Search results for "MICROORGANISMES"

showing 10 items of 45 documents

Improving membrane photobioreactor performance by reducing light path: operating conditions and key performance indicators

2020

[EN] Microalgae cultivation has been receiving increasing interest in wastewater remediation due to their ability to assimilate nutrients present in wastewater streams. In this respect, cultivating microalgae in membrane photobioreactors (MPBRs) allows decoupling the solid retention time (SRT) from the hydraulic retention time (HRT), which enables to increase the nutrient load to the photobioreactors (PBRs) while avoiding the wash out of the microalgae biomass. The reduction of the PBR light path from 25 to 10 cm increased the nitrogen and phosphorus recovery rates, microalgae biomass productivity and photosynthetic efficiency by 150, 103, 194 and 67%, respectively.The areal biomass product…

INGENIERIA HIDRAULICAEnvironmental EngineeringHydraulic retention timePerformance indicator0208 environmental biotechnologyBiomassPhotobioreactor02 engineering and technologyMicroorganismesWastewater010501 environmental sciencesMembrane photobioreactor01 natural sciencesPhotobioreactorschemistry.chemical_compoundNitrateMicroalgaeBiomassWaste Management and DisposalTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesWater Science and TechnologyCivil and Structural EngineeringbiologyOutdoor06.- Garantizar la disponibilidad y la gestión sostenible del agua y el saneamiento para todosEcological ModelingChemical oxygen demandPhosphorusPulp and paper industrybiology.organism_classificationPollution020801 environmental engineeringchemistryWastewaterNitrifying bacteriaVolatile suspended solidsEnvironmental scienceAigües residuals Depuració Tractament biològicLight path
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Nitrite inhibition of microalgae induced by the competition between microalgae and nitrifying bacteria

2020

[EN] Outdoor microalgae cultivation systems treating anaerobic membrane bioreactor (AnMBR) effluents usually present ammonium oxidising bacteria (AOB) competition with microalgae for ammonium uptake, which can cause nitrite accumulation. In literature, nitrite effects over microalgae have shown controversial results. The present study evaluates the nitrite inhibition role in a microalgae-nitrifying bacteria culture. For this purpose, pilot- and lab-scale assays were carried out. During the continuous outdoor operation of the membrane photobioreactor (MPBR) plant, biomass retention time (BRT) of 2 d favoured AOB activity, which caused nitrite accumulation. This nitrite was confirmed to inhib…

INGENIERIA HIDRAULICAEnvironmental EngineeringNitrite0208 environmental biotechnologyPhotobioreactorchemistry.chemical_element02 engineering and technologyMicroorganismes010501 environmental sciencesWastewater01 natural sciencesPhotobioreactorschemistry.chemical_compoundBioreactorsNitrateMicroalgaeAmmoniumFood scienceAmmonium oxidising bacteriaNitriteWaste Management and DisposalEffluentNitritesTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesWater Science and TechnologyCivil and Structural EngineeringBacteriabiologyChemistryOutdoor06.- Garantizar la disponibilidad y la gestión sostenible del agua y el saneamiento para todosEcological ModelingBacteris nitrificantsbiology.organism_classificationNitrificationPollutionNitrogen020801 environmental engineeringNitrifying bacteriaNitrificationOxidation-ReductionAigües residuals Depuració
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A multiplex PCR for the detection of Vibrio vulnificus hazardous to human and/or animal health from seafood

2022

Vibrio vulnificus is a zoonotic pathogen linked to aquaculture that is spreading due to climate change. The pathogen can be transmitted to humans and animals by ingestion of raw shellfish or seafood feed, respectively. The aim of this work was to design and test a new procedure to detect V. vulnificus hazardous to human and/or animal health in food/feed samples. For this purpose, we combined a pre-enrichment step with multiplex PCR using primers for the species and for human and animal virulence markers. In vitro assays with mixed DNA from different Vibrio species and Vibrio cultures showed that the new protocol was 100 % specific with a detection limit of 10 cfu/mL. The protocol was succes…

