Search results for "RFA"

showing 10 items of 11106 documents

Anticoagulant Activity of the Enantiomers of Acenocoumarol in Man

1978

For the mono-coumarin derivatives warfarin and phen-procoumon it was shown that in man and rats the S(−) enantiomer is several times more potent as anticoagulant than the R(+) enantiomer. These stereoselective differences in the anticoagulant potency reflect differences in the affinity for the receptor site rather than differences in the pharmacokinetics.

Acenocoumarolmedicine.drug_classChemistryAnticoagulantWarfarinPharmacologyGlucaric AcidPharmacokineticsmedicinePotencyheterocyclic compoundsStereoselectivityEnantiomermedicine.drug
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Dental management of patients receiving anticoagulant and/or antiplatelet treatment

2013

Introduction: Adequate hemostasis is crucial for the success of invasive dental treatment, since bleeding problems can give rise to complications associated with important morbidity-mortality. The dental treatment of patients who tend to an increased risk of bleeding due to the use of anticoagulant and/or antiplatelet drugs raises a challenge in the daily practice of dental professionals. Adequate knowledge of the mechanisms underlying hemostasis, and the optimized management of such patients, are therefore very important issues. Objectives: A study is made of the anticoagulant / antiplatelet drugs currently available on the market, with evaluation of the risks and benefits of suspending su…

Acenocoumarolmedicine.medical_specialtybusiness.industrymedicine.drug_classAnticoagulantWarfarinOdontologíaReviewCochrane Library:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludSystematic reviewHemostasisUNESCO::CIENCIAS MÉDICASmedicinePlatelet aggregation inhibitorOdontostomatology for the Disabled or Special PatientsIntensive care medicinebusinessGeneral Dentistrymedicine.drugCohort studyJournal of Clinical and Experimental Dentistry
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Effect of short-chain alcohols on surfactant-mediated reversed-phase liquid chromatographic systems.

2010

The behaviour of β-blockers in a reversed-phase liquid chromatographic (RPLC) column with mobile phases containing a short-chain alcohol (methanol, ethanol or 1-propanol), with and without the surfactant sodium dodecyl sulphate (SDS), was explored. Two surfactant-mediated RPLC modes were studied, where the mobile phases contained either micelles or only surfactant monomers at high concentration. Acetonitrile was also considered for comparison purposes. A correlation was found between the effects of the organic solvent on micelle formation (monitored by the drop weight procedure) and on the nature of the chromatographic system (as revealed by the retention, elution strength and peak shape of…

AcetonitrilesAdrenergic beta-Antagonists1-PropanolBiochemistryMicelleAnalytical ChemistryHydrophobic effectchemistry.chemical_compoundSurface-Active AgentsPulmonary surfactantPhase (matter)AcetonitrileMicellesChromatography Reverse-PhaseChromatographyEthanolElutionChemistryMethanolOrganic ChemistryCationic polymerizationSodium Dodecyl SulfateGeneral MedicineReversed-phase chromatographyAlcoholsData Interpretation StatisticalJournal of chromatography. A
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Submicellar and micellar reversed-phase liquid chromatographic modes applied to the separation of beta-blockers.

2009

The behaviour of a reversed-phase liquid chromatographic (RPLC) system (i.e. elution order, resolution and analysis time), used in the analysis of β-blockers with acetonitrile-water mobile phases, changes drastically upon addition of an anionic surfactant (sodium dodecyl sulphate, SDS). Surfactant monomers cover the alkyl-bonded phase in different extent depending on the concentration of both modifiers, in the ranges 1 × 10-3-0.15 M SDS and 5-50% acetonitrile. Meanwhile, the surfactant is dissolved in the mobile phase as free monomers, associated in small clusters or forming micelles. Four characteristic RPLC modes are yielded, with transition regions between them: hydro-organic, micellar, …

