Search results for "Allylamine"

showing 10 items of 11 documents

Synthesis of fluorinated allylic amines: Reaction of 2-(trimethylsilyl)ethyl sulfones and sulfoxides with fluorinated imines

2007

A new synthesis of fluorinated allylamines through the reaction of 2-(trimethylsilyl)ethyl sulfones and sulfoxides (as vinyl anion equivalents) with imines and imino esters has been described. The process includes a TBAF-mediated fragmentation of 2-(trimethylsilyl)ethyl sulfones to afford the desired allylic amines. When the reaction is performed with the corresponding sulfoxides, the fragmentation takes place under the addition conditions, affording the final products in a single step. (C) 2007 Elsevier B.V. All rights reserved.

Fluorinated iminesAllylic rearrangementTrimethylsilylfluorinated allylaminesChemistryOrganic ChemistrySingle stepBiochemistryInorganic Chemistrychemistry.chemical_compound2-(Trimethylsilyl)ethyl sulfones and sulfoxidesFragmentation (mass spectrometry)Fluorinated imino estersEnvironmental ChemistryOrganic chemistryPhysical and Theoretical ChemistryJournal of Fluorine Chemistry
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Thermodynamic Parameters for the Protonation of Poly(allylamine) in concentrated LiCl(aq) and NaCl(aq)

2004

The acid-base properties of poly(allylamine) (MW ) 15 kDa) were determined by potentiometry and calorimetry in aqueous solutions at t ) 25 °C. Potentiometric measurements were carried out in a wide range of ionic strengths (0.1 e I/molâL-1 e 5.0) in NaCl(aq) and LiCl(aq), while enthalpy changes for the protonation of poly(allylamine) were determined by calorimetry in the same ionic strength range but only in NaCl(aq). Analysis of the experimental data was carried out using two different models: the first based on a modified Henderson-Hasselbalch two parameter equation and the second on the three parameter equation proposed by Ho¨gfeldt. Protonation constants are given for both models and io…

General Chemical EngineeringEnthalpyPotentiometric titrationInorganic chemistryIonic bondingProtonationGeneral ChemistryCalorimetryProtonationPoly(allylamine)Allylaminechemistry.chemical_compoundchemistrySpecific ion interaction theoryspeciationIonic strengthPhysical chemistrySettore CHIM/01 - Chimica Analitica
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Titanium complexes for the formation of nitrogen compounds : synthesis of homoallylamines and amidines

2011

Homoallylic amines are key reagents for the formation of a large number of biologically interesting products. Due to the double bond of their allylic moiety, easily functionalisable, they are commonly used in organic synthesis. This research work deals with the synthesis of homoallylic amines thanks to titanium complexes. In fact, the reductive coupling between of imines and dienes promoted by titanium allows the formation of diastereoisomeric homoallylamines syn and anti. The diastereoselectivity of the reaction is directly affected by the nitrogen substituent. Whether it is benzyl or phenyl, the selectivity will be in favour of syn or anti respectively. Moreover, the addition of a the Lew…

Homoallylic aminesTitaniumDérivés benzotriazoleAllyltitanationHomoallyl-(E)-homocrotylaminesHomoallylaminesMacrocyclic diamidinesRéarrangement cationique 2-Aza-CopeTitaneCationic 2-Aza- Cope rearrangementDioxocyclamesDérivés bis(benzotriazole)HomocrotylaminesBenzotriazole derivatives[CHIM.OTHE] Chemical Sciences/Other[ CHIM.OTHE ] Chemical Sciences/OtherBis(benzotriazole) derivativesDioxocyclamsAmines homoallyliques[CHIM.OTHE]Chemical Sciences/OtherDiamidines macrocyliques
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The effect of extracellular matrix proteins on the cellular response of HUVECS and HOBS after covalent immobilization onto titanium

2014

Biomimetic surface modifications are regarded as promising approach to stimulate cellular behavior at the interface of implant materials. Aim of the study was an evaluation of the cellular response of human umbilical cord cells (HUVECS) and human osteoblasts (HOBS) on titanium covalently coated with the extracellular matrix (ECM) proteins fibrinogen, collagen, laminin, and osteopontin. For the surface modification, titanium discs were first amino-functionalized by plasma polymerization of allylamine. The ECM protein conjugation was performed using the linker molecule α, ω-bis-N-hydroxysuccinimide polyethylene glycol (Di-NHS linker). For surface characterization, infrared spectroscopy and fl…

