Search results for " FTIR"

showing 10 items of 43 documents

Role of residual water hydrogen bonding in sugar/water/biomolecule systems: a possible explanation fortrehalose peculiarity

2007

We report on the set of experimental and simulative evidences which enabled us to suggest how biological structures embedded in a non-liquid water–saccharide solvent are anchored to the surrounding matrix via a hydrogen bond network. Such a network, whose rigidity increases by decreasing the sample water content, couples the degrees of freedom of the biostructure to those of the matrix and gives place to protein–saccharide–water structures (protein–solvent conformational substates). In particular, the whole set of data evidences that, while the protein–sugar interaction is well described in terms of a water entrapment hypothesis, the water replacement hypothesis better describes the sugar–m…

chemistry.chemical_classificationChemistryHydrogen bondStereochemistryBiomoleculeCondensed Matter PhysicsTrehaloseSolventchemistry.chemical_compoundtrehalose water FTIR spectroscopyRigidity (electromagnetism)MembraneChemical physicsMoleculeGeneral Materials ScienceSupercoolingJournal of Physics: Condensed Matter
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Evaluation of mucoadhesive properties of α,β-poly(N-hydroxyethyl)-dl-aspartamide and α,β-poly(aspartylhydrazide) using ATR–FTIR spectroscopy

2002

Abstract The mucoadhesive properties of α,β poly( N -hydroxyethyl)- dl -aspartamide (PHEA) and α,β-polyaspartylhydrazide (PAHy) have been investigated using attenuated total reflection infrared (ATR–FTIR) spectroscopy. In particular, films based on these polymers have been contacted with a mucin solution at pH 7 and, the interfacial interaction and interpenetration between the glycoprotein and PHEA or PAHy have been studied by analysing the ATR–FTIR spectra. A diffusion model using a solution of Ficks' second law has been employed to determine the diffusion coefficient of water into polymeric films as a consequence of interdiffusion which occurs at the polymer film/mucin solution interface.

chemistry.chemical_classificationPolymers and PlasticschemistryAttenuated total reflectionOrganic ChemistryPolymer chemistryMaterials ChemistryAtr ftir spectroscopyPolymerSpectroscopyPolymer
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O-Alkylation of a lignite humic acid by phase-transfer catalysis

2006

A mild phase-transfer catalytic reaction has been conducted to O-alkylate the acidic functions of a lignite humic acid (HA), using tetrabutylammonium hydroxide as the phase-transfer catalyst. The HA acidic functional groups were made to react, in tetrahydrofuran, by nucleophilic substitution with several alkyl halides-methyl iodide, and ethyl, propyl, and butyl, and benzyl bromide. The occurrence of the O-alkylation reaction was assessed by elemental analysis and 1H NMR, CPMAS 13C NMR, and FTIR spectroscopy. Bonding of alkyl groups increased the carbon and hydrogen content and the H/C ratios of all the humic reaction products. Increased nitrogen in the reaction products suggested incomplete…

chemistry.chemical_classificationSettore AGR/13 - Chimica AgrariaEtherAlkylationCarbon-13 NMRBiochemistryAnalytical ChemistryCatalysischemistry.chemical_compoundchemistryProton NMRNucleophilic substitutionHumic acidOrganic chemistrylipids (amino acids peptides and proteins)Humic substances O-Alkylation Phase-transfer catalysis Tetrabutylammonium hydroxide NMR FTIRAlkylAnalytical and Bioanalytical Chemistry
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Structure−Dynamics Coupling between Protein and External Matrix in Sucrose-Coated and in Trehalose-Coated MbCO:  An FTIR Study

2004

We performed FTIR measurements on carboxy-myoglobin (MbCO) embedded in a sucrose−water matrix to study the degrees of freedom coupling between protein and external matrix in such a system. The work was undertaken on the light of recent results by Giuffrida et al. (J. Phys. Chem. B 2003, 107, 13211−13217), who evidenced, in trehalose-coated MbCO, a structured water−sugar environment of the protein, tightly coupled to the heme pocket structure. Such information was obtained through a suitable analysis of the temperature dependence of the CO stretching and of the water association bands in samples of different content of residual water. We applied here the same analysis to sucrose-coated MbCO.…

disaccharides FTIR spectroscopy protein waterSucroseAnalytical chemistryTrehaloseSurfaces Coatings and FilmsCoupling (electronics)Matrix (chemical analysis)chemistry.chemical_compoundProtein environmentCrystallographychemistryMaterials ChemistryPhysical and Theoretical ChemistryFourier transform infrared spectroscopyHemeThe Journal of Physical Chemistry B
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Spectroscopic analyses of the influence of electron beam irradiation doses on mechanical, transport properties and microstructure of chitosan-fish ge…

2015

International audience; The objective of this work was to better display the effect of electron beam accelerator doses (0, 20, 40 and 60 kGy) on structural, mechanical and barrier properties of edible lightly plasticized chitosan-fish gelatin blend film. From Electron Spin Resonance (ESR), signal at 3500 G for blend film was identified as free radical formation during irradiation, which might introduce intermolecular cross-linking into the polymer matrix, thus affecting structural properties. Tensile Strength (TS) for gelatin film significantly increased with growing irradiation doses (improved by 30% for 60 kGy), but the TS of chitosan and blend films were not significantly affected. On th…

food.ingredientMaterials scienceGeneral Chemical EngineeringAnalytical chemistryGelatinAbsorbanceChitosanchemistry.chemical_compoundOxygen permeabilityfoodUV-Vis & FTIR spectroscopiesUltimate tensile strength[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyIrradiationFourier transform infrared spectroscopyESRchemistry.chemical_classificationtechnology industry and agricultureGelatin-chitosan interactionsGeneral ChemistryPolymerMechanical and barrier propertieschemistryElectron beam irradiation[SDV.AEN]Life Sciences [q-bio]/Food and NutritionFood ScienceNuclear chemistry
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Measurements of volcanic SO2 and CO2 fluxes by combined DOAS, Multi-GAS and FTIR observations: a case study from Turrialba and Telica volcanoes

