transform InfraredMaterials ChemistryNative statePhysical and Theoretical ChemistryAtomic physics
researchProduct

The kinetic behavior of insulin fibrillation is determined by heterogeneous nucleation pathways

2005

When subjected to acidic conditions and high temperature, insulin is known to produce fibrils that display the common properties of disease amyloids. Thus, clarifying the mechanisms of insulin fibrillation can help the general understanding of amyloidal aggregation. Insulin fibrillation exhibits a very sharp time dependence, with a pronounced lag phase and subsequent explosive growth of amyloidal aggregates. Here we show that the initial stages of this process can be well described by exponential growth of the fibrillated proteins. This indicates that the process is mainly controlled by a secondary nucleation pathway.

AmyloidProtein DenaturationTime FactorsAmyloidmedicine.medical_treatmentKineticsNucleationmacromolecular substancesProtein aggregationFibrilBiochemistryExponential growthmedicineAnimalsInsulinMolecular BiologyFibrillationChemistryInsulinTemperatureHydrogen-Ion ConcentrationKineticsBiochemistryFor the RecordBiophysicsCattlemedicine.symptomProtein Science
researchProduct