Microbiologia marinaSeafoodMicroorganismes patògensAnimalsHumansGeneral MedicineMultiplex Polymerase Chain ReactionVibrio vulnificusMicrobiologyEcosystemShellfishVibrioFood ScienceInternational Journal of Food Microbiology
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One Health Approach to Zoonotic Parasites: Molecular Detection of Intestinal Protozoans in an Urban Population of Norway Rats, Rattus norvegicus, in …

2021

Rattus norvegicus, the brown or Norway rat, is the most abundant mammal after humans in urban areas, where they live in close proximity to people. Among rodent-borne diseases, the reservoir role of Norway rats of zoonotic parasites in cities has practically been ignored. Considering the parasitic diseases in the One Health approach, we intended to identify and quantify the zoonotic intestinal protozoans (ZIP) in an urban population of R. norvegicus in the city of Barcelona, Spain. We studied the presence of ZIP in 100 rats trapped in parks (n = 15) as well as in the city’s sewage system (n = 85) in the winter of 2016/17. The protozoans were molecularly identified by means of a multiplex PCR…

Microbiology (medical)BarcelonaParàsits<i>Giardia duodenalis</i>PopulationDientamoeba fragilislcsh:MedicineSewageZoologyBiology<i>Cryptosporidium</i> spp.Cryptosporidium spp.Article<i>Blastocystis</i>Cryptosporidium sppOne Health approachZoonosesUrbanizationMicroorganismes patògensPandemicparasitic diseasesImmunology and AllergyeducationMolecular BiologyDientamoeba fragilis<i>Dientamoeba fragilis</i><i>Rattus norvegicus</i>education.field_of_studyBlastocystisGeneral Immunology and Microbiologybusiness.industrylcsh:RCryptosporidiumbiology.organism_classificationRattus norvegicuszoonosesInfectious DiseasesOne HealthBlastocystisbusinessGiardia duodenalis
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Iron regulatory mechanisms in Saccharomyces cerevisiae

2020

Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox cofactor in many cellular processes. However, excess iron can damage cells since it promotes the generation of reactive oxygen species. The budding yeast Saccharomyces cerevisiae has been used as a model organism to study the adaptation of eukaryotic cells to changes in iron availability. Upon iron deficiency, yeast utilizes two transcription factors, Aft1 and Aft2, to activate the expression of a set of genes known as the iron regulon, which are implicated in iron uptake, recycling and mobilization. Moreover, Aft1 and Aft2 activate the expression of Cth2, an mRNA-binding protein that limits t…

Microbiology (medical)DNA damageSaccharomyces cerevisiaelcsh:QR1-502Saccharomyces cerevisiaeMicroorganismesyeastMicrobiologylcsh:Microbiology03 medical and health sciencesTranscriptional regulationiron deficiencyFongsiron metabolismPost-transcriptional regulationTranscription factorGene030304 developmental biology0303 health sciencesbiology030306 microbiologyChemistryPost-transcriptional regulationiron excessbiology.organism_classificationYeastCell biologyCytosolReguloniron homeostasisFerro
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The Rotavirus Vaccine Landscape, an Update

2021

Rotavirus is the leading cause of severe acute childhood gastroenteritis, responsible for more than 128,500 deaths per year, mainly in low-income countries. Although the mortality rate has dropped significantly since the introduction of the first vaccines around 2006, an estimated 83,158 deaths are still preventable. The two main vaccines currently deployed, Rotarix and RotaTeq, both live oral vaccines, have been shown to be less effective in developing countries. In addition, they have been associated with a slight risk of intussusception, and the need for cold chain maintenance limits the accessibility of these vaccines to certain areas, leaving 65% of children worldwide unvaccinated and …

Microbiology (medical)diarrheaDeveloping countryReviewmedicine.disease_causeIntussusception (medical disorder)RotavirusEnvironmental healthMicroorganismes patògensvaccinemedicineImmunology and AllergyVacunacióCold chainMolecular BiologyintussusceptionGeneral Immunology and Microbiologybusiness.industryMortality rateRmedicine.diseaseRotavirus vaccineVirusDiarrheaInfectious DiseasesrotavirusMedicinemedicine.symptombusinessgastroenteritisPathogens
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Extracellular Histones Activate Endothelial NLRP3 Inflammasome and are Associated with a Severe Sepsis Phenotype

