Search results for "Polyphosphates"

showing 10 items of 52 documents

Effect of intracellular P content on phosphate removal in Scenedesmus sp. Experimental study and kinetic expression

2014

The present work determines the effect of phosphorus content on phosphate uptake rate in a mixed culture of Chlorophyceae in which the genus Scenedesmus dominates. Phosphate uptake rate was determined in eighteen laboratory batch experiments, with samples taken from a progressively more P-starved culture in which a minimum P content of 0.11% (w/w) was achieved. The results obtained showed that the higher the internal biomass P content, the lower the phosphate removal rate. The highest specific phosphate removal rate was 6.5 mgPO4 P gTSS -1 h -1 . Microalgae with a P content around 1% (w/w) attained 10% of this highest removal rate, whereas those with a P content of 0.6% (w/w) presented 50% …

Environmental EngineeringIntracellular SpaceBioengineeringWastewaterPhosphateschemistry.chemical_compoundPolyphosphatesBotanyMicroalgaeBiomassFood sciencePhosphate uptakeWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTEScenedesmusbiologyRenewable Energy Sustainability and the EnvironmentModelingPhosphorusGeneral MedicineModels Theoreticalbiology.organism_classificationPhosphateIntracellular phosphorus contentKineticsBiodegradation EnvironmentalchemistryBatch Cell Culture TechniquesChristian ministryIntracellularScenedesmusBioresource Technology
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Calibration of denitrifying activity of polyphosphate accumulating organisms in an extended ASM2d model

2010

Abstract This paper presents the results of an experimental study for the modelling and calibration of denitrifying activity of polyphosphate accumulating organisms (PAOs) in full-scale WWTPs that incorporate simultaneous nitrogen and phosphorus removal. The convenience of using different yields under aerobic and anoxic conditions for modelling biological phosphorus removal processes with the ASM2d has been demonstrated. Thus, parameter ηPAO in the model is given a physical meaning and represents the fraction of PAOs that are able to follow the DPAO metabolism. Using stoichiometric relationships, which are based on assumed biochemical pathways, the anoxic yields considered in the extended A…

Environmental EngineeringNitrogenElectronsPilot ProjectsModels BiologicalWaste Disposal FluidDenitrifying bacteriaPolyphosphatesCalibrationProcess optimizationAnaerobiosisWaste Management and DisposalAcetic AcidWater Science and TechnologyCivil and Structural EngineeringAutotrophic ProcessesNitratesBacteriaSewageChemistryEcological ModelingEnvironmental engineeringPhosphorusPollutionAnoxic watersOxygenPolyphosphate-accumulating organismsPilot plantActivated sludgeEnhanced biological phosphorus removalCalibrationBiological systemWater Research
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Interactions between calcium precipitation and the polyphosphate-accumulating bacteria metabolism

2007

A sequencing batch reactor that is operated for biological phosphorus removal has been operated under different influent calcium concentrations to study the precipitation process and the possible effects of phosphorus precipitation in the biological phosphorus removal process. Four experiments were carried out under different influent calcium concentrations ranging from 10 to 90 g Ca m(-3). The experimental results and the equilibrium study, which are based on the saturation index calculation, confirm that the process controlling the calcium behaviour is the calcium phosphate precipitation. This precipitation takes place at two stages: initially, precipitation of the amorphous calcium phosp…

Environmental EngineeringPopulationchemistry.chemical_elementCalciumWaste Disposal Fluidchemistry.chemical_compoundPolyphosphatesChemical PrecipitationAmorphous calcium phosphateeducationWaste Management and DisposalIn Situ Hybridization FluorescenceWater Science and TechnologyCivil and Structural EngineeringCalcium metabolismeducation.field_of_studyBacteriaChemistryEcological ModelingPhosphorusPhosphatePollutionEnhanced biological phosphorus removalBiochemistryEnvironmental chemistryCalciumWaste disposalWater Research
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Anti-HIV-1 activity of inorganic polyphosphates.

1997

Human blood plasma, serum, peripheral blood mononuclear cells, and erythrocytes contain significant amounts of inorganic polyphosphates (ranging from 53 to 116 microM, in terms of phosphate residues). Here we demonstrate that at higher concentrations linear polyphosphates display cytoprotective and antiviral activity. Sodium tetrapolyphosphate and the longer polymers, with average chain lengths of 15, 34, and 91 phosphate residues, significantly inhibited human immunodeficiency virus type 1 (HIV-1) infection of cells in vitro at concentrations > or = 33.3 microg/ml (> or = 283-324 microM phosphate residues), whereas sodium tripolyphosphate was ineffective. In the tested concentration range,…

ErythrocytesCell SurvivalSodiumT-LymphocytesImmunologychemistry.chemical_elementBiologyPeripheral blood mononuclear cellGiant CellsCell LineCell Fusionchemistry.chemical_compoundDrug StabilityPolyphosphatesVirologyImmunology and AllergyHumansHost cell surfaceSyncytiumCell fusionDose-Response Relationship DrugPolyphosphateBiological activityPhosphateBiochemistrychemistryHIV-1Leukocytes MononuclearCell DivisionJournal of acquired immune deficiency syndromes and human retrovirology : official publication of the International Retrovirology Association
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A novel method for determination of inorganic polyphosphates using the fluorescent dye fura-2.

