Search results for "Glycerol"

showing 10 items of 283 documents

The inhibition of glycerol permeation through aquaglyceroporin-3 induced by mercury(II)

2016

Mercurial compounds are known to inhibit water permeation through aquaporins (AQPs). Although in the last years some hypotheses were proposed, the exact mechanism of inhibition is still an open question and even less is known about the inhibition of the glycerol permeation through aquaglyceroporins. Molecular dynamics (MD) simulations of human aquaporin-3 (AQP3) have been performed up to 200 ns in the presence of Hg2+ ions. For the first time, we have observed the unbiased passage of a glycerol molecule from the extracellular to cytosolic side. Moreover, the presence of Hg2+ ions covalently bound to Cys40 leads to a collapse of the aromatic/arginine selectivity filter (ar/R SF), blocking th…

Glycerol0301 basic medicineMolecular dynamicCell Membrane PermeabilityBiochemistryProtein Structure Secondarychemistry.chemical_compoundGLPFCOORDINATIONCRYSTALEscherichia coli ProteinsPermeationBiochemistryCovalent bondSettore CHIM/03 - Chimica Generale E InorganicaPhosphatidylcholinesCOMPLEXESProtein BindingSTRUCTURAL BASISCations DivalentPlasmodium falciparumAquaporinCYSTEINE-189Molecular Dynamics SimulationMolecular dynamicsAquaporinsWATER CHANNELInorganic Chemistry03 medical and health sciencesEscherichia coliGlycerolExtracellularHumansMoleculePERMEABILITYProtein Structure QuaternaryAquaporin 3Binding SitesAQUAPORIN INHIBITIONWaterBiological TransportMembranes ArtificialAquaglyceroporinMercurySIMULATIONSProtein Structure TertiaryCytosolWater permeation030104 developmental biologyAquaglyceroporinschemistryStructural Homology ProteinBiophysicsGlycerol permeationJournal of Inorganic Biochemistry
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DcuA of aerobically grownEscherichia coliserves as a nitrogen shuttle (L‐aspartate/fumarate) for nitrogen uptake

2018

DcuA of Escherichia coli is known as an alternative C4 -dicarboxylate transporter for the main anaerobic C4 -dicarboxylate transporter DcuB. Since dcuA is expressed constitutively under aerobic and anaerobic conditions, DcuA was suggested to serve aerobically as a backup for the aerobic (DctA) transporter, or for the anabolic uptake of C4 -dicarboxylates. In this work, it is shown that DcuA is required for aerobic growth with L-aspartate as a nitrogen source, whereas for growth with L-aspartate as a carbon source, DctA was needed. Strains with DcuA catalyzed L-aspartate and C4 -dicarboxylate uptake (like DctA), or an L-aspartate/C4 -dicarboxylate antiport (unlike DctA). DcuA preferred L-asp…

Glycerol0301 basic medicineendocrine system diseasesAntiporter030106 microbiologyMalateschemistry.chemical_elementBiologymedicine.disease_causeMicrobiology03 medical and health scienceschemistry.chemical_compoundBacterial ProteinsFumaratesAspartic acidEscherichia colimedicineGlycerolMolecular BiologyEscherichia coliDicarboxylic Acid TransportersAspartic AcidEscherichia coli Proteinsnutritional and metabolic diseasesBiological TransportTransporterbiology.organism_classificationNitrogen030104 developmental biologychemistryBiochemistryAnaerobic exercisehormones hormone substitutes and hormone antagonistsBacteriaMolecular Microbiology
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Relevance of Interactions between Starch-based Coatings and Plum Fruit Surfaces: A Physical-Chemical Analysis

2019

In order to extend the shelf life of the fruit, improve appearance, and to keep all nutrition properties of the plum from diminishing, edible coatings comprised of wheat starch and wheat starch&ndash

GlycerolAbsorption of waterStarch02 engineering and technologycoatingsepicuticular waxEpicuticular waxSurface tensionContact anglelcsh:Chemistrychemistry.chemical_compoundCoatingSpectroscopy Fourier Transform Infrared[SDV.IDA]Life Sciences [q-bio]/Food engineeringlcsh:QH301-705.5SpectroscopyWaxstarchfood and beveragesPrunus domestica04 agricultural and veterinary sciencesGeneral Medicine021001 nanoscience & nanotechnology040401 food scienceComputer Science Applicationsvisual_artvisual_art.visual_art_medium[SDV.IB]Life Sciences [q-bio]/Bioengineeringsurface propertiesfilms0210 nano-technologyMaterials scienceengineering.materialArticleCatalysisInorganic Chemistry0404 agricultural biotechnologySurface TensionPhysical and Theoretical ChemistryFourier transform infrared spectroscopyMolecular BiologyOrganic ChemistryWhey ProteinsChemical engineeringchemistrylcsh:Biology (General)lcsh:QD1-999FruitWaxesFood PreservativesWettabilityengineeringwater relationsInternational Journal of Molecular Sciences
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Mangiferin glycethosomes as a new potential adjuvant for the treatment of psoriasis

