Search results for "Hydrolysi"

showing 10 items of 635 documents

X-ray crystallography-promoted drug design of carbonic anhydrase inhibitors.

2015

1-N-Alkylated-6-sulfamoyl saccharin derivatives were prepared and assayed as carbonic anhydrase inhibitors (CAIs). During X-ray crystallographic experiments an unexpected hydrolysis of the isothiazole ring was evidenced which allowed us to prepare highly potent enzyme inhibitors with selectivity for some isoforms with medical applications.

DrugModels MolecularStereochemistryProtein Conformationmedia_common.quotation_subjectCrystallography X-RayCatalysisHydrolysischemistry.chemical_compoundCarbonic anhydraseMaterials ChemistryHumansCarbonic Anhydrase Inhibitorsmedia_commonCarbonic Anhydraseschemistry.chemical_classificationIsothiazolebiologyMetals and AlloysGeneral ChemistryLyaseSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsIsoenzymesEnzymechemistryDrug DesignX-ray crystallographyCeramics and Compositesbiology.proteinSelectivityChemical communications (Cambridge, England)
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Electrospinning of α,β-poly(N-2-hydroxyethyl)-dl-aspartamide-graft-polylactic acid to produce a fibrillar scaffold

2010

Abstract α,β-Poly( N -2-hydroxyethyl)- dl -aspartamide grafted with polylactic acid (PHEA- g -PLA) is a biocompatible and biodegradable amphiphilic copolymer that has been already employed to prepare a drug delivery system. In this study we have prepared for the first time a fibrillar scaffold from PHEA- g -PLA by the electrospinning of a solution of this copolymer in a mixture of N , N -dimethyl formamide (DMF) and acetone (80:20 vol/vol). The average diameter and the morphology of electrospun fibers were detected by scanning electron microscopy. Chemical degradation studies in phosphate buffer solution pH 7.4 have been performed until 15 days in order to obtain a preliminary information a…

ELECTROSPINNING PHEA PLA FIBRILLAR SCAFFOLD SCAFFOLD.Materials sciencePolymers and PlasticsOrganic ChemistryGeneral Physics and AstronomyBiomaterialElectrospinningHydrolysischemistry.chemical_compoundPolylactic acidchemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoNanofiberPolymer chemistryDrug deliveryMaterials ChemistryAcetoneCopolymerEuropean Polymer Journal
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Erratum to “Hydrolytic enzyme activity of Paenibacillus sp. strain B2 and effects of the antagonistic bacterium on cell integrity of two soil-borne p…

2001

Ce texte contient des corrections apportées à l'article " Hydrolytic enzyme activity of Paenibacillus sp. strain B2 and effects of the antagonistic bacterium on cell integrity of two soil-borne pathogenic fungi" sorti dans le numéro 15 du journal "Applied Soil Ecology" sorti en 2000.

EcologyStrain (chemistry)Soil ScienceBiologybiology.organism_classificationAgricultural and Biological Sciences (miscellaneous)Enzyme assayMicrobiologyHydrolysisSoil borneBotanyCell integritybiology.proteinPaenibacillus sp.Bacteria
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Solid acid-catalyzed depolymerization of barley straw driven by ball milling

2015

This study describes a time and energy saving, solvent-free procedure for the conversion of lignocellulosic barley straw into reducing sugars by mechanocatalytical pretreatment. The catalytic conversion efficiency of several solid acids was tested which revealed oxalic acid dihydrate as a potential catalyst with high conversion rate. Samples were mechanically treated by ball milling and subsequently hydrolyzed at different temperatures. The parameters of the mechanical treatment were optimized in order to obtain sufficient amount of total reducing sugar (TRS) which was determined following the DNS assay. Additionally, capillary electrophoresis (CE) and Fourier transform infrared spectrometr…