1997

A method for determining inorganic polyphosphate, which is based on the Mn2+-induced quenching of the fluorescence of the calcium indicator fura-2, is described. The effect of Mn2+ ions on fura-2 fluorescence is gradually abolished in the presence of increasing concentrations of polyphosphate; this allows the quantification both of synthetic polyphosphates and of the naturally occurring polymer isolated from tissues or cells. The described method has some advantages compared to conventional procedures for detection of polyphosphates based on the metachromatic effect on toluidine blue. It can be applied for the determination of pyrophosphate, tripolyphosphate and other short-chain polyphosph…

Fura-2Inorganic chemistryBiophysicsBiochemistryPyrophosphateFluorescencechemistry.chemical_compoundPolyphosphatesAnimalsHumansToluidineMolecular BiologyFluorescent DyesPyrophosphataseManganeseQuenching (fluorescence)ChromatographyPolyphosphateMetachromasiaCell BiologyFluorescenceRatsSpectrometry FluorescencechemistryFura-2HeLa CellsAnalytical biochemistry
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Inorganic Polyphosphate in Human Osteoblast-like Cells

1998

Significant amounts of inorganic polyphosphates and of polyphosphate-degrading exopolyphosphatase activity were detected in human mandibular-derived osteoblast-like cells. The amount of both soluble and insoluble long-chain polyphosphate in unstimulated osteoblast-like cells was higher than in human gingival cells, erythrocytes, peripheral blood mononuclear cells, and human blood plasma. The cellular content of polyphosphate in osteoblast-like cells strongly decreased after a combined treatment of the cells with the stimulators of osteoblast proliferation and differentiation, dexamethasone, beta-glycerophosphate, epidermal growth factor, and ascorbic acid. The amount of soluble long-chain p…

HL60Endocrinology Diabetes and MetabolismHL-60 CellsMandibleBiologyDexamethasonechemistry.chemical_compoundCalcitriolPolyphosphatesEpidermal growth factormedicineAnimalsHumansOrthopedics and Sports MedicinePyrophosphatasesCells CulturedExopolyphosphataseOsteoblastsDiphosphonatesEpidermal Growth FactorPolyphosphateCell DifferentiationEtidronic AcidOsteoblastAlkaline PhosphataseAscorbic acidAcid Anhydride HydrolasesRatsInorganic Pyrophosphatasemedicine.anatomical_structureSolubilitychemistryBiochemistryCell cultureGlycerophosphatesAlkaline phosphataseCell DivisionJournal of Bone and Mineral Research
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A physiologically active interpenetrating collagen network that supports growth and migration of epidermal keratinocytes: zinc-polyP nanoparticles in…

2020

The distinguished property of the physiological polymer, inorganic polyphosphate (polyP), is to act as a bio-intelligent material which releases stimulus-dependent metabolic energy to accelerate wound healing. This characteristic is based on the bio-imitating feature of polyP to be converted, upon exposure to peptide-containing body fluids, from stable amorphous nanoparticles to a physiologically active and energy-delivering coacervate phase. This property of polyP has been utilized to fabricate a wound mat consisting of compressed collagen supplemented with amorphous polyP particles, formed from the inorganic polyanion with an over-stoichiometric ratio of zinc ions. The proliferation and t…

KeratinocytesBiomedical EngineeringNanoparticleMotilityHuman skin03 medical and health scienceschemistry.chemical_compound0302 clinical medicineCell MovementPolyphosphatesCompression BandagesCollagen networkotorhinolaryngologic diseasesHumansGeneral Materials Science030304 developmental biologyCell Proliferation0303 health sciencesWound HealingCoacervateCell growthChemistryPolyphosphateGeneral ChemistryGeneral MedicinePolyelectrolytesdigestive system diseasesZinc030220 oncology & carcinogenesisBiophysicsNanoparticlesCollagenEpidermisWound healingJournal of materials chemistry. B
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Biomimetic Alginate/Gelatin Cross-Linked Hydrogels Supplemented with Polyphosphate for Wound Healing Applications

