Search results for "surfactants"

showing 10 items of 60 documents

Hydrophobin (HFBI): a potential fusion partner for one-step purification of recombinant proteins from insect cells

2008

Hydrophobins play an important role in binding and assembly of fungal surface structures as well as in medium-air interactions. These, hydrophobic properties provide interesting possibilities when purification of macromolecules is concerned. In aqueous micellar two-phase systems, based on surfactants, the water soluble hydrophobins are concentrated inside micellar structures and, thus, distributed to defined aqueous phases. This, one-step purification is attractive particularly when large-scale production of recombinant proteins is concerned. In the present study the hydrophobin HFBI of Trichoderma reesei was expressed as an N-terminal fusion with chicken avidin in baculovirus infected inse…

hydrophobinaqueous micellar two-phase system (AMTPS)HydrophobinRecombinant Fusion ProteinsBlotting Westernfluorescence scanning microscopy (FSM)SpodopteraMicellesurfactantslaw.inventionFungal ProteinsPulmonary surfactantlawprotein purificationProtein purificationAnimalsMicellesTrichoderma reeseiTrichodermaMicroscopy Confocalbiologytechnology industry and agricultureAvidinbiology.organism_classificationBiochemistryCytoplasmRecombinant DNAbiology.proteinBaculoviridaeBiotechnologyAvidinProtein Expression and Purification
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Reproducibility of irritant patch test reactions to sodium lauryl sulfate in a double-blind placebo-controlled randomized study using clinical scorin…

1999

Reading of doubtful patch test reactions can be improved by comparing them to defined negative, allergic and irritant controls. For the latter, an irritant patch test is needed that gives sufficiently reproducible results. In our double-blind, placebo-controlled. randomized study, we have analysed the synchronous reproducibility of patch tests with 0%, 0.0625%, 0.125%, 0.25%, 0.5% and 1.0% sodium lauryl sulfate (SLS). Tests and readings were done according to ESCD guidelines. 139 patients (75 women, 64 men) 18 to 77 years old were tested. The % of positive patients as well as the % of reproducible positive reactions increased with rising concentrations of SLS to a maximum of approximately 9…

irritancyAdultMalemedicine.medical_specialtyAdolescentSodiumchemistry.chemical_elementDermatologyPlacebomedicine.disease_causesurfactantsStatistics Nonparametriclaw.inventionSurface-Active AgentsRandomized controlled trialDouble-Blind MethodlawmedicineImmunology and AllergyHumanscontrolssodium lauryl sulfateAgedReproducibilityintegumentary systemChemistryPatch testReproducibility of ResultsSodium Dodecyl SulfateMiddle AgedPatch Testsmedicine.diseaseDermatologypatch testing techniqueSurgeryToxicityIrritantsFemaleIrritationContact dermatitispatch testContact dermatitis
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Supramolecular surfactant aggregates in gas-phase:monocharged sodium alkanesulfonate clusters

2009

mass spectrometry surfactants
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Dynamic tuning of the director field in liquid crystal shells using block copolymers

2020

When an orientationally ordered system, like a nematic liquid crystal (LC), is confined on a self-closing spherical shell, topological constraints arise with intriguing consequences that depend critically on how the LC is aligned in the shell. We demonstrate reversible dynamic tuning of the alignment, and thereby the topology, of nematic LC shells stabilized by the nonionic amphiphilic block copolymer Pluronic F127. Deep in the nematic phase, the director (the average molecule orientation) is tangential to the interface, but upon approaching the temperature TNI of the nematic– isotropic transition, the director realigns to normal. We link this to a delicate interplay between an interfacial …

medicine.medical_specialty: Physics [G04] [Physical chemical mathematical & earth Sciences]Shell (structure)Topological dynamics02 engineering and technology01 natural sciencessurfactantsSpherical shellTopological defectsTopological defectLiquid crystal shellsLiquid crystalPhase (matter)0103 physical sciencesmedicineQA010306 general physicsTopology (chemistry)Boundary conditionsIsotropy021001 nanoscience & nanotechnologyCondensed Matter::Soft Condensed Matter: Physique [G04] [Physique chimie mathématiques & sciences de la terre]Chemical physics0210 nano-technologyConfinementPhysical Review Research
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Supraglottic airway devices for surfactant treatment: systematic review and meta-analysis

2019

Objective: To compare surfactant administration via supraglottic airway device (SAD) vs. nasal CPAP alone or INSURE. Study design: A systematic search of PubMed, EMBASE, SCOPUS, Cochrane Central Register of Controlled Trials and Clinicaltrials.gov was performed. Articles meeting inclusion criteria (RCT, surfactant administration via SAD, laryngeal mask, I-gel) were assessed Results: Five RCTs were eligible. Surfactant administration via SAD reduced the need for intubation/mechanical ventilation (RR 0.57, 95%CI 0.38–0.85) and short-term oxygen requirements (MD −8.00, 95%CI −11.09 to −4.91) compared to nCPAP alone. Surfactant administration via SAD reduced the need for intubation/mechanical v…

medicine.medical_treatmentLaryngeal Maskslaw.invention03 medical and health sciences0302 clinical medicineRandomized controlled trialPulmonary surfactantlaw030225 pediatricsmedicineIntubation IntratrachealIntubationHumans030212 general & internal medicineRandomized Controlled Trials as TopicMechanical ventilationSupraglottic airwayRespiratory Distress Syndrome Newbornbusiness.industryInfant NewbornObstetrics and GynecologyPulmonary SurfactantsSupraglottic airwayRespiration ArtificialClinical trialLaryngeal MasksMeta-analysisAnesthesiaPediatrics Perinatology and Child Healthsurfactant treatmentbusinessInfant Premature
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Micelles in Mixtures of Sodium Dodecyl Sulfate and a Bolaform Surfactant