Materials sciencePlasma GasesSpectrophotometry InfraredBiomedical EngineeringAllylaminePolymerizationAllylamineBiomaterialsExtracellular matrixchemistry.chemical_compoundLamininCell AdhesionHuman Umbilical Vein Endothelial CellsHumansSurface plasmon resonanceCell adhesionFluorescein isothiocyanateTitaniumExtracellular Matrix ProteinsOsteoblastsbiologyMetals and AlloysSurface Plasmon ResonanceFibronectinsFibronectinKineticsImmobilized ProteinschemistryBiochemistryCeramics and Compositesbiology.proteinBiophysicsSurface modificationOsteopontinCollagenLamininJournal of Biomedical Materials Research Part A
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Photoluminescence immunosensor based on bovine leukemia virus proteins immobilized on the ZnO nanorods

2019

Bovine leukaemia virus (BLV) proteins gp51, which are serving as antigens for specific antibodies against BLV proteins (anti-gp51), were applied as biological recognition part in the design of immunosensor devoted for the determination of anti-gp51. The efficiency of the immobilization of BLV proteins gp51 on ZnO nanorod (ZnO- NR) modified glass (ZnO-NR/glass) surface was evaluated. The formation of antigen-antibody complex on the ZnO/glass modified by the BLV proteins gp51 (gp51/ZnO-NR/glass) was investigated by the determination of changes in ZnO photoluminescence. The applicability of gp51/ZnO-NR/glass in the design of photoluminescence based immunosensor was evaluated. Bovine serum albu…

PhotoluminescenceAntigen-antibody complexBovine leukemia virus (BLV)ZnO nanorods02 engineering and technology010402 general chemistry01 natural sciencesMaterials ChemistryElectrical and Electronic EngineeringBovine serum albuminInstrumentationPhotoluminescencechemistry.chemical_classificationOptical immunosensorBovine leukemia virusbiologyChemistryBiomoleculeMetals and Alloys021001 nanoscience & nanotechnologyCondensed Matter Physicsbiology.organism_classification0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialsbiology.protein:NATURAL SCIENCES [Research Subject Categories]Nanorod0210 nano-technologySelectivityLayer (electronics)Polyallylamine hydrochlorideNuclear chemistrySensors and Actuators B: Chemical
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Gold nanostars coated with neutral and charged polyethylene glycols: A comparative study of in-vitro biocompatibility and of their interaction with S…

2015

Gold nanostars (GNS) have been coated with four different polyethylene glycols (PEGs) equipped with a -SH function for grafting on the gold surface. These PEGs have different chain lengths with average MW = 2000, 3000, 5000 and average number of -O-CH2-CH2 - units 44, 66, and 111, respectively. Two are neutral and two are terminated with -COOH and -NH2 functions, thus bearing negative and positive charges at physiological pH, thanks to the formation of carboxylate and ammonium groups. The negative charge of the GNS coated with PEG carboxylate has also been exploited to further coat the GNS with the PAH (polyallylamine hydrochloride) cationic polymer. Vitality tests have been carried out on …

Polyethylene glycolBiocompatibilityCell SurvivalMetal NanoparticlesPolyethylene glycolCell morphologyBiochemistryPolyethylene GlycolsInorganic Chemistrychemistry.chemical_compoundNeuroblastomaMicroscopy Electron TransmissionCell Line TumorPEG ratioOrganic chemistryHumansCarboxylatechemistry.chemical_classificationGold nanostarsMolecular StructureEndocytosiCationic polymerizationGold nanostarPolymerEndocytosisTwo-photon luminescenceNanomedicinechemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoBiocompatibilityGoldPolyallylamine hydrochlorideNuclear chemistry
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Comparison of growth & function of endothelial progenitor cells cultured on deproteinized bovine bone modified with covalently bound fibronectin …

