Search results for " Selenium"

showing 10 items of 20 documents

Biosynthesis of selenium-nanoparticles and -nanorods as a product of selenite bioconversion by the aerobic bacterium Rhodococcus aetherivorans BCP1

2018

The wide anthropogenic use of selenium compounds represents the major source of selenium pollution world- wide, causing environmental issues and health concerns. Microbe-based strategies for metal removal/recovery have received increasing interest thanks to the association of the microbial ability to detoxify toxic metal/ metalloid polluted environments with the production of nanomaterials. This study investigates the tolerance and the bioconversion of selenite (SeO32−) by the aerobically grown Actinomycete Rhodococcus aetherivorans BCP1 in association with its ability to produce selenium nanoparticles and nanorods (SeNPs and SeNRs). The BCP1 strain showed high tolerance towards SeO32− with…

0301 basic medicineBioconversionStatic Electricity030106 microbiologychemistry.chemical_elementBioengineeringSelenious AcidSettore BIO/19 - Microbiologia GeneraleSelenium pollutionSelenium03 medical and health sciencesMinimum inhibitory concentrationchemistry.chemical_compoundNanoparticleBiosynthesisRhodococcusParticle SizeSelenite Rhodococcus aetherivorans Selenium nanoparticles Selenium nanorods Biogenic nanostructuresSelenium nanorodMolecular BiologyNanotubesbiologyBiogenic nanostructureRhodococcus aetherivoranSpectrometry X-Ray EmissionGeneral Medicinebiology.organism_classificationDynamic Light ScatteringSelenium nanoparticleBacteria AerobicNanotube030104 developmental biologychemistryBiochemistry13. Climate actionSelenious AcidSeleniteNanoparticlesMetalloidRhodococcusSeleniumRhodococcuBiotechnologyNew Biotechnology
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Hg and Se exposure in brain tissues of striped dolphin (Stenella coeruleoalba) and bottlenose dolphin (Tursiops truncatus) from the Tyrrhenian and Ad…

2017

In this study we analyzed Hg and Se concentrations in dolphin brain tissues of fifteen specimens of striped dolphin (Stenella coeruleoalba) and eight specimens of bottlenose dolphin (Tursiops truncatus) stranded in the Tyrrhenian and Adriatic Seas, in order to assess the toxicological risks associated with Hg exposure. High Hg concentrations were found in brain tissues of both analyzed specie (1.86–243 mg/kg dw for striped dolphin and 2.1–98.7 mg/kg dw for bottlenose dolphin), exceeding levels associated with marine mammals neurotoxicity. Althougth the results clearly suggest that the protective effects of Se against Hg toxicity occur in cetaceans’ brain tissues, a molar excess of mercury w…

0301 basic medicineHealth Toxicology and MutagenesisZoologyStenella coeruleoalba010501 environmental sciencesBiologyManagement Monitoring Policy and LawToxicology01 natural sciencesAquatic organisms03 medical and health sciencesSeleniumStenellabiology.animalNeurotoxicityAnimalsSettore CHIM/01 - Chimica Analitica0105 earth and related environmental sciencesBrain; Mercury; Neurotoxicity; Selenium; Stenella coeruleoalba; Tursiops truncatus; Animals; Bottle-Nosed Dolphin; Brain; Italy; Mercury; Selenium; Stenella; Water Pollutants; Risk assessmentAnimalBrainAquatic animalGeneral MedicineMercuryBottlenose dolphinbiology.organism_classificationFisheryBottle-Nosed Dolphin030104 developmental biologyItalyStenella coeruleoalbaTursiops truncatuhuman activitiesWater Pollutants ChemicalEcotoxicology (London, England)
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Physical–chemical properties of biogenic selenium nanostructures produced by stenotrophomonas maltophilia SeITE02 and ochrobactrum sp. MPV1

2018

Stenotrophomonas maltophilia SeITE02 and Ochrobactrum sp. MPV1 were isolated from the rhizosphere soil of the selenium-hyperaccumulator legume Astragalus bisulcatus and waste material from a dumping site for roasted pyrites, respectively. Here, these bacterial strains were studied as cell factories to generate selenium-nanostructures (SeNS) under metabolically controlled growth conditions. Thus, a defined medium (DM) containing either glucose or pyruvate as carbon and energy source along with selenite (SeO23−) was tested to evaluate bacterial growth, oxyanion bioconversion and changes occurring in SeNS features with respect to those generated by these strains grown on rich media. Transmissi…