Environmental Engineering020209 energyOxalic acidCarbohydratesBioengineering02 engineering and technology01 natural sciencesCatalysisPolymerizationCatalysischemistry.chemical_compoundHydrolysisSpectroscopy Fourier Transform Infrared0202 electrical engineering electronic engineering information engineeringOrganic chemistryWaste Management and DisposalBall millWaste Productschemistry.chemical_classification010405 organic chemistryRenewable Energy Sustainability and the EnvironmentDepolymerizationHydrolysisOxalic AcidTemperaturefood and beveragesHordeumGeneral MedicineStraw0104 chemical sciencesReducing sugarKineticsAcid strengthchemistryBiotechnologyNuclear chemistryBioresource Technology
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Effective saccharification of lignocellulosic barley straw by mechanocatalytical pretreatment using potassium pyrosulfate as a catalyst

2017

The catalytic conversion of lignocellulosic biomass is attractive due to the feasible generation of valuable products such as reducing sugars which constitute the basic substrates for chemical and transportation fuel production, as well as the production of renewable hydrogen. This study shows the efficient conversion of lignocellulose, especially hemicellulose, into reducing sugars such as xylose and galactose, by mechanocatalysis using potassium pyrosulfate, K2S2O7, as an effective salt catalyst. Ball milling was performed, introducing a mechanical force which, combined with chemical pretreatment, leads to reducing sugar yields (40%) almost as high as when commonly used sulfuric acid was …

Environmental EngineeringCarbohydratesLignocellulosic biomassBioengineeringXylose010402 general chemistry01 natural sciencesPotassium pyrosulfateCatalysischemistry.chemical_compoundHydrolysisHemicelluloseBiomassWaste Management and Disposalchemistry.chemical_classificationXyloseWaste management010405 organic chemistryRenewable Energy Sustainability and the EnvironmentHydrolysisHordeumSulfuric acidGeneral MedicinePulp and paper industry0104 chemical sciencesReducing sugarchemistryPotassiumBioresource Technology
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PURIFICATION OF HARDWOOD-DERIVED AUTOHYDROLYSATES

2012

Carbohydrate-containing hydrolysates (1.1 to 14.9% of wood dry matter) obtained from autohydrolysis (at 130 to 150°C for 30 to 120 minutes) of birch (Betula pendula) chips prior to pulping were purified with respect to non-carbohydrate materials, without carbohydrate losses, either by ethyl acetate extraction or XAD-4 resin treatment. In the former case, about 50% of lignin and practically all the furanoic compounds (2-furaldehyde and 5-(hydroxymethyl)furfural) could be removed, whereas in the latter case, the corresponding amounts were about 30% and 50 to 90%, respectively. A partial recovery of various unsaturated impurities is of importance, because they may act as inhibitors when bioche…

Environmental EngineeringChromatographylcsh:BiotechnologyExtraction (chemistry)Ethyl acetateEthyl acetateBioengineeringFurfuralHydrolysatechemistry.chemical_compoundchemistryAutohydrolysisBiorefininglcsh:TP248.13-248.65HardwoodLigninOrganic chemistryDry matterHydroxymethylBiorefiningBiomassWaste Management and DisposalXAD-4PurificationBioResources
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Towards the design of organocatalysts for nerve agents remediation: The case of the active hydrolysis of DCNP (a Tabun mimic) catalyzed by simple ami…

2015

We report herein a study of the hydrolysis of Tabun mimic DCNP in the presence of different amines, aminoalcohols and glycols as potential suitable organocatalysts for DCNP degradation. Experiments were performed in CD3CN in the presence of 5% D2O, which is a suitable solvent mixture to follow the DCNP hydrolysis. These studies allowed the definition of different DCNP depletion paths, resulting in the formation of diethylphosphoric acid, tetraethylpyrophosphate and phosphoramide species as final products. Without organocatalysts, DCNP hydrolysis occurred mainly via an autocatalysis path. Addition of tertiary amines in sub-stoichiometric amounts largely enhanced DCNP depletion whereas non-te…

