Search results for " Surfactants"

showing 10 items of 37 documents

Humoral autoreactivity directed against surfactant protein-A (SP-A) in rheumatoid arthritis synovial fluids.

2000

SUMMARY SP-A is found principally in the lung, and has been associated with lamellar bodies also found in the synovial joint. Both SP-A and C1q contain collagen-like regions, and SP-A and C1q have some structural similarities, both having a globular head region and a collagen-like tail. Here we are able to show that (i) autoreactivity to SP-A, as expressed by IgG and IgM autoantibodies, is present in synovial fluid (SF) isolated from patients with rheumatoid arthritis (RA); (ii) in absorption experiments only a limited degree of cross-reactivity between autoantibodies reactive with C1q and SP-A is observed; (iii) there is no cross-reactivity between autoantibodies reactive with type II coll…

Pulmonary Surfactant-Associated ProteinsKnee JointProteolipidsImmunologyType II collagenchemical and pharmacologic phenomenamedicine.disease_causeAutoantigensImmunoglobulin GAutoimmunityArthritis RheumatoidRheumatic DiseaseAntigenSynovial jointSynovial FluidmedicineImmunology and AllergySynovial fluidAnimalsHumansskin and connective tissue diseasesAutoantibodiesbiologyPulmonary Surfactant-Associated Protein AChemistryComplement C1qAutoantibodyPulmonary Surfactantsmedicine.anatomical_structureImmunoglobulin MImmunoglobulin MImmunoglobulin GImmunologybiology.proteinBinding Sites AntibodyCollagenPeptidesChickensDimerizationClinical and experimental immunology
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Kinetic evidence for the solubilization of pyridine-2-azo-p-dimethylaniline in alkanediyl-α,ω-bis(dimethylcetylammonium nitrate) surfactants. Role of…

2004

The incorporation of the bidentate ligand pyridine-2-azo-p-dimethylaniline (PADA) into micellar aggregates of the dimeric cationic surfactants propanediyl-, hexanediyl- and dodecanediyl-alpha,omega-bis(dimethylcetylammonium nitrate) (16-3-16,2NO(3)(-), 16-6-16,2NO(3)(-) and 16-12-16,2NO(3)(-), respectively) has been studied at 25 degreesC by examining the kinetics of the complexation reaction of the Ni(II) ion with this ligand. For comparison, cetyltrimethylammonium nitrate ( CTAN), which can be considered as the "monomeric'' surfactant of 16-3-16,2NO(3)(-), has also been used. The kinetic data have shown that, for 16-3-16,2NO(3)(-) and CTAN, at a surfactant concentration below the critical…

Reaction mechanismInorganic chemistryMicelleCATIONIC GEMINI SURFACTANTSCatalysisHydrophobic effectReaction rate constantPulmonary surfactantDIMERIC SURFACTANTSPolymer chemistryMaterials ChemistryWATERELECTRON TRANSFERANGLE NEUTRON SCATTERINGInterfaces (materials) Optical waveguides metal ionsAqueous solutionAGGREGATION PROPERTIESChemistryAQUEOUS SOLUTIONCationic polymerizationGeneral ChemistryANIONIC MICELLESSUBSTITUTED FERROCENESCritical micelle concentrationBROMIDE SURFACTANTSANGLE NEUTRON SCATTERING; CATIONIC GEMINI SURFACTANTS; AQUEOUS SOLUTION; BROMIDE SURFACTANTS; DIMERIC SURFACTANTS; SUBSTITUTED FERROCENES; AGGREGATION PROPERTIES; ELECTRON TRANSFER; ANIONIC MICELLES; WATERNew J. Chem.
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ABC A-subclass proteins: Gatekeepers of cellular phospho- and sphingolipid transport

2007

During the past years, available evidence suggests that members of a novel family of structurally highly related multispan proteins, designated ABC A-subclass transporters, exert critical functions in the control of cellular lipid transport processes. Loss-of-function scenarios, thus far, have revealed pivotal roles of individual ABC A-transporters in specialized lipid secretory pathways of the cell including HDL biogenesis (ABCA1), lung surfactant production (ABCA3), retinal integrity (ABCA4/ABCR) and skin lipid barrier formation (ABCA12). Although the specific transporter activities of many members of this novel protein family have not yet been established in detail, available evidence in…

