Search results for "Sorption"

showing 10 items of 4623 documents

Synthesis, chemical characterization and preliminary in vitro antitumor activity evaluation of new ruthenium(II) complexes with sugar derivatives

2011

Abstract Three new complexes of Ru(II), namely [RuCl 2 (Glun-N,O) 2 ]Na 2 ( I ; Glun = glucosaminate), [RuCl 2 (1-Tglu)(EtOH) 2 ]Na ( II ; 1-Tglu = 1-thio-β- d -glucose) and [Ru 2 (EtOH) 6 (AL)Cl 4 ] ( III ; AL = 6′-aminolactose) were prepared from the same Ru(II) precursor, [RuCl 2 (DMSO) 4 ] (DMSO = dimethyl sulfoxide). The characterization of the complexes was carried out by elemental analysis, FT-IR, ES-MS, NMR, EXAFS and DFT calculations. The effectiveness of the complexes on metastatic melanoma A 375 was investigated. The results show that complex II is the most active species.

Antitumor activityCarbohydrates Anti-cancer Melanoma A375Extended X-ray absorption fine structureMetastatic melanomaStereochemistrychemistry.chemical_elementSulfoxideMedicinal chemistryIn vitroRutheniumInorganic ChemistrySugar derivativeschemistry.chemical_compoundchemistryElemental analysisMaterials ChemistryPhysical and Theoretical Chemistry
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Gene-diet interaction in plasma lipid response to plant sterols and stanols: A review of clinical trials

2021

Abstract Plant sterols and stanols (PS) are well known for their cholesterol-lowering effect by reducing intestinal absorption of cholesterol. However, genetic factors modulate the low-density lipoprotein cholesterol (LDL-C) response to PS therapy. This review examines clinical trials evaluating the impact of the main genes associated with response of plasma lipid concentrations to PS intake: APOE, CYP7A1, ABCG5/G8, NPC1L1, CETP, APOA4/A5, SCARBI, HMGCR, PPARα, LIPC, MTHFR and LPA. Evidence indicates that carriers of mutant allele of the CYP7A1 c. −204 A > C variant experience a greater plasma cholesterol reduction after PS intake, although there is discrepancy for the rest of genetic varia…

Apolipoprotein Emedicine.medical_specialtyLipid-lowering effectMedicine (miscellaneous)Cholesterol 7 alpha-hydroxylaseInterindividual variabilityIntestinal absorptionchemistry.chemical_compoundAPOA4Internal medicinemedicineTX341-641NutrigeneticsGen-dietNutrition and DieteticsbiologyNutrition. Foods and food supplyCholesterolbusiness.industryPlant sterols/stanolsClinical trialEndocrinologychemistryMethylenetetrahydrofolate reductaseABCG5biology.proteinlipids (amino acids peptides and proteins)businessFood ScienceJournal of Functional Foods
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Functional Fibronectin Adsorption on Aptamer-Doped Chitosan Modulates Cell Morphology by Integrin-Mediated Pathway.

2019

A decisive step in cell-biomaterial interaction is represented by the adsorption of proteins at the interface, whose fine control may be useful to trigger proper cell response. To this purpose, we can selectively control protein adsorption on biomaterials by means of aptamers. Aptamers selected to recognize fibronectin dramatically enhance chitosan ability to promote cell proliferation and adhesion, but the underlying biological mechanism remains unknown. We supposed that aptamers contributed to ameliorate the adsorption of fibronectin in an advantageous geometrical conformation for cells, thus regulating their morphology by the proper activation of the integrin-mediated pathway. We investi…

AptamerIntegrin02 engineering and technologyCell morphologylcsh:TechnologyArticle03 medical and health sciencesfibronectinGeneral Materials ScienceCytoskeletonlcsh:Microscopy030304 developmental biologylcsh:QC120-168.85cell morphology0303 health sciencesbiologylcsh:QH201-278.5ChemistryCell growthlcsh:TDNA aptamers; biomaterials; fibronectin; integrins; cell morphologyAdhesionDNA aptamers021001 nanoscience & nanotechnologyFibronectinlcsh:TA1-2040biology.proteinBiophysicsintegrinslcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologylcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Protein adsorptionbiomaterialsMaterials (Basel, Switzerland)
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Interactions of carbon nanotubes with aqueousaquatic media containing organicinorganic contaminants and selected organisms of aquatic ecosystems – A …