2006

Mixtures composed of water, sodium dodecyl sulfate (SDS), and a bolaform surfactant with two aza-crown ethers as polar headgroups (termed Bola C-16) were investigated by modulating the mole ratios between the components. The two surfactants have ionic and nonionic, but ionizable, headgroups, respectively. The ionization is due to the complexation of alkali ions by the aza-crown ether unit(s). Structural, thermodynamic, and transport properties of the above mixtures were investigated. Results from surface tension, translational self-diffusion, and small angle neutron scattering ( SANS) are reported and discussed. Interactions between the two surfactants to form mixed micelles result in a com…

mixed micellesIonic bondingEtherANGLE NEUTRON-SCATTERINGMicelleanionic surfactants; mixed micelles; neutron scatteringSurface tensionSurface-Active Agentschemistry.chemical_compoundPulmonary surfactantAQUEOUS-SOLUTIONSSodium sulfateanionic surfactantsElectrochemistrySurface TensionGeneral Materials ScienceSodium dodecyl sulfateSANS surfactant mixtures micellesMicellesSpectroscopyHYDROCARBON SURFACTANTSPHASE SEPARATION MODELChromatographyneutron scatteringSodium Dodecyl SulfateSurfaces and InterfacesCondensed Matter PhysicsSmall-angle neutron scatteringchemistryChemical engineeringLangmuir
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Effects of Homogenization Technique and amount of Surfactants on Physical-Chemical Properties of Nanostructured Lipid Carriers (NLCs).

2013

nanopartcicles surfactants preparation
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Polysarcosine-Based Lipids: From Lipopolypeptoid Micelles to Stealth-Like Lipids in Langmuir Blodgett Monolayers.

2016

Amphiphiles and, in particular, PEGylated lipids or alkyl ethers represent an important class of non-ionic surfactants and have become key ingredients for long-circulating (“stealth”) liposomes. While poly-(ethylene glycol) (PEG) can be considered the gold standard for stealth-like materials, it is known to be neither a bio-based nor biodegradable material. In contrast to PEG, polysarcosine (PSar) is based on the endogenous amino acid sarcosine (N-methylated glycine), but has also demonstrated stealth-like properties in vitro, as well as in vivo. In this respect, we report on the synthesis and characterization of polysarcosine based lipids with C14 and C18 hydrocarbon chains and their end g…

polysarcosine; polypeptoids; surfactants; lipids; NCA polymerization; PSarcosinylated lipidsPolymers and PlasticsDispersity02 engineering and technologypolysarcosineDegree of polymerization010402 general chemistry01 natural sciencesMicelleRing-opening polymerizationLangmuir–Blodgett filmArticlesurfactantslipidslcsh:QD241-441PSarcosinylated lipidslcsh:Organic chemistryMonolayerPolymer chemistryOrganic chemistrypolypeptoidsNCA polymerizationChemistryGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesEnd-groupCritical micelle concentrationlipids (amino acids peptides and proteins)0210 nano-technologyPolymers
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Review: Mass spectrometry of surfactant aggregates

2011

In contrast with the enormous amount of literature produced during many decades in the field of surfactant aggregation in liquid, liquid crystalline and solid phases, only a few investigations concerning surfactant self-assembling in the gas phase as charged aggregates have been carried out until now. This lack of interest is disappointing in view of the remarkable theoretical and practical importance of the inherent knowledge. The absence of surfactant–solvent interactions makes it easier to study the role of surfactant–surfactant forces in determining their peculiar self-assembling features as well as the ability of these assemblies to incorporate selected solubilizate molecules. Thus, th…

surfactants charged aggregates gas phase reverse micelles mass spectrometry ESI-MS
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A route to simple nonionic surfactants

2016

AbstractA method for the synthesis of nonionic surfactants – N-alkyl-O-(2-hydroxyethyl) carbamates is proposed by acylation of fatty amines with ethylene carbonate without any solvent or catalyst. The surface tension of the prepared surfactants was measured, toxicity and biodegradability were determined for the surfactant with n-dodecyl as a hydrophobic group and N-monosubstituted amide and hydroxyl groups for their hydrophilic part.

synthesis02 engineering and technology010402 general chemistry01 natural sciencessurfactantsCatalysisSurface tensionAcylationlcsh:Chemistrychemistry.chemical_compoundPulmonary surfactantbiodegradabilityAmidesurface tensionOrganic chemistrylcsh:ScienceEthylene carbonateGeneral EngineeringtoxicityBiodegradation021001 nanoscience & nanotechnology0104 chemical sciencesSolventchemistrylcsh:QD1-999lcsh:Q0210 nano-technologynonionic surfactantsCogent Chemistry
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