2014

Over the past few decades, substantial progress has been made to overcome the technical difficulties of continuously measuring volcanic SO2 emissions. However, measurements of CO2 emissions still present many difficulties, partly due to the lack of instruments that can directly measure CO2 emissions and partly due to its strong atmospheric background. In order to overcome these difficulties, a commonly taken approach is to combine differential optical absorption spectroscopy (DOAS) by using NOVAC scan-DOAS instruments for continuous measurements of crateric SO2 emissions, and electrochemical/NDIR multi-component gas analyser system (multi-GAS) instruments for measuring CO2/SO2 ratios of exc…

geographygeography.geographical_feature_categoryDifferential optical absorption spectroscopyMineralogy7. Clean energyPlumeVolcanic SO2 and CO2 fluxesVolcanic plumeVolcanoFTIR13. Climate actionDOASGas analyserGeneral Earth and Planetary SciencesDOAS; FTIR; Multi-GAS; Volcanic SO2 and CO2 fluxesFourier transform infrared spectroscopyGeologyMulti-GAS
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FTIR analysis of the high pressure response of native insulin assemblies

2013

It is widely recognized that a central role in conferring stability to the structure of proteins against misfolding and aggregation is played by the formation of oligomers. The case of insulin is prototypical in this respect: in our body it is stored up in stable inactive hexameric assemblies whereas only in its monomeric form it recovers the role of regulating carbohydrate and fat metabolism. In the present paper, exploiting the optimal coupling between FTIR spectroscopy and diamond anvil cell technique, we probe the stability of different insulin oligomeric forms under high pressure, namely over the ranges 0-15 kbar for water solution and 0-80 kbar for dry powder. Results obtained show di…

insulinftirInsulinmedicine.medical_treatmentOrganic Chemistryhigh pressure biophysicsdiamond anvil cel; insulin; ftir; high pressure biophysicsCarbohydrateDiamond anvil cellAnalytical ChemistryDiamond anvil cellInorganic ChemistryCoupling (electronics)chemistry.chemical_compoundCrystallographyProtein structureMonomerchemistryHigh pressureBiophysicsmedicinediamond anvil celHigh pressure biophysicFourier transform infrared spectroscopySpectroscopy
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Bioaccumulation of Trace Elements from Aqueous Solutions by Selected Terrestrial Moss Species

2022

The interrelationship between metal concentrations in mosses and their surroundings prompts research toward examining their accumulation properties, as it is particularly important for their usage in biomonitoring studies that use mosses. In this study, the kinetics of elemental sorption in three moss species (Pleurozium schreberi, Dicranum polysetum, and Sphagnum fallax) were investigated under laboratory conditions. Sorption from metal salt solutions was carried out under static conditions with decreasing elemental concentration. Functional groups responsible for binding metal cations to the internal structures of the mosses were also identified. It was shown that the equilibrium state wa…

mossesbioaccumulation; sorption; mosses; heavy metals; FTIR; urban areasbioaccumulationsorptionGeneral Immunology and MicrobiologyFTIRurban areasGeneral Agricultural and Biological Sciencesheavy metalsGeneral Biochemistry Genetics and Molecular BiologyBiology
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Tolerance, Adaptation, and Cell Response Elicited by Micromonospora sp. Facing Tellurite Toxicity: A Biological and Physical-Chemical Characterization

2022

The intense use of tellurium (Te) in industrial applications, along with the improper disposal of Te-derivatives, is causing their accumulation in the environment, where oxyanion tellurite (TeO32−) is the most soluble, bioavailable, and toxic Te-species. On the other hand, tellurium is a rare metalloid element whose natural supply will end shortly with possible economic and technological effects. Thus, Te-containing waste represents the source from which Te should be recycled and recovered. Among the explored strategies, the microbial TeO32− biotransformation into less toxic Te-species is the most appropriate concerning the circular economy. Actinomycetes are ideal candidates in…

multivariate statistical analysisExtracellular Polymeric Substance MatrixSuperoxide DismutaseOrganic ChemistryGeneral MedicineSettore BIO/19 - Microbiologia Generalefatty acidsMicromonosporaCatalysisComputer Science ApplicationsInorganic ChemistryFTIR spectroscopyProtein Aggregatestellurite; bacterial cell membrane; cell morphology changes; fatty acids; FTIR spectroscopy; oxidative stress; heavy metals; multivariate statistical analysisbacterial cell membranecell morphology changesoxidative stressPhysical and Theoretical ChemistryTelluriumheavy metalstelluriteMolecular BiologySpectroscopy
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Role of Solvent on Protein-Matrix Coupling in MbCO Embedded in Water-Saccharide Systems: an FTIR study.

2006

Embedding protein in sugar systems of low water content enables one to investigate the protein dynamicstructure function in matrixes whose rigidity is modulated by varying the content of residual water. Accordingly, studying the dynamics and structure thermal evolution of a protein in sugar systems of different hydration constitutes a tool for disentangling solvent rigidity from temperature effects. Furthermore, studies performed using different sugars may give information on how the detailed composition of the surrounding solvent affects the internal protein dynamics and structural evolution. In this work, we compare Fourier transform infrared spectroscopy measurements (300–20 K) on MbCO e…

saccharides FTIR spectroscopy water protein
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