2015

Due to their unique molecular architecture translating into numerous every-day applications, carbon nanotubes (CNTs) will be ultimately an increasingly significant environmental contaminant. This work reviews qualitative/quantitative analyses of interactions of various types of CNTs and their chemically modified analogues with aqueous/aquatic media containing organic and inorganic contaminants and selected organisms of aquatic ecosystems. A special emphasis was placed on physicochemical interactions between CNTs as adsorbents of heavy metal cations and aromatic compounds (dyes) with its environmental consequences. The studies revealed CNTs as more powerful adsorbents of aromatic compounds (…

Aquatic OrganismsEnvironmental EngineeringHealth Toxicology and MutagenesisMetal ions in aqueous solutionchemistry.chemical_elementCarbon nanotubeEnvironmentHydrophilizationlaw.inventionAdsorptionlawMetals HeavyAnimalsEnvironmental ChemistryOrganic matterOrganic ChemicalsColoring AgentsEcosystemchemistry.chemical_classificationAqueous solutionNanotubes CarbonChemistryPublic Health Environmental and Occupational HealthGeneral MedicineGeneral ChemistryPollutionDaphniaEnvironmental chemistryAdsorptionEcotoxicityCarbonWater Pollutants ChemicalChemosphere
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Concurrent removal of Cr(III), Cu(II), and Pb(II) ions from water by multifunctional TiO2/Alg/FeNPs beads

2019

Abstract The use of multifunctional materials for water remediation is a modern approach where adsorption phenomena and heterogeneous photocatalysis can be applied for the removal of pollutants. Since the ideal remediation system should be able to remove both organic and inorganic pollutants, a crucial aspect to consider is the knowledge of operational parameters affecting the removal process, especially when heavy metal ions are present in concoction as in real systems. Given the proven efficiency of multifunctional TiO2/Alg/FeNPs magnetic beads for the removal of model organic pollutants, this study investigated the possibility to exploit such system also for the removal of mixed heavy me…

Aqueous solution010405 organic chemistryMetal ions in aqueous solutionInorganic chemistryGroundwater remediationMagnetic nanoparticleAdsorbentPharmaceutical Sciencechemistry.chemical_elementManagement Monitoring Policy and Law010402 general chemistry01 natural sciencesPollution0104 chemical sciencesCatalysisMetalChromiumAdsorptionHeavy metalchemistryvisual_artPhotocatalysisvisual_art.visual_art_mediumEnvironmental ChemistryPhotocatalysis
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Towards the understanding at the molecular level of the structured-water absorption and fluorescence spectra: a fingerprint of π-stacked water

2013

An intriguing absorption peak around ∼270 nm (4.59 eV) has been recurrently recorded in aqueous solutions of salts, sugars, amino acids, in the free-solute zone (exclusion zone) adjacent to various hydrophilic surfaces, as well as a transient in the conversion process of ice to water. The corresponding associated fluorescence has been observed in the interval 480–490 nm (2.58–2.53 eV). The spectroscopic features have been related to the presence of structured water but its nature remains incompletely understood. On the basis of high-level ab initio computations, the main absorption feature of structured water is assigned to the presence of two π-stacked ground-state water molecules, prefera…

Aqueous solutionAbsorption spectroscopyChemistryDimerBinding energyIntermolecular forceBiophysicsAnalytical chemistryCondensed Matter Physicschemistry.chemical_compoundExcited stateSinglet statePhysical and Theoretical ChemistryAbsorption (chemistry)Molecular BiologyMolecular Physics
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Theoretical electronic spectra of 2-aminopurine in vapor and in water