0301 basic medicineMicrobiology (medical)biogenic nanomaterialsOchrobactrum sp. MPV1030106 microbiologyPopulationlcsh:QR1-502NanorodBacterial growthSettore BIO/19 - Microbiologia GeneraleMicrobiologyFluorescence spectroscopylcsh:Microbiology03 medical and health sciencesSeleniumNanoparticleExtracellulareducationPhotoluminescenceOriginal Researcheducation.field_of_studyStrain (chemistry)ChemistryFluorescenceStenotrophomonas maltophilia SeITE02Chemically defined medium030104 developmental biologybiogenic nanomaterials selenium selenite nanoparticles nanorods Stenotrophomonas maltophilia SeITE02 Ochrobactrum sp. MPV1 photoluminescenceSeleniteBiophysicsnanoparticlesBiogenic nanomaterialEnergy sourcenanorods
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Optimization of Bacillus cereus Fermentation Process for Selenium Enrichment as Organic Selenium Source

2020

Selenium is an essential trace element and micronutrient for human health. Application of organic selenium in plants and microorganisms as trace element supplement is attracting more and more attention. In this study, Bacillus cereus, an important probiotic, was used for selenium enrichment with sodium selenite as selenium source. The growth curve of B. cereus was investigated, and 150 μg/ml was selected as the concentration of selenium for B. cereus fermentation. With application of response surface methodology, the optimal fermentation conditions were obtained as follows: inoculation quantity of 7%, culture temperature of 33°C, and shaking speed of 170 rpm, leading to the maximal selenium…

0301 basic medicineinorganic chemicalsEndocrinology Diabetes and MetabolismMicroorganismBacillus cereusselenium enrichmentchemistry.chemical_element030209 endocrinology & metabolismlcsh:TX341-641response surface methodology03 medical and health sciences0302 clinical medicineBacillus cereusFood sciencefermentationchemistry.chemical_classification030109 nutrition & dieteticsNutrition and DieteticsbiologyTrace elementfood and beveragesMicronutrientbiology.organism_classificationorganic seleniumchemistryCereusFermentationSelenoproteinlcsh:Nutrition. Foods and food supplySeleniumFood ScienceFrontiers in Nutrition
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Mineral essential elements for nutrition in different chocolate products

2016

In this work, the essential mineral nutritional elements in cocoa beans, in chocolates at different cocoa percentage (60,70,80 and 90%) and in milk chocolate are evaluated. Dark chocolates are confirmed as an excellent source of magnesium (252.2 mg/100 g) and iron (10.9 mg/100 g): in chocolate containing 90% cocoa, their content corresponds to, respectively, 67.0% and 80.3 of Nutrient Reference Values (NRV) in the European Union. The chocolate containing 90% cocoa is also a good source of zinc (3.5 mg/100 g), which is important for the immune system, and selenium (0.1 mg/100 g). Three main components suitable to explain the mineral concentrations are analyzed by factor analysis. The compone…

0301 basic medicinemineralFood HandlingIronDietarychemistry.chemical_elementZincmagnesiumFood handlingSelenium03 medical and health sciences0302 clinical medicineNutrientmedia_common.cataloged_instance030212 general & internal medicineFood scienceChocolate; cocoa; iron; magnesium; mineral; nutritional values; Cacao; Chocolate; Iron Dietary; Magnesium; Selenium; Trace Elements; Zinc; Food Handling; Nutritive Value; Food ScienceChocolateEuropean unionTrace Elementmedia_commonnutritional valueCacao030109 nutrition & dieteticsMineralSettore AGR/15 - Scienze E Tecnologie AlimentariTrace ElementsZincMilk ChocolatechemistrycocoaReference valuesnutritional valuesNutritive ValueIron DietarySeleniumFood ScienceInternational Journal of Food Sciences and Nutrition
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A joint experimental and ab initio study on the reactivity of several hydroxy selenides. Stereoselective synthesis of cis-disubstituted tetrahydrofur…

2001

Abstract The reactivity of several hydroxy selenides bearing an ethereal chain with catalytic amounts of perchloric acid in dichloromethane was investigated. Results showed that the position of the oxygen atom with respect to the seleniranium ring was crucial in order to get a good yield of the cyclized product. The factors on which yields of the 5- endo cyclization of the seleniranium ions depend were analysed by ab initio (HF/3-21G ∗ ) studies. An explanation of the different coordinating ability, towards the positively charged selenium atom, of the allylic OMe and homoallylic OH-2 groups was given.

Allylic rearrangementStereochemistryOrganic ChemistryAb initioBiochemistryMedicinal chemistryCatalysischemistry.chemical_compoundchemistrycyclizations oxygen heterocycles selenium theoretical studiesYield (chemistry)Drug DiscoveryReactivity (chemistry)StereoselectivityPerchloric acidDichloromethane
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Antimicrobial activity of biogenically produced spherical Se-nanomaterials embedded in organic material against Pseudomonas aeruginosa and Staphyloco…

2017

In an effort to prevent the formation of pathogenic biofilms on hydroxyapatite (HA)-based clinical devices and surfaces, we present a study evaluating the antimicrobial efficacy of Spherical biogenic Se-Nanostructures Embedded in Organic material (Bio Se-NEMO-S) produced by Bacillus mycoides SelTE01 in comparison with two different chemical selenium nanoparticle (SeNP) classes. These nanomaterials have been studied as potential antimicrobials for eradication of established HA-grown biofilms, for preventing biofilm formation on HA-coated surfaces and for inhibition of planktonic cell growth of Pseudomonas aeruginosa NCTC 12934 and Staphylococcus aureus ATCC 25923. Bio Se-NEMO resulted more e…

