Search results for "Hydrolysi"

showing 10 items of 635 documents

Gelchromatographie, 12. Gelchromatographisches Verhalten von Polyvinylalkoholgelen

1975

Durch Hydrolyse von Copolymeren aus Vinylacetat und 1,4-Bis(vinyloxy)butan werden vernetzte Polyvinylalkoholgele hergestellt und ihre Eignung als hydrophile stationare Phase bei gelchromatographischen Trennungen mit Dextranen, Poly(athylenoxid)en und Proteinen als Testsubstanzen gepruft. Die Gele sind druck- und biostabil und zeigen keine storende Adsorption. Je nach Herstellungsbedingungen werden Ausschlusmolekulargewichte bis zu 106 erzielt. Hydrolysis of copolymers from vinyl acetate and 1,4-bis(vinyloxy)butane results in crosslinked poly(vinyl alcohol) gels. Their applicability as hydrophilic stationary phase in gel permeation chromatography is investigated using dextranes, poly(ethylen…

Gel permeation chromatographychemistry.chemical_compoundVinyl alcoholHydrolysisAdsorptionchemistryEthylene oxidePolymer chemistryVinyl acetateCopolymerHydrophileDie Makromolekulare Chemie
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3H-1,2-benzoxathiepine 2,2-dioxides: a new class of isoform-selective carbonic anhydrase inhibitors

2017

Abstract A new chemotype with carbonic anhydrase (CA, EC 4.2.1.1) inhibitory action has been discovered, the homo-sulfocoumarins (3H-1,2-benzoxathiepine 2,2-dioxides) which have been designed considering the (sulfo)coumarins as lead molecules. An original synthetic strategy of a panel of such derivatives led to compounds with a unique inhibitory profile and very high selectivity for the inhibition of the tumour associated (CA IX/XII) over the cytosolic (CA I/II) isoforms. Although the CA inhibition mechanism with these new compounds is unknown for the moment, we hypothesize that it may be similar to that of the sulfocoumarins, i.e. hydrolysis to the corresponding sulfonic acids which therea…

Gene isoformStereochemistryHigh selectivityInhibitory postsynaptic potential01 natural sciencesStructure-Activity RelationshipHydrolysisCarbonic anhydraseDrug DiscoveryHumansMoleculeCarbonic Anhydrase InhibitorsCarbonic AnhydrasesPharmacologyCarbonic anhydraseDose-Response Relationship DrugMolecular Structurebiology010405 organic chemistryChemistrylcsh:RM1-950Active sitehomo-sulfocoumarinsGeneral MedicineCyclic S-Oxides0104 chemical sciencesinhibitor010404 medicinal & biomolecular chemistryCytosollcsh:Therapeutics. PharmacologyBiochemistrysulfocoumarinbiology.proteinResearch PaperJournal of Enzyme Inhibition and Medicinal Chemistry
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Experimental investigation of the grain size dependence of the hydrolysis of LiH powder

2011

International audience; The hydrolysis reaction of LiH powder has been investigated in order to determine the products, rates and mechanisms of this reaction and the influence of the experimental parameters. Raman spectroscopy, X-ray diffraction and gravimetric analysis were used. It was shown that the product of hydrolysis was the hydroxide of lithium (LiOH) for low partial pressure of water (≈50 Pa) and LiOH*H2O for a higher partial pressure of water (>2000 Pa). Moreover, data obtained using gravimetric analysis inside a glove box containing a controlled partial pressure of water (500 ppmv/50 Pa at 25 °C) were used to determine the rate of the reaction versus particle size. The experiment…

General Chemical Engineering[ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Analytical chemistrychemistry.chemical_element02 engineering and technologyPartial pressure010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesChemical reaction0104 chemical scienceschemistry.chemical_compoundHydrolysischemistryLithium hydride[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]HydroxideGravimetric analysisLithiumParticle size0210 nano-technology
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Heterometallic Titanium-Organic Frameworks as Dual Metal Catalysts for Synergistic Non-Buffered Hydrolysis of Nerve Agent Simulants

2020

Heterometallic metal-organic frameworks (MOFs) can offer important advantages over their homometallic counterparts to enable targeted modification of their adsorption, structural response, electronic structure, or chemical reactivity. However, controlling metal distribution in these solids still remains a challenge. The family of mesoporous titanium-organic frameworks, MUV-101(M), displays heterometallic TiM2 nodes assembled from direct reaction of Ti(IV) and M(II) salts. We use the degradation of nerve agent simulants to demonstrate that only TiFe2 nodes are capable of catalytic degradation in non-buffered conditions. By using an integrative experimental-computational approach, we rational…