SphingolipidsbiologyCellBiological TransportPulmonary SurfactantsTransporterABCA3SphingolipidCell biologymedicine.anatomical_structureBiochemistryABCA1biology.proteinmedicineAnimalsHumansATP-Binding Cassette Transporterslipids (amino acids peptides and proteins)ABCA12Lipoproteins HDLPhospholipidsBiogenesisFunction (biology)Frontiers in Bioscience
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Effect of Cholesterol on Electrostatics in Lipid−Protein Films of a Pulmonary Surfactant

2010

We report the changes in the electrical properties of the lipid-protein film of pulmonary surfactant produced by excess cholesterol. Pulmonary surfactant (PS) is a complex lipid-protein mixture that forms a molecular film at the interface of the lung's epithelia. The defined molecular arrangement of the lipids and proteins of the surfactant film gives rise to the locally highly variable electrical surface potential of the interface, which becomes considerably altered in the presence of cholesterol. With frequency modulation Kelvin probe force microscopy (FM-KPFM) and force measurements, complemented by theoretical analysis, we showed that excess cholesterol significantly changes the electri…

Static ElectricityAnalytical chemistryNanoparticleMicroscopy Atomic ForcePulmonary surfactantMolecular filmStatic electricityElectrochemistryAnimalsGeneral Materials ScienceFiberSpectroscopyKelvin probe force microscopeChemistryProteinsMembranes ArtificialPulmonary SurfactantsSurfaces and InterfacesLipid MetabolismCondensed Matter PhysicsElectrostaticsLipidsCholesterolMembraneBiophysicsCattleLangmuir
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2D dynamical arrest transition in a mixed nanoparticle-phospholipid layer studied in real and momentum spaces

2015

AbstractWe investigate the interfacial dynamics of a 2D self-organized mixed layer made of silica nanoparticles interacting with phospholipid (DPPC) monolayers at the air/water interface. This system has biological relevance, allowing investigation of toxicological effects of nanoparticles on model membranes and lung surfactants. It might also provide bio-inspired technological solutions, exploiting the self-organization of DPPC to produce a non-trivial 2D structuration of nanoparticles. The characterization of interfacial dynamics yields information on the effects of NPs on the mechanical properties, important to improve performances of systems such as colloidosomes, foams, creams. For thi…

Surface PropertiesComputer sciencePhospholipidNanoparticleRELAXATIONCOLLOIDOSOMESRespiratory physiologySurface pressureArticleMomentumchemistry.chemical_compoundPhase (matter)MonolayerParticle SizeSILICA NANOPARTICLESPhospholipidsBrownian motionSimulation[PHYS]Physics [physics]MultidisciplinaryAirRelaxation (NMR)WaterPulmonary SurfactantsModels TheoreticalSilicon DioxideSURFACTANTCharacterization (materials science)MembranechemistryChemical physicsNanoparticlesWater chemistryParticle sizeCOLLOIDAL GLASS-TRANSITIONAlgorithmsScientific Reports
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Total petroleum hydrocarbons (TPH) determination in surfactant stabilized marine water emulsions

2022

Bilge waters are wastewaters produced on boats during navigation and usually contain hydrocarbons and oils. They cannot be released into the sea if not below certain hydrocarbon concentration limits set by current legislation. Surfactants are often used to improve the solubility of petroleum hydrocarbons in water and in this work, the analytical approach proposed is suitable to determine accurately the concentration of hydrocarbons in surfactant-rich waters, as found in bilge water or similar wastewater. The method relies on the surfactant precipitation by addition of potassium and calcium salts, which also promote TPH extraction through a “salting out” effect. This allows for an accurate d…

Total petroleum hydrocarbons TPH bilge water surfactants SDS SDBS mass spectrometryOrganic ChemistryArkivoc
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Passive sampling in monitoring of nonylphenol ethoxylates and nonylphenol in aquatic environments