2020

[EN] Mangiferin, a natural compound isolated from Mangifera indica L, was incorporated in glycerosomes, ethosomes and alternatively in glycerol-ethanol phospholipid vesicles (glycethosomes). Actually, only glycethosomes were able to stably incorporate the mangiferin that was loaded at increasing concentrations (2, 4, 6, 8 mg/mL). The morphology, size distribution, rheological properties, surface charge and entrapment efficiency of prepared vesicles were deeply measured. All vesicles were mainly spherical, oligolamellar, small in size (similar to 145 nm) and negatively charged (similar to-40 mV), as confirmed by cryo-TEM observation and dynamic laser light scattering measurements. The higher…

GlycerolAntioxidantDrug CompoundingXanthonesmedicine.medical_treatmentPharmaceutical Science02 engineering and technologyAdministration Cutaneous030226 pharmacology & pharmacyMice03 medical and health scienceschemistry.chemical_compound0302 clinical medicineIn vivoPhospholipid vesiclesGlycerolmedicineAnimalsHumansPsoriasisTissue DistributionMangiferinHydrogen peroxidePhospholipidsSkin permeationAdjuvants PharmaceuticDrug CarriersWound HealingMangiferaEthanolVesicle3T3 CellsHydrogen Peroxide021001 nanoscience & nanotechnologyIn vitroDisease Models AnimalchemistryBiophysicsMangiferinGlycethosomesTetradecanoylphorbol AcetateFemaleAntioxidantEpidermis0210 nano-technologyDrug carrierInternational Journal of Pharmaceutics
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Enhanced enzymatic activity of glycerol-3-phosphate dehydrogenase from the cryophilic Saccharomyces kudriavzevii

2014

During the evolution of the different species classified within the Saccharomyces genus, each one has adapted to live in different environments. One of the most important parameters that have influenced the evolution of Saccharomyces species is the temperature. Here we have focused on the study of the ability of certain species as Saccharomyces kudriavzevii to grow at low temperatures, in contrast to Saccharomyces cerevisiae. We observed that S. kudriavzevii strains isolated from several regions are able to synthesize higher amounts of glycerol, a molecule that has been shown to accumulate in response to freeze and cold stress. To explain this observation at the molecular level we studied t…

GlycerolApplied MicrobiologyEnzyme Metabolismlcsh:MedicineYeast and Fungal ModelsWineEthanol fermentationSaccharomycesBiochemistrychemistry.chemical_compoundMolecular cell biologyLow temperaturelcsh:ScienceCellular Stress ResponsesMultidisciplinarybiologyTemperatureEnzymesCold TemperatureBiochemistryMetabolic PathwaysOsmotic shockAlcoholic fermentationSaccharomyces kudriavzeviiResearch ArticleOsmotic shockSaccharomyces cerevisiaeDNA transcriptionGlycerolphosphate DehydrogenaseSaccharomyces cerevisiaeBiosynthesisMicrobiologyGenètica molecularSaccharomycesModel OrganismsGlycerolS. kudriavzeviiBiologyMicrobial MetabolismEnzyme Kineticslcsh:Rbiology.organism_classificationGlycerol-3-phosphate dehydrogenaseMetabolismchemistryFermentationFermentationlcsh:QGene expression
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Eco-scalable baicalin loaded vesicles developed by combining phospholipid with ethanol, glycerol, and propylene glycol to enhance skin permeation and…

2019

Abstract A new class of biocompatible and scalable phospholipid vesicles was developed, aiming at improving the efficacy of baicalin on the skin. Phosphatidylcholine and baicalin (a natural polyphenol) were hydrated in two steps with a mixture of ethanol, glycerol, and propylene glycol at different ratios, and a low amount of water (4%). Hence, water was almost completely replaced by the co-solvents, which were never used before as predominant dispersing medium of phospholipid vesicles. The vesicles appeared three-dimensionally structured, forming a network that conferred a high viscosity to the dispersions. The vesicles were unilamellar, small in size (∼100 nm), and stable during 12 months…

GlycerolBiocompatibilitySurface PropertiesSwineSkin AbsorptionPhospholipid02 engineering and technology01 natural scienceschemistry.chemical_compoundColloid and Surface ChemistryPhosphatidylcholine0103 physical sciencesGlycerolAnimalsPhysical and Theoretical ChemistryParticle SizePhospholipidsTransdermalSkinFlavonoidsChromatography010304 chemical physicsEthanolVesicleSurfaces and InterfacesGeneral MedicinePermeation021001 nanoscience & nanotechnologyPropylene GlycolOxidative Stresschemistry0210 nano-technologyBaicalinBiotechnologyColloids and surfaces. B, Biointerfaces
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Synthesis and noncovalent protein conjugation of linear-hyperbranched PEG-poly(glycerol) alpha,omega(n)-telechelics.