2016

Objectives The objective of this study was to assess and compare the growth and function of Endothelial Progenitor Cells (EPCs) cultured on covalently bonded Vascular Endothelial Growth Factor (VEGF) and covalently bonded Fibronectin (FN) coating on deproteinized bovine bone (DBB) (test samples), compared to non-modified DBB blocks (control sample). Materials and methods The test samples were prepared by plasma polymerization of allylamine onto DBB blocks. Group1 of test samples were prepared with VEGF coating (VEGF-DBB) where as the Group2 test samples were coated with FN (FN-DBB). Non-modified DBB blocks served as a Control. EPCs were isolated and cultivated from buffy coats of peripheral…

Vascular Endothelial Growth Factor ANitric Oxide Synthase Type IIIAngiogenesis0206 medical engineeringNitric Oxide Synthase Type IICell CountEnzyme-Linked Immunosorbent Assay02 engineering and technologyReal-Time Polymerase Chain ReactionCell morphologyAllylamine03 medical and health scienceschemistry.chemical_compound0302 clinical medicineEnosAnimalsHumansMTT assayProgenitor cellCells CulturedCell ProliferationEndothelial Progenitor CellsMicroscopy Confocalbiology030206 dentistrybiology.organism_classification020601 biomedical engineeringMolecular biologyFibronectinsVascular endothelial growth factorFibronectinchemistryBone SubstitutesImmunologybiology.proteinCattleOral SurgeryClinical Oral Implants Research
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Understanding the impact of poly(allylamine) plasma grafting on the filtration performances of a commercial polymeric membrane

2019

Abstract Commercial membranes often exhibit difficulties in rejecting specific ionic species, and especially multivalent cations, due to their usual negative charge. To face this drawback, it is proposed here to functionalize the membrane surface by allylamine plasma polymerization. The impact of this modification on both permeation flux and ion rejection is investigated for single salt solutions and ion mixtures. It is shown that the membrane behaves like a positive membrane from the point of view of cation rejection but the negative charge (and the corresponding electrical field) inside pores leads to high rejection of divalent anions like a negative membrane. This allows a high selectivi…

chemistry.chemical_classificationIonic bondingFiltration and Separation02 engineering and technologyPermeation021001 nanoscience & nanotechnologyPlasma polymerizationAnalytical ChemistryDivalentIonAllylaminechemistry.chemical_compoundMembrane020401 chemical engineeringchemistryPolymerizationChemical engineering0204 chemical engineering0210 nano-technology[PHYS.ASTR]Physics [physics]/Astrophysics [astro-ph]ComputingMilieux_MISCELLANEOUS
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Derivatization of Plasma Polymerized Thin Films and Attachment of Biomolecules to Influence HUVEC-Cell Adhesion

2011

chemistry.chemical_classificationMaterials sciencePolymers and PlasticsbiologyBiomoleculeAdhesionCondensed Matter PhysicsAllylamineFibronectinchemistry.chemical_compoundchemistryPolymerizationPolymer chemistrybiology.proteinThin filmCell adhesionDerivatizationPlasma Processes and Polymers
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Tandem Reactions of 1,2,4-Oxadiazoles with Allylamines

2011

A reaction of 3-chloro-1,2,4-oxadiazoles with allylamine and diallylamine has been investigated. 3,3a,4,5-Tetrahydroisoxazolo[3,4-d]pyrimidines are produced through a tandem ANRORC/[3 + 2]cycloaddition pathway consisting of the addition of allylamine to the 1,2,4-oxadiazole, followed by ring opening, nitrone formation, and finally cycloaddition. 3-N-Allylamino-1,2,4-oxadiazoles were also obtained as minor products through a classical SNAr. Conversely, a reaction with diallylamine produces 3-N,N-diallylamino-1,2,4-oxadiazole and imidazoline through tandem SNAr/aziridination and nucleophilic ring opening.

chemistry.chemical_classificationOxadiazolesMolecular StructureTandemChemistryOrganic ChemistryImidazoline receptorStereoisomerismSettore CHIM/06 - Chimica OrganicaRing (chemistry)BiochemistryMedicinal chemistryCycloadditionAllylamineAllylamineNitronechemistry.chemical_compoundANRORC Oxadiazoles cycloadditionsPyrimidinesNucleophileCyclizationNucleophilic aromatic substitutionPhysical and Theoretical Chemistry
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