Environmental EngineeringHealth Toxicology and MutagenesisOrganocatalystsCatalysisCatalysisNitrophenolsAutocatalysisGlycolschemistry.chemical_compoundHydrolysisQUIMICA ORGANICAEnvironmental ChemistryMoietyOrganic chemistryChemical Warfare AgentsAminesWaste Management and DisposalEnvironmental Restoration and RemediationTabunEthanolHydrolysisQUIMICA INORGANICAAmino AlcoholsPollutionOrganophosphatesSolventKineticsDiethylcyanophosphonatechemistryNerve agent simulantAmine gas treatingNerve AgentsJournal of Hazardous Materials
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2018

Reactivity is an important parameter when considering the chemical modification or dissolution of cellulose. Different pretreatment methods affect cellulose reactivity by decreasing its degree of polymerization (DP) and crystallinity. In this study, the molar mass of cellulose was decreased via enzymatic pretreatment. Three commercial endoglucanase-rich products were tested. The target was to reduce the viscosity of the pulp to below 200 mL/g and, thus, increase the reactivity of the cellulose. For comparison, cellulose was also pretreated with ozone, and the effects of each pretreatment method on crystallinity and monosaccharide composition of the resulting pulps were investigated. Both en…

Environmental EngineeringMolar massPulp (paper)Chemical modificationBioengineeringengineering.materialchemistry.chemical_compoundHydrolysisCrystallinitychemistryengineeringReactivity (chemistry)CelluloseDerivatizationWaste Management and DisposalNuclear chemistryBioResources
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Hydrolysis rates, methane production and nitrogen solubilisation of grey waste components during anaerobic degradation.

2005

Abstract Municipal grey waste (i.e. the remaining fraction in municipal waste management systems in which putrescibles (biowaste) and other recyclables (paper, metals, glass) are source-segregated) was manually sorted into six main fractions on the basis of composition and also separated by sieving (100 mm mesh size) into two fractions, oversized and undersized, respectively. In practice, in waste management plant the oversized fraction is (or will be) used to produce refuse-derived fuel and the undersized landfilled after biological stabilisation. The methane yields and nitrogen solubilisation of the grey waste and the different fractions (all studied samples were first milled to 5 mm part…

Environmental EngineeringMunicipal solid wasteManufactured MaterialsNitrogenBioengineeringFraction (chemistry)GarbageMethanechemistry.chemical_compoundBacteria AnaerobicCitiesWaste Management and DisposalPollutantWaste ProductsWaste managementRenewable Energy Sustainability and the EnvironmentHydrolysiscardboardGeneral MedicineBiodegradable wasteBiodegradationTotal dissolved solidsRefuse DisposalKineticsBiodegradation EnvironmentalchemistrySolubilityvisual_artvisual_art.visual_art_mediumMethaneFiltrationBioresource technology
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Multivariate Correlation between Analytical Data for Various Organics Dissolved during Autohydrolysis of Silver Birch (Betula pendula) Chips and Trea…

2014

Autohydrolysis pre-treatments were performed for the production of hemicellulose-rich autohydrolysates from silver birch (Betula pendula) chips prior to chemical pulping. Pre-treatment conditions were varied with respect to time (from 30 to 120 min) and temperature (130 and 150 °C), covering a P-factor range from 10 to 238. Hydrolysates were analyzed in terms of carbohydrates, lignin, volatile organic acids, and furanoic compounds. The analytical data were subjected to various chemometric techniques to establish the relationships between dissolved organic components, hardwood and softwood used in the experiments, and applied pre-treatment conditions. Using this method, differences between t…

Environmental EngineeringSoftwoodChemistrylcsh:BiotechnologyCarbohydratesPrincipal component analysisBioengineeringPulp and paper industryLigninChemical pulpingchemistry.chemical_compoundVolatile acidsAutohydrolysisBetula pendulaBiorefininglcsh:TP248.13-248.65HardwoodBetula pendulaOrganic chemistryLigninOrganic componentBiorefiningFuransWaste Management and DisposalBioResources
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