AcetonitrilesAdrenergic beta-AntagonistsAnalytical chemistryBiochemistryMicelleSensitivity and SpecificityAnalytical Chemistrychemistry.chemical_compoundPulmonary surfactantSurfactant-mediated chromatographic systemsPhase (matter)Sodium dodecyl sulphateSelectivityAcetonitrileAcetonitrileMicellesChromatographyElutionChemistryOrganic ChemistryCationic polymerizationAnalysis timeSodium Dodecyl SulfateGeneral MedicineReversed-phase chromatographyDirect transfer mechanismModels ChemicalCritical micelle concentrationSolventsβ-BlockersAlgorithmsChromatography LiquidJournal of chromatography. A
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Performance of different C18 columns in reversed-phase liquid chromatography with hydro-organic and micellar-organic mobile phases

2014

Column selection in reversed-phase liquid chromatography (RPLC) can become a challenge if the target compounds interact with the silica-based packing. One of such interactions is the attraction of cationic solutes to the free silanols in silica-based columns, which is a slow sorption-desorption interaction process that gives rise to tailed and broad peaks. The effect of silanols is minimised by the addition of a competing agent in the mobile phase, such as the anionic surfactant sodium dodecyl sulphate (SDS). In micellar-organic RPLC, the adsorption of an approximately fixed amount of SDS monomers gives rise to a stable modified stationary phase, with properties remarkably different from th…

AcetonitrilesAdrenergic beta-AntagonistsBiochemistryAnalytical ChemistrySurface-Active AgentsAdsorptionPulmonary surfactantPhenolsPhase (matter)Sodium dodecyl sulphateAcetonitrileMicellesChromatography Reverse-PhaseChromatographyElutionChemistryOrganic ChemistryCationic polymerizationC18 columnsSodium Dodecyl SulfateWaterGeneral MedicineReversed-phase chromatographySilanesMicellar liquid chromatographyβ-BlockersAdsorptionSelectivityMicellar liquid chromatography
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Prediction of peak shape in hydro-organic and micellar-organic liquid chromatography as a function of mobile phase composition

2007

A simple model is proposed that relates the parameters describing the peak width with the retention time, which can be easily predicted as a function of mobile phase composition. This allows the further prediction of peak shape with global errors below 5%, using a modified Gaussian model with a parabolic variance. The model is useful in the optimisation of chromatographic resolution to assess an eventual overlapping of close peaks. The dependence of peak shape with mobile phase composition was studied for mobile phases containing acetonitrile in the presence and absence of micellised surfactant (micellar-organic and hydro-organic reversed-phase liquid chromatography, RPLC). In micellar RPLC…

AcetonitrilesChromatographyResolution (mass spectrometry)ChemistryOrganic ChemistryAnalytical chemistrySodium Dodecyl SulfateGeneral MedicineFunction (mathematics)Reversed-phase chromatographyModels TheoreticalBiochemistryHigh-performance liquid chromatographyAnalytical Chemistrysymbols.namesakechemistry.chemical_compoundPulmonary surfactantPhase (matter)symbolsAcetonitrileGaussian network modelAlgorithmsChromatography High Pressure LiquidJournal of Chromatography A
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Peak half-width plots to study the effect of organic solvents on the peak performance of basic drugs in micellar liquid chromatography.

2009

The addition of the anionic surfactant sodium dodecyl sulphate (SDS) to hydro-organic mixtures of methanol, ethanol, propanol or acetonitrile with water yielded enhanced peak shape (i.e. increased efficiencies and symmetrical peaks) for a group of basic drugs (β-blockers) chromatographed with a Kromasil C18 column. The effect can be explained by the thin layer of surfactant associated to the hydrocarbon chain on the stationary phase in the presence of the organic solvents, which covers the free silanols on the siliceous support avoiding their interaction with the cationic basic drugs. These instead interact with the anionic head of the surfactant increasing their retention and allowing a mo…

AcetonitrilesInorganic chemistryAdrenergic beta-AntagonistsBiochemistryMicelleAnalytical ChemistryPropanolchemistry.chemical_compoundPulmonary surfactantBasic compoundsSodium dodecyl sulphatePeak performanceSodium dodecyl sulfateAcetonitrileMicelleschemistry.chemical_classificationChromatographyOrganic ChemistrySodium Dodecyl SulfateGeneral MedicineOrganic solventsHydrocarbonchemistryMicellar liquid chromatographyAlcoholsLinear Modelsβ-BlockersMethanolMicellar liquid chromatographyPeak half-widthsChromatography LiquidJournal of chromatography. A
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Chromo-Fluorogenic Detection of Nerve-Agent Mimics Using Triggered Cyclization Reactions in Push-Pull Dyes