General Chemical Engineeringchemistry.chemical_element02 engineering and technology010402 general chemistryHeterogeneous catalysis01 natural sciencesBiochemistryCatalysisMetalchemistry.chemical_compoundHydrolysisMaterials ChemistryEnvironmental ChemistrySynergistic catalysisLewis acids and basesBimetallic stripBiochemistry (medical)General ChemistryPurple acid phosphatases021001 nanoscience & nanotechnologyCombinatorial chemistry0104 chemical scienceschemistryvisual_artvisual_art.visual_art_mediumChemical stabilityTrimesic acid0210 nano-technologyBrønsted–Lowry acid–base theoryTitanium
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Rational Design of a Carrier Protein for the Production of Recombinant Toxic Peptides in Escherichia coli

2016

Commercial uses of bioactive peptides require low cost, effective methods for their production. We developed a new carrier protein for high yield production of recombinant peptides in Escherichia coli very well suited for the production of toxic peptides like antimicrobial peptides. GKY20, a short antimicrobial peptide derived from the C-terminus of human thrombin, was fused to the C-terminus of Onconase, a small ribonuclease (104 amino acids), which efficiently drove the peptide into inclusion bodies with very high expression levels (about 200-250 mg/L). After purification of the fusion protein by immobilized metal ion affinity chromatography, peptide was obtained by chemical cleavage in d…

Genetics and Molecular Biology (all)0301 basic medicineProtein ExpressionCarboxylic Acidslcsh:MedicinePeptideMedicine (all); Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)medicine.disease_causeBiochemistrylaw.inventionlawMedicine and Health SciencesAmino Acidslcsh:ScienceAcetic Acidchemistry.chemical_classificationAntimicrobial Cationic PeptideMultidisciplinaryAntimicrobialsOrganic CompoundsHydrolysisMedicine (all)Chemical ReactionsDrugsRecombinant ProteinRecombinant ProteinsAmino acidChemistryBiochemistryPhysical SciencesRecombinant DNAHumanResearch Article030106 microbiologyAntimicrobial peptidesResearch and Analysis MethodsMicrobiologyRibonuclease03 medical and health sciencesResidue (chemistry)RibonucleasesAffinity chromatographyMicrobial ControlGene Expression and Vector TechniquesEscherichia colimedicineSulfur Containing Amino AcidsHumansCysteineMolecular Biology TechniquesMolecular BiologyEscherichia coliPharmacologyMolecular Biology Assays and Analysis TechniquesBiochemistry Genetics and Molecular Biology (all)lcsh:ROrganic ChemistryFormic AcidChemical CompoundsBiology and Life SciencesProteins030104 developmental biologyAgricultural and Biological Sciences (all)chemistrylcsh:QCarrier ProteinPeptidesCarrier ProteinsAcidsAntimicrobial Cationic PeptidesCysteinePLOS ONE
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Active Site Mapping of Xylan-Deconstructing Enzymes with Arabinoxylan Oligosaccharides Produced by Automated Glycan Assembly

2017

Xylan-degrading enzymes are crucial for the deconstruction of hemicellulosic biomass, making the hydrolysis products available for various industrial applications such as the production of biofuel. To determine the substrate specificities of these enzymes, we prepared a collection of complex xylan oligosaccharides by automated glycan assembly. Seven differentially protected building blocks provided the basis for the modular assembly of 2-substituted, 3-substituted, and 2-/3-substituted arabino- and glucuronoxylan oligosaccharides. Elongation of the xylan backbone relied on iterative additions of C4-fluorenylmethoxylcarbonyl (Fmoc) protected xylose building blocks to a linker-functionalized …

GlycanGlycoside HydrolasesStereochemistryOligosaccharidesSOLID-PHASE SYNTHESISXylose010402 general chemistryARABINOXYLANPLANT CELL WALL01 natural sciencesCatalysisSubstrate Specificity//purl.org/becyt/ford/1 [https]chemistry.chemical_compoundHydrolysisCellvibrioGlucuronoxylanCatalytic DomainArabinoxylan//purl.org/becyt/ford/1.4 [https]Organic chemistryBacteroidesGlycoside hydrolaseSolid-Phase Synthesis Techniqueschemistry.chemical_classificationbiology010405 organic chemistryHydrolysisCARBOHYDRATESOtras Ciencias QuímicasOrganic ChemistryCiencias QuímicasActive siteGeneral ChemistryXylan0104 chemical sciencescarbohydrates (lipids)Xylosidaseschemistrybiology.proteinXylansENZYMESCIENCIAS NATURALES Y EXACTAS
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Stable, hydroxyl functional polycarbonates with glycerol side chains synthesized from CO(2) and isopropylidene(glyceryl glycidyl ether).

