Search results for "Small Molecule"

showing 10 items of 197 documents

Photo-inhibition of Ab fibrillation mediated by a newly designed fluorinated oxadiazole

2015

Uncontrolled aggregation of amyloid beta peptide (A?) is the main cause of Alzheimer's Disease. Therapeutic approaches of intervention in amyloid diseases include the use of small molecules able to stabilize the soluble A? conformation, or to redirect the amyloidogenic pathway towards non-toxic and non-fibrillar states. Fluorometric measurements revealed that the 3-(4'-trifluoromethylphenyl)-5-(4'-methoxyphenyl)-1,2,4-oxadiazole, when irradiated, is able to interact with monomeric A? peptide readdressing the aggregation pathway toward the formation of amorphous aggregates as evidenced by means of CD, AFM, and SAXS measurements. We hypothesize that this compound, under radiation, forms a rea…

chemistry.chemical_classificationAmyloidbiologyAmyloid betaGeneral Chemical EngineeringReactive intermediateP3 peptideOxadiazoleFibrillation inhibitionPeptideAlzheimer’s disease Amyloid Fibrillation inhibition Photo-excitation Neuronal diseasesGeneral ChemistryAlzheimer's diseaseSmall moleculeNeuronal diseaseschemistry.chemical_compoundAmyloid diseasechemistryBiochemistrybiology.proteinCytotoxicityPhoto-excitation
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ChemInform Abstract: Imprinted Polymers with Memory for Small Molecules, Proteins, or Crystals

2010

chemistry.chemical_classificationChemical engineeringChemistryGeneral MedicinePolymerSmall moleculeChemInform
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Noncovalent molecular imprinting: antibody-like molecular recognition in polymeric network materials

1997

Abstract Molecular imprinting techniques allow the preparation of polymeric receptors which bind small molecules with affinities and selectivities of the same order as those observed in the binding of antigens by antibodies. The molecular imprinting technology has now reached a stage where the commercial use of imprinted materials is being assessed, notably for separations requiring strong and selective binding of small molecules. This development is driven by the potential advantages of polymeric receptors over biological in terms of stability, capacity, cost and ease of preparation. In this short review the state of the art of noncovalent imprinting is summarised indicating a few areas in…

chemistry.chemical_classificationChemistryPolymerCombinatorial chemistryAffinitiesSmall moleculeAnalytical ChemistryMolecular recognitionPolymer chemistryMoleculeSurface modificationImprinting (psychology)Molecular imprintingSpectroscopyTrAC Trends in Analytical Chemistry
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Aptamer-based assay of biomolecules: Recent advances in electro-analytical approach

2017

Electrochemical aptasensors, which are based on the specificity of aptamer-target recognition, with electrochemical transduction for analytical purposes have received particular attention due to their high sensitivity and selectivity, simple instrumentation, as well as low production cost. This review summarizes advances from 2009 to January 2017 in the development of electrochemical aptasensors for biological molecules, including small molecules, nucleic acids, and proteins. Various aptasensing strategies are assessed according to their potential for reaching relevant limits of sensitivity, specificity, and degrees of multiplexing. Furthermore, we address the remaining challenges and oppor…

chemistry.chemical_classificationComputer scienceBiomoleculeAptamerProduction cost010401 analytical chemistryNanotechnology02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesSmall molecule0104 chemical sciencesAnalytical Chemistrychemistry0210 nano-technologyBiosensorSpectroscopyTrAC Trends in Analytical Chemistry
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Minimizing geminate recombination losses in small-molecule-based organic solar cells

2019

Small-molecule-based organic solar cells (OSCs) are a recurrent alternative to polymer-based OSCs. Due to the higher purity and definition of small molecules compared to polymers, the morphological requirements can be more relaxed. Here, we present a series of novel rhodanine-based small-molecule electron donors and blend them with the standard acceptor PC70BM. By performing a target analysis on femtosecond spectroscopy data, we quantify the rates of geminate charge recombination. We are able to reproduce these rates by applying the Marcus–Levich–Jortner equation, using results from quantum chemical calculations. This shows that in a series of differently substituted compounds, one can corr…

chemistry.chemical_classificationMaterials scienceOrganic solar cellPhotovoltaic systemQuímica orgánicafood and beverages02 engineering and technologyGeneral ChemistryPolymerElectron010402 general chemistry021001 nanoscience & nanotechnology7. Clean energy01 natural sciencesSmall moleculeAcceptor0104 chemical scienceschemistryChemical physicsMaterials ChemistryCyclic voltammetry0210 nano-technologyFemtochemistryJournal of Materials Chemistry C
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Solid State Analysis of Metal-Containing Polymers Employing Mossbauer Spectroscopy, Solid State NMR and F EI TOF MALDI MS