2010

A family of azo and stilbene derivatives (1-9) are synthesized, and their chromo-fluorogenic behavior in the presence of nerve-agent simulants, diethylchlorophosphate (DCP), diisopropylfluorophosphate (DFP), and diethylcyanophosphate (DCNP) in acetonitrile and mixed solution of water/acetonitrile (3:1 v/v) buffered at pH 5.6 with MES, is investigated. The prepared compounds contain 2-(2-N,N-dimethylaminophenyl)ethanol or 2-[(2-N,N-dimethylamino)phenoxy]ethanol reactive groups, which are part of the conjugated pi-system of the dyes and are able to give acylation reactions with phosphonate substrates followed by a rapid intramolecular N-alkylation. The nerve-agent mimic-triggered cyclization …

AcetonitrilesIsoflurophateSilica gelOrganic ChemistryWaterGeneral ChemistryConjugated systemPhotochemistryBiochemistryPhosphonateKineticschemistry.chemical_compoundOrganophosphorus CompoundsReaction rate constantchemistryCyclizationReagentSpectrophotometry UltravioletHypsochromic shiftReactivity (chemistry)Chemical Warfare AgentsGasesAcetonitrileFluorescent DyesNuclear chemistryChemistry - An Asian Journal
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A capillary liquid chromatography method for benzalkonium chloride determination as a component or contaminant in mixtures of biocides

2015

A method for quantifying benzalkonium chloride (BAK), an alkyl dimethyl benzyl ammonium compound, in several biocides formulations is proposed. A tertiary amine like N-(3-aminopropyl)-N-dodecyl-1,3-propanediamine (TA) and a straight-chain alkyl ammonium compound like trimethyl-tetradecyl ammonium chloride (TMTDAC), have been employed as trade surfactants besides BAK. Two capillary analytical columns with different polarities are tested: inertsil CN-3 capillary column (150mm×0.5mm i.d., 3μm particle diameter) and a non endcapped Zorbax C18 capillary column (35mm×0.5mm i.d., 5μm particle diameter). This latter column provided the best separation of the BAK homologues in less than 12min using …

AcetonitrilesTertiary amineCapillary action02 engineering and technologySolid-phase microextraction01 natural sciencesBiochemistryChemistry Techniques AnalyticalAnalytical ChemistrySurface-Active Agentschemistry.chemical_compoundBenzalkonium chlorideLimit of DetectionmedicineAmmoniumAcetonitrileSolid Phase MicroextractionAlkylchemistry.chemical_classificationChromatography010401 analytical chemistryOrganic ChemistryGeneral Medicine021001 nanoscience & nanotechnology0104 chemical scienceschemistryAmmonium chlorideBenzalkonium Compounds0210 nano-technologyChromatography LiquidDisinfectantsmedicine.drugJournal of Chromatography A
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Thermal stability of transition alumina nanocrystals with different microstructures

2018

Abstract The preparation of well-crystallized boehmite nanoparticles with different morphologies, encompassing from aciculae or rods of 320, 150 and 70 nm of length to platelets of 50 nm in diameter, allowed a comparative study of their respective thermal evolutions as alumina precursors. Static thermal treatments of boehmite nanocrystals at 600, 1000 and 1200 °C and a dynamic, in situ synchrotron study between 100 and 1000 °C revealed that original boehmite microstructures, i.e. size and shape of the nanoparticles, were kept not only in γ-Al 2 O 3 but also in transitional aluminas up to 1000 °C. Specifically, at that temperature, acicular samples presented θ-Al 2 O 3 structure, while in pl…

AcicularBoehmiteMaterials scienceProcess Chemistry and TechnologyNanoparticle02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyMicrostructure01 natural sciencesRod0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsChemical engineeringNanocrystalPhase (matter)Materials ChemistryCeramics and CompositesThermal stability0210 nano-technologyCeramics International
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