2022

Jesús Beltrán-García,1– 3 Rebeca Osca-Verdegal,1,3 Daniel Pérez-Cremades,2,3 Susana Novella,2,3 Carlos Hermenegildo,2,3 Federico V Pallardó,1– 3 José Luis García-Giménez1– 3 1Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER), Instituto de Salud Carlos III, Madrid, Spain; 2Instituto de Investigación Sanitaria INCLIVA, Valencia, Spain; 3Departamento de Fisiología, Facultad de Medicina y Odontología, Universitat de València, València, SpainCorrespondence: José Luis García-Giménez, Departamento de Fisiología, Facultad de Medicina y Odontología, Universitat de València, València, 46010, Spain, Tel +34 963 864 646, Email j.luis.garcia@uv.esIntrod…

Microorganismes patògensImmunologyImmunology and AllergySangJournal of Inflammation ResearchJournal of Inflammation Research
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Documento de consenso sobre el tratamiento antimicrobiano de las infecciones bacterianas odontogénicas

2005

Las infecciones de la cavidad bucal son un problema de salud pública frecuente y motivo constante de prescripción antibiótica; el 10% de los antibióticos se emplean para tratar este problema. Sin embargo, hasta la fecha son pocos los estudios realizados para determinar su incidencia. Asímismo, su relación con ciertas enfermedades sistémicas (cardiacas, endocrinas, etc...) confiere a estas patologías una importancia vital. A pesar de la reconocida frecuencia e importancia de las infecciones odontogénicas, llama la atención la actual dispersión de criterio en varios aspectos referentes a su clasificación, terminología y recomendaciones terapéuticas. El objetivo principal de este documento, re…

MicroorganismosEfecte dels medicaments sobre els microorganismes:CIENCIAS MÉDICAS ::Ciencias clínicas::Otras [UNESCO]Bacterial diseasesMicroorganismsAntibiòticsOral medicineMicroorganismesMouth MicrobiologyClasificaciónMalalties de la bocaInfectionsAmoxicilina/ácido clavulánicoAntibioticsResistenciaTratamientoMicrobiologia dentalOdontogénicosAntibióticosInfecciones odontogénicas; Clasificación; Diagnóstico; Tratamiento; Microorganismos; Odontogénicos; Resistencia; Antimicrobianos; Antibióticos; Amoxicilina/ácido clavulánicoGeneral DentistryAntimicrobianosMouthMalalties bacterianesUNESCO::CIENCIAS MÉDICAS ::Ciencias clínicas::OtrasBocaDiagnósticoInfecciones odontogénicasInfeccionsMouth diseasesOtorhinolaryngologyEstomatologiaEffect of drugs on microorganisms
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Pisum sativum – Pseudomonas interactions : influence on iron nutrution, growth and immunity of the host plant

2020

The project aimed at making progress in the knowledge of the iron-mediated interactions between pea and fluorescent pseudomonads in order to promote the iron-nutrition and health of the host-plant. A bibliographical study was conducted to draw up the state of the art concerning the influence of rhizosphere microorganisms on plant iron status (Chapter 1).Pisum sativum has been chosen as an agronomic model-plant because of its high potential in agroecology and in Human nutrition related to its ability to fix atmospheric nitrogen and to the high amino-acids content of its seeds. However, this species suffers from a high susceptibility to iron deficiency as expressed by the well-known chlorosis…

Plant iron nutrition[SDE.BE] Environmental Sciences/Biodiversity and EcologyPseudomonasIronInteractions plante-MicroorganismesNutrition en fer de la plantePyoverdines[SDE.BE]Environmental Sciences/Biodiversity and EcologyPlant-Microorganisms interactionsPisum sativumFer
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Influence of type III bacterial secretion system on the interactions between plant and non pathogenic fluorescent Pseudomonads spp.

2010

No abstract

Système de sécrétion de type IIIChampignons mycorhizogènes à arbuscules[ SDV.BV ] Life Sciences [q-bio]/Vegetal BiologyMycorrhiza helper bacteria (MHB)Medicago truncatula[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BV] Life Sciences [q-bio]/Vegetal BiologyPseudomonas spp. fluorescentsInteractions plantes-microorganismes bénéfiques
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