Anti-Infective Agent0301 basic medicineStaphylococcus aureusMetal Nanoparticleschemistry.chemical_elementBacillusBiocompatible MaterialsBioengineeringBacillus02 engineering and technologymedicine.disease_causeApplied Microbiology and BiotechnologyBiochemistrybiofilmantimicrobialsNanomaterialsMicrobiologyHydroxyapatiteSelenium03 medical and health sciencesAnti-Infective AgentsBiogenic Selenium nanoparticles (SeNPs) Hydroxyapatite Bacillus biofilm antimicrobials green synthesisOrganometallic CompoundsEnvironmental MicrobiologymedicineResearch ArticlesBiocompatible MaterialOrganometallic CompoundbiologyPseudomonas aeruginosagreen synthesisBiofilmBacillus mycoides021001 nanoscience & nanotechnologybiology.organism_classificationAntimicrobialBacilluDurapatite030104 developmental biologychemistryStaphylococcus aureusBiofilmsPseudomonas aeruginosaStaphylococcus aureu0210 nano-technologySeleniumResearch ArticleBiotechnologyBiogenic Selenium nanoparticles (SeNPs)
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Biogenic Selenium Nanoparticles: A Fine Characterization to Unveil Their Thermodynamic Stability

2021

Among the plethora of available metal(loid) nanomaterials (NMs), those containing selenium are interesting from an applicative perspective, due to their high biocompatibility. Microorganisms capable of coping with toxic Se-oxyanions generate mostly Se nanoparticles (SeNPs), representing an ideal and green alternative over the chemogenic synthesis to obtain thermodynamically stable NMs. However, their structural characterization, in terms of biomolecules and interactions stabilizing the biogenic colloidal solution, is still a black hole that impairs the exploitation of biogenic SeNP full potential. Here, spherical and thermodynamically stable SeNPs were produced by a metal(loid) tolerant Mic…

BiocompatibilityGeneral Chemical EngineeringNanoparticle02 engineering and technologyDFT calculationsArticleMicrococcusNanomaterials03 medical and health sciencesAdsorptionbiogenic selenium nanoparticlesMoleculeGeneral Materials ScienceFourier transform infrared spectroscopyQD1-999030304 developmental biologymultivariate statistical analysischemistry.chemical_classification0303 health sciencesBiomolecule021001 nanoscience & nanotechnologyChemistryFTIR spectroscopychemistryChemical engineering<i>Micrococcus</i>thermodynamic stabilityChemical stabilityselenium nanorods0210 nano-technologyNanomaterials
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A Method to Quantitatively Trap Volatilized Organoselenides for Stable Selenium Isotope Analysis

2011

If volatile organoselenides are to be analyzed for their stable Se isotope composition to elucidate sources and formation processes, organoselenides need to be trapped quantitatively to avoid artificial Se isotope fractionation. We developed an efficient trap of organoselenides to be used in microcosms designed to determine the Se isotope fractionation by microbial transformation of inorganic Se to volatile organoselenides. The recoveries of volatilized dimethyldiselenide (DMDSe) from aqueous standard solutions by activated charcoal and alkaline peroxide solution with subsequent freeze-drying and purification via a cation exchange resin were tested. Microcosm experiments with the Se-methyla…

Chromatography GasEnvironmental EngineeringAqueous solutionIsotopeChemistryRadiochemistryAlternariaManagement Monitoring Policy and LawPollutionPeroxidesSeleniumIsotopes of seleniumIsotope fractionationIsotopesActivated charcoalCharcoalOrganoselenium CompoundsComposition (visual arts)VolatilizationMicrocosmIon-exchange resinWaste Management and DisposalEnvironmental MonitoringWater Science and TechnologyJournal of Environmental Quality
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Characterization of thin film CIG(S,SE)2 submodules using solar simulator and laser beam induced current techniques (Versione estesa)

2015

In this work, the electrical and optical characterization of CIG(S, Se)2 sub-modules using both a solar simulator equipment and the Laser Beam Induced Current (LBIC) technique is presented. By using the solar simulator and a proper set-up, the electrical parameters of the modules at varying irradiance and temperatures are determined. In addition, the LBIC measurements are carried out to analyze the 2D photocurrent uniformity of the modules at two different wavelengths. Dispersion values of extracted parameters can be very useful for practically tuning the modelling stage at device/module level.

Laser Beam Induced Current (LBIC)Optical characterizationSubmoduleSettore ING-INF/02 - Campi ElettromagneticiSettore CHIM/07 - Fondamenti Chimici Delle TecnologieSemiconducting selenium compoundSolar simulatorSettore ING-INF/01 - ElettronicaElectrical parameter
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