2012

The present practices for determining the concentration levels of various pollutants are in many respects insufficient and for this reason, there is an urgent need especially to develop more cost-effective sampling methods. In this study, a novel passive sampling tool (the Chemcatcher®) for monitoring nonylphenol ethoxylates (NPEOs) and nonylphenol (NP) in aqueous media was tested. These environmentally harmful substances have been widely used in different household and industrial applications and they affect aquatic ecosystems, for example, by acting as endocrine disrupting compounds. The highest accumulation of NPEOs and NP in laboratory-scale tests was obtained when using an SDB-XC (stan…

alkylphenol ethoxylatesChemcatcher®nonylphenolsolid phase extractionnon-ionic surfactantshigh-performance liquid chromatographynonylphenol ethoxylatespassive sampling
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Structural and Transport Properties of Bola C-16 Micelles in Water and in Aqueous Electrolyte Solutions

2003

Aqueous solutions containing a bolaform surfactant [R,ω-(4,7,10,13-pentaoxa-16-azacyclooctadecane)- hexadecane], with and without electrolytes have been investigated as a function of surfactant concentration and ionic strength. Small angle neutron scattering (SANS), NMR self-diffusion, and other physical-chemical methods were used. From the analysis of SANS data it was inferred that in water the surfactant forms slightly charged ellipsoidal micelles, because of the partial hydrolysis of amino groups. The aggregates grow with the increase of concentration, becoming more elongated. Due to the selective complexing ability of aza crown ether units, significant differences were observed upon add…

chemistry.chemical_classificationAqueous solutionAggregation numberChemistryInorganic chemistryElectrolyteMicellebolasSurfaces Coatings and FilmsPulmonary surfactantMicelles SANS Bolaform surfactantIonic strengthmixed surfactantssaxsCritical micelle concentrationMaterials Chemistrybolas; mixed surfactants; saxs; sdsPhysical and Theoretical ChemistrysdsCrown etherThe Journal of Physical Chemistry B
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Electrospray ion mobility mass spectrometry of positively charged sodium bis[2-ethythexyl)sulfosuccinate aggregates.

2014

Collision cross-sections (CCS) of positively singly and multiply charged aggregates of the surfactant sodium bis(2-ethylhexyl)sulfosuccinate (AOTNa) in the gas phase have been measured by quadrupole ion mobility time-of-flight mass spectrometry. Calibration of the observed drift times to the CCS of the AOTNa non-covalent aggregates was achieved by collecting, under the same experimental conditions, the drift times of a range of singly and multiply charged polyalanine peptides whose CCS had been obtained by conventional ion mobility spectrometry. Together with an obvious increase of the aggregate cross-section with the aggregation number, it was found that the aggregate cross-section increa…

chemistry.chemical_classificationModels MolecularElectrosprayRange (particle radiation)Dioctyl Sulfosuccinic AcidSpectrometry Mass Electrospray IonizationAggregation numberIon-mobility spectrometrySodiumStatic ElectricityAnalytical chemistrychemistry.chemical_elementIon mobility surfactants AOT collision cross section mass spectrometry supramolecular aggregatesGeneral MedicineMass spectrometryAtomic and Molecular Physics and OpticsIonchemistryModels ChemicalComputer SimulationCounterionSpectroscopyEuropean journal of mass spectrometry (Chichester, England)
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Extraction of amino acids with emulsion liquid membranes using industrial surfactants and lecithin as stabilisers

2000

Abstract Industrial surfactants (being the mixtures of several individual compounds) were used as stabilisers of emulsion liquid membranes (ELMs). Although, some impurities present in technical formulations of these compounds were extracted to aqueous solutions of amino acids, most of the used surfactants well served to this purpose. In the case of amino acid transport, they do not act as carriers and application of additional carrier (such as D2EHP) was required in order to facilitate the transport. Interestingly, the same properties were found for lecithin, industrially important natural surfactant. Lecithin applied as a chiral discriminator, used either as an emulsion stabiliser or carri…

chemistry.chemical_classificationamino acidsfood.ingredientAqueous solutionChromatographyExtraction (chemistry)StabiliserFiltration and SeparationBiochemistryLecithinAmino acidlecithinfoodMembranePulmonary surfactantchemistryliquid membraneEmulsionOrganic chemistryindustrial surfactantsGeneral Materials SciencePhysical and Theoretical ChemistryJournal of Membrane Science
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