Search results for "vibrio"

showing 10 items of 233 documents

Structure of a polysaccharide from the lipopolysaccharide of Vibrio vulnificus CECT4602 containing 2-