2006

The accurate quantum chemical CASSCF and CASPT2 methods combined with a Monte Carlo procedure to mimic solvation effects have been used in the calculation of the spectroscopic properties of two tautomers of 2-aminopurine (2AP). Absorption and emission spectra have been simulated both in vacuum and in aqueous environment. State and transition energies and properties have been obtained with high accuracy, leading to the assignment of the most important spectroscopic features. The lowest-lying 1 (,*) ( 1 La) state has been determined as responsible for the first band in the absorption spectrum and also for the strong fluorescence observed for the system in water. The combined approach used in …

Aqueous solutionAbsorption spectroscopyChemistryMonte Carlo methodSolvationAnalytical chemistryCondensed Matter PhysicsTautomerMolecular physicsAtomic and Molecular Physics and OpticsSpectral lineEmission spectrumPhysical and Theoretical ChemistryAbsorption (electromagnetic radiation)International Journal of Quantum Chemistry
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Photoassisted Oxidation of the Recalcitrant Cyanuric Acid Substrate in Aqueous ZnO Suspensions

2007

The photoassisted oxidative transformation of the highly recalcitrant cyanuric acid was examined in the liquid−solid regime at pH 3 and natural pH 7.5 under UV irradiation in oxygen- and ozone-saturated ZnO suspensions using ZnO as a photomediator. Loss of cyanuric acid was assayed by HPLC UV absorption spectroscopy, whereas intermediates and final products were determined by HPLC ion chromatography (IC), by MS techniques using an electrospray ionization mass spectrometer operated in the negative-ion mode, and by FT-IR spectroscopy. Final reaction products were CO2 gas and NO3- ions. The measure of nitrate in solution quantified the degree of mineralization of the substrate; its concentrati…

Aqueous solutionAbsorption spectroscopyElectrospray ionizationInorganic chemistryIon chromatographySubstrate (chemistry)Mass spectrometrySurfaces Coatings and FilmsElectronic Optical and Magnetic Materialschemistry.chemical_compoundGeneral EnergyAdsorptionchemistryZnO photocatalyst cyanuric acidPhysical and Theoretical ChemistryCyanuric acidThe Journal of Physical Chemistry C
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Symbiosis between photoactive nanoparticles and their organic ligands.

2013

Photoactive spherical metal and semiconductor nanoparticles (NPs) are smart systems that exhibit unique properties, such as a high surface-to-volume ratio, a broad absorption spectrum and size-dependent properties. They are capped with a considerable number of ligands required to give rise to stable organic and aqueous NP colloidal solutions. In addition, the ligands can also be used to introduce functionality at the NP periphery. In this case, the NP could act as a 3D-scaffold, which would make a high local concentration of a functional moiety at the NP periphery possible, moreover, the photophysical properties of the NP could be tuned. The combined action of the organic capping and the in…

Aqueous solutionAbsorption spectroscopyLigandChemistryNanoparticleNanotechnologyGeneral MedicineLigandsBiochemistryMetalColloidMicroscopy Electron Transmissionvisual_artvisual_art.visual_art_mediumMoietyMoleculeNanoparticlesSpectrophotometry UltravioletPhysical and Theoretical ChemistryOrganic ChemicalsSymbiosisPhotochemistry and photobiology
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Converting p-terphenyl into a novel organo-catalyst for LED-driven energy and electron transfer photoreactions in water.

2021

p-Terphenyl is a potent photoredox catalyst under UV-irradiation. Aiming for more sustainable reaction conditions, we added two sulfonate groups to this key structure to achieve water solubility and incorporated an SO2-bridge thereby shifting the absorption spectrum towards the visible. The resulting photocatalyst shows unexpected triplet reactivity in several test reactions.

Aqueous solutionAbsorption spectroscopyMetals and AlloysGeneral ChemistryPhotochemistryCatalysisSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsCatalysischemistry.chemical_compoundElectron transferSulfonatechemistryTerphenylMaterials ChemistryCeramics and CompositesPhotocatalysisReactivity (chemistry)Chemical communications (Cambridge, England)
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