2012

A series of functional polycarbonates, poly((isopropylidene glyceryl glycidyl ether)-co-(glycidyl methyl ether) carbonate) (P((IGG-co-GME) C)) random copolymers with different fractions of 1,2-isopropylidene glyceryl glycidyl ether (IGG) units, is synthesized. After acidic hydrolysis of the acetal protecting groups, a new type of functional polycarbonate prepared directly from CO(2) and glycerol is obtained, namely poly((glyceryl glycerol)-co-(glycidyl methyl ether) carbonate) (P((GG-co-GME) C)). All hydroxyl functional samples exhibit monomodal molecular weight distributions with PDIs between 2.5 and 3.3 and M(n) between 12 000 and 25 000 g mol(-1) . Thermal properties reflect the amorphou…

GlycerolMaterials sciencePolymers and PlasticsPolyestersEtherPyrogallolCatalysisHydrolysischemistry.chemical_compoundPolymer chemistryMaterials ChemistrySide chainCopolymerGlycerolPolycarbonatechemistry.chemical_classificationPolycarboxylate CementOrganic ChemistryAcetalPolymerCarbon DioxideMolecular WeightZincchemistryvisual_artvisual_art.visual_art_mediumMacromolecular rapid communications
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Squaric Acid Mediated Synthesis and Biological Activity of a Library of Linear and Hyperbranched Poly(Glycerol)-Protein Conjugates

2012

Polymer-protein conjugates generated from side chain functional synthetic polymers are attractive because they can be easily further modified with, for example, labeling groups or targeting ligands. The residue specific modification of proteins with side chain functional synthetic polymers using the traditional coupling strategies may be compromised due to the nonorthogonality of the side-chain and chain-end functional groups of the synthetic polymer, which may lead to side reactions. This study explores the feasibility of the squaric acid diethyl ester mediated coupling as an amine selective, hydroxyl tolerant, and hydrolysis insensitive route for the preparation of side-chain functional, …

GlycerolModels MolecularCovalent AttachmentPolymers and PlasticsPolymersBioengineeringSquaric acidImmunological PropertiesLigandsSmall Molecule LibrariesBiomaterialsHydrolysischemistry.chemical_compoundResidue (chemistry)Thiazolidine-2-ThioneMaterials ChemistrySide chainCopolymerOrganic chemistryBovine Serum-Albuminchemistry.chemical_classificationPoly(Ethylene Glycol)Molecular StructureCopolymersPolymer StructureSerum Albumin BovinePolymerPolyethylene-GlycolMolecular WeightPolyglycerolschemistryMuramidaseAmine gas treatingFunctional polymersCyclobutanesDerivatives
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New biodegradable hydrogels based on a photocrosslinkable modified polyaspartamide: synthesis and characterization

1999

Abstract α,β-Poly( N -2-hydroxyethyl)- dl -aspartamide (PHEA), a synthetic water-soluble biocompatible polymer, was derivatized with glycidyl methacrylate (GMA), in order to introduce in its structure chemical residues having double bonds and ester groups. The obtained copolymer (PHG) contained 29 mol% of GMA residues. PHG aqueous solutions at various concentrations ranging from 30 to 70 mg/ml were exposed to a source of UV rays at λ 254 nm in the presence or in the absence of N , N ′-methylenebisacrylamide (BIS); the formation of compact gel phases was observed beginning from 50 mg/ml. The obtained networks were characterized by FT-IR spectrophotometry and swelling measurements which evide…

Glycidyl methacrylateMagnetic Resonance SpectroscopyDouble bondPolymersUltraviolet RaysBiophysicsBiochemistryEsterasechemistry.chemical_compoundDrug Delivery SystemsEnzymatic hydrolysisSpectrophotometrySpectroscopy Fourier Transform InfraredPolymer chemistrymedicineCopolymerMolecular Biologychemistry.chemical_classificationAcrylamidesAqueous solutionmedicine.diagnostic_testChemistryWaterHydrogelsHydrogen-Ion ConcentrationBiodegradation EnvironmentalSelf-healing hydrogelsEpoxy CompoundsMethacrylatesPeptidesBiochimica et Biophysica Acta (BBA) - General Subjects
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New biodegradable hydrogels based on an acryloylated polyaspartamide cross-linked by gamma irradiation

1999

Alpha, beta-poly(N-2-hydroxyethyl)-DL-aspartamide (PHEA), a synthetic biocompatible macromolecule, was functionalized with glycidyl methacrylate (GMA) in order to introduce in its side chains residues having double bonds and ester groups. The copolymer (PHG), obtained from PHEA and GMA, had a degree of derivatization of 29 mol%. PHG aqueous solutions are cross-linked by gamma radiation at 0 degrees C either in the presence or absence of N,N'-methylenebisacrylamide (BIS) giving rise to new hydrogel systems. In both cases gelation occurs at quite low doses (0.26 and 0.4 kGy, respectively). The obtained networks were characterized by FT-IR spectrophotometry which confirmed that the cross-linki…

Glycidyl methacrylateMagnetic Resonance SpectroscopyMaterials scienceBiomedical EngineeringBiophysicsBiocompatible MaterialsBioengineeringIn Vitro TechniquesBiomaterialsHydrolysischemistry.chemical_compoundEnzymatic hydrolysisMaterials TestingSpectroscopy Fourier Transform InfraredPolymer chemistryCopolymerReduced viscosityAqueous solutionHydrolysisHydrogelsBiodegradation EnvironmentalCross-Linking ReagentschemistryGamma RaysSelf-healing hydrogelsPeptidesMacromoleculeJournal of Biomaterials Science, Polymer Edition
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