2009

Linear-hyperbranched, heterobifunctional alpha,omega(n) telechelic block copolymers consisting of a linear poly(ethylene glycol) (PEG) chain and a hyperbranched polyglycerol (PG) block have been prepared in five steps, using a protected amino-functional initiator. The polyfunctionality omega(n) (OH groups) can be adjusted by the degree of polymerization (DP(n)) of the polyglycerol block. Subsequent introduction of a single biotin unit by amidation in alpha-position permitted noncovalent bioconjugation with avidin.

GlycerolBioconjugationbiologyPolymersProteinsGeneral ChemistryDegree of polymerizationBiochemistryCatalysisPolyethylene Glycolschemistry.chemical_compoundColloid and Surface ChemistrychemistryBiotinPEG ratioPolymer chemistryGlycerolbiology.proteinCopolymerBiotinylationEthylene glycolAvidinJournal of the American Chemical Society
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High-performance liquid chromatographic study of the regulation of phospholipid metabolism in cultured adrenocortical cells

1994

Abstract A rapid high-performance liquid chromatographic (HPLC) method for the separation of phospholipids was developed for minute samples of total lipids (ca. 200 μg). The method was applied to the study of the phospholipid metabolism in adrenocortical cell cultures. A complete separation of the different cellular phospholipid classes was achieved in 40 min. Good resolution of the phospholipid peaks was obtained, which allowed the collection of each individual class of phospholipids for further analysis of radioactivity and fatty acid composition by gas chromatography. When cells were incubated with [U-14C]glycerol or [U-14C]palmitate the bulk of the radioactivity was found in cellular ph…

GlycerolCardiolipinsPalmitatesPhospholipidHigh-performance liquid chromatographyMicechemistry.chemical_compoundTumor Cells CulturedGlycerolmedicineAnimalsCells CulturedChromatography High Pressure LiquidPhospholipidschemistry.chemical_classificationChromatographyAdrenal cortexPhosphatidylethanolaminesGeneral ChemistryMetabolismAdrenal Cortex NeoplasmsIn vitromedicine.anatomical_structurechemistryBiochemistryCell cultureAdrenal CortexPhosphatidylcholinesTetradecanoylphorbol AcetateIndicators and Reagentslipids (amino acids peptides and proteins)Polyunsaturated fatty acidJournal of Chromatography B: Biomedical Sciences and Applications
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Directing the self-assembly of semiconducting copolymers: the consequences of grafting linear or hyperbranched polyether side chains.

2013

The synthesis and self-assembly of novel semiconducting rod-coil type graft block copolymers based on poly(para-phenylene vinylene) (PPV) copolymers is presented, focusing on the ordering effect of linear versus hyperbranched side chains. Using an additional reactive ester block, highly polar, linear poly(ethylene glycol), and hyperbranched polyglycerol side chains are attached in a grafting-to approach. Remarkably, the resulting novel semiconducting graft copolymers with polyether side chains show different solubility and side-chain directed self-assembly behavior in various solvents, e.g., cylindrical or spherical superstructures in the size range of 10 to 120 nm, as shown by TEM. By adju…

GlycerolChemical substanceMaterials sciencePolymers and PlasticsPolymersOrganic ChemistryGraftingMicellePolyethylene Glycolschemistry.chemical_compoundchemistrySemiconductorsPolymer chemistryMaterials ChemistryCopolymerSide chainPolyvinylsSolubilityScience technology and societyEthylene glycolMacromolecular rapid communications
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Functional citric acid cycle in an arcA mutant of Escherichia coli during growth with nitrate under anoxic conditions

1998

The operation of the citric acid cycle of Escherichia coli during nitrate respiration (anoxic conditions) was studied by measuring end products and enzyme activities. Excretion of products other than CO2, such as acetate or ethanol, was taken as an indication for a non-functional cycle. From glycerol, approximately 0.3 mol acetate was produced; the residual portion was completely oxidized, indicating the presence of a partially active citric acid cycle. In an arcA mutant devoid of the transcriptional regulator ArcA, glycerol was completely oxidized with nitrate as an electron acceptor, demonstrating derepression and function of the complete pathway. Glucose, on the other hand, was excreted …

GlycerolCitric Acid CycleDehydrogenasePseudomonas fluorescensPseudomonas fluorescensBiochemistryMicrobiologychemistry.chemical_compoundPseudomonasGenes RegulatorEscherichia coliGeneticsGlycerolAnaerobiosisMolecular BiologyDerepressionNitratesbiologySuccinate dehydrogenaseGeneral MedicineMetabolismbiology.organism_classificationPseudomonas stutzeriCitric acid cycleGlucoseBiochemistrychemistryGenes BacterialMutationbiology.proteinOxidation-ReductionArchives of Microbiology
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