2010

Polymers in general and metal-containing polymers in particular are often sparingly soluble or insoluble, in contrast to small molecules. Thus, special significance is attached to characterization techniques that can be applied to the materials as solids. Here, three techniques are discussed that give structural information gained from the solid material. Mossbauer spectroscopy is a powerful technique that may give information on the structure about the metal-containing moiety for about 44 different nuclei. Its use in describing the structure of the product obtained from organotin dichlorides and the unsymmetrical ciprofloxacin is presented along with the reaction implications of the result…

chemistry.chemical_classificationMetallocene polymersMALDI MSPolymers and PlasticsChemistryMossbauer spectroscopyAnalytical chemistryPolymerSmall moleculeSolid-state NMRIonCharacterization (materials science)MetalOrganotin polyetherF MALDI MSAntimony-containing polymerSolid-state nuclear magnetic resonanceSettore CHIM/03 - Chimica Generale E Inorganicavisual_artMössbauer spectroscopyMaterials Chemistryvisual_art.visual_art_mediumMoietyPhysical chemistry
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Imprinted Polymers with Memory for Small Molecules, Proteins, or Crystals

2000

chemistry.chemical_classificationNanostructureMolecular recognitionchemistryMolecularly imprinted polymerNanotechnologyGeneral ChemistryPolymerTemplate synthesisImprinting (psychology)Molecular imprintingSmall moleculeCatalysisAngewandte Chemie International Edition
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Zero-field NMR of urea : spin-topology engineering by chemical exchange

2021

Well-resolved and information-rich J-spectra are the foundation for chemical detection in zero-field NMR. However, even for relatively small molecules, spectra exhibit complexity, hindering the analysis. To address this problem, we investigate an example biomolecule with a complex J-coupling network─urea, a key metabolite in protein catabolism─and demonstrate ways of simplifying its zero-field spectra by modifying spin topology. This goal is achieved by controlling pH-dependent chemical exchange rates of 1H nuclei and varying the composition of the D2O/H2O mixture used as a solvent. Specifically, we demonstrate that by increasing the proton exchange rate in the [13C,15N2]-urea solution, the…

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceZero field NMRLetterMagnetic Resonance SpectroscopyProtonBiomoleculeWaterHydrogen-Ion ConcentrationTopologySmall moleculeSpectral linechemistryUreaGeneral Materials ScienceIsotopologuePhysical and Theoretical ChemistryDeuterium OxideTopology (chemistry)Spin-½
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Self-Diffusion of Small Molecules into Rubbery Polymers: A Lattice Free-Volume Theory

2010

In the framework of the Free Volume Theory, a new equation was derived for the evaluation of self-diffusion coefficients of small molecules in polymers above the mixture glass transition temperature. The derivation of the equation turned out to be straightforward once the equivalence between the free-volume and the unoccupied volume given by Thermodynamic Lattice Theories is assumed. A parameter evaluation scheme is proposed, which is substantially simpler compared to the conventional Vrentas-Duda approach, even without losing generality. The key assumption is discussed and its consistency is verified from a numerical viewpoint. A comparison with experimental solvent self-diffusion coeffici…

chemistry.chemical_classificationSelf-diffusionPolymers and PlasticsChemistrydiffusionThermodynamicsConcentration effectBinary numbermodelingPolymerCondensed Matter PhysicsSmall moleculeAmorphous solidfree-volumethermodynamicLattice (order)Materials ChemistryamorphouPhysical and Theoretical ChemistryGlass transition
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Hydrogen peroxide sensing with horseradish peroxidase-modified polymer single conical nanochannels.

2011

Inspired from the funtioning and responsiveness of biological ion channels, researchers attempt to develop biosensing systems based on polymer and solid-state nanochannels. The applicability of these nanochannels for detection/sensing of any foreign analyte in the surrounding environment depends critically on the surface characteristics of the inner walls. Attaching recognition sites to the channel walls leads to the preparation of sensors targeted at a specific molecule. There are many nanochannel platforms for the detection of DNA and proteins, but only a few are capable of detecting small molecules. Here, we describe a nanochannel platform for the detection of hydrogen peroxide, H(2)O(2)…

chemistry.chemical_classificationbiologyImmobilized enzymeStereochemistryChemistryPolymersNanotechnologyPolymerHydrogen PeroxideSmall moleculeHorseradish peroxidaseAnalytical ChemistryNanostructureschemistry.chemical_compoundMembranebiology.proteinHydrogen peroxideBiosensorIon channelHorseradish PeroxidaseSignal TransductionAnalytical chemistry
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