2020

In the present study, the fabrication of a biomimetic wound dressing that mimics the extracellular matrix, consisting of a hydrogel matrix composed of non-oxidized and periodate-oxidized marine alginate, was prepared to which gelatin was bound via Schiff base formation. Into this alginate/oxidized-alginate-gelatin hydrogel, polyP was stably but reversibly integrated by ionic cross-linking with Zn2+ ions. Thereby, a soft hybrid material is obtained, consisting of a more rigid alginate scaffold and porous structures formed by the oxidized-alginate-gelatin hydrogel with ionically cross-linked polyP. Two forms of the Zn-polyP-containing matrices were obtained based on the property of polyP to f…

Keratinocyteszinc ionscell migrationMetal NanoparticlesPharmaceutical ScienceBiocompatible Materials02 engineering and technologyGelatinAnalytical ChemistryExtracellular matrixchemistry.chemical_compoundBiomimeticsCell MovementPolyphosphatesSpectroscopy Fourier Transform InfraredDrug DiscoveryalginateSkinchemistry.chemical_classificationcoacervate0303 health sciencesCoacervateTissue ScaffoldsHydrogelsPolymerHydrogen-Ion Concentration021001 nanoscience & nanotechnologyExtracellular MatrixZincChemistry (miscellaneous)Self-healing hydrogelsMolecular Medicine0210 nano-technologyHybrid materialPorosityinorganic polyphosphatefood.ingredientionic cross-linkingAlginatesCell Survivalperiodate oxidationArticlegelatinlcsh:QD241-44103 medical and health sciencesfoodlcsh:Organic chemistryHumansPhysical and Theoretical Chemistry030304 developmental biologyIonsWound HealingTissue EngineeringPolyphosphateOrganic Chemistryhuman epidermal keratinocytestechnology industry and agricultureChemical engineeringchemistrynanoparticlesEpidermisWound healingMolecules
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A biomimetic approach to ameliorate dental hypersensitivity by amorphous polyphosphate microparticles.

2016

Abstract Objective Dental hypersensitivity has become one of the most common and most costly diseases in the world, even though those maladies are very rarely life threatening. Using amorphous microparticles, fabricated from the natural polymer (polyphosphate), we intend to reseal the dentinal tubules exposed and reduce by that the hypersensitivity. Methods Amorphous microparticles (termed aCa-polyP-MP) were prepared from Na-polyphosphate (polyP) and CaCl 2 , then incubated with human teeth. The potential of the microparticles to plug the dentinal tubules was determined by microscopic and spectroscopic techniques. Results We demonstrate that, in contrast to polyP, the aCa-polyP-MP efficient…

Materials scienceScanning electron microscopeDentistry02 engineering and technology03 medical and health scienceschemistry.chemical_compound0302 clinical medicinestomatognathic systemBiomimeticsPolyphosphatesotorhinolaryngologic diseasesDentinmedicineHumansGeneral Materials ScienceGeneral DentistryDentin SensitivityEnamel paintbusiness.industryPolyphosphateTooth surface030206 dentistryDentin Sensitivity021001 nanoscience & nanotechnologydigestive system diseasesstomatognathic diseasessurgical procedures operativeOdontoblastmedicine.anatomical_structureDentinal TubulechemistryMechanics of Materialsvisual_artDentinvisual_art.visual_art_mediumBiophysicsMicroscopy Electron Scanning0210 nano-technologybusinessDental materials : official publication of the Academy of Dental Materials
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Biomimetic transformation of polyphosphate microparticles during restoration of damaged teeth.

2019

Abstract Objective In the present study, we investigated the fusion process between amorphous microparticles of the calcium salt of the physiological polymer comprising orthophosphate units, of inorganic polyphosphate (polyP), and enamel. Methods This polymer was incorporated as an ingredient into toothpaste and the fusion process was studied by electron microscopy and by synchrotron-based X-ray tomography microscopy (SRXTM) techniques. Results The data showed that toothpaste, supplemented with the amorphous Ca-polyP microparticles (aCa-polyP-MP), not only reseals tooth defects on enamel, like carious lesions, and dentin, including exposed dentinal tubules, but also has the potential to ind…

Materials sciencebusiness.product_categorychemistry.chemical_element02 engineering and technologyCalcium03 medical and health scienceschemistry.chemical_compound0302 clinical medicinestomatognathic systemBiomimeticsPolyphosphatesDentinmedicineDentifriceGeneral Materials ScienceDental EnamelGeneral DentistryToothpasteEnamel paintPolyphosphateTooth surface030206 dentistry021001 nanoscience & nanotechnologystomatognathic diseasesDentinal Tubulemedicine.anatomical_structurechemistryMechanics of Materialsvisual_artDentinBiophysicsvisual_art.visual_art_medium0210 nano-technologybusinessToothpastesDental materials : official publication of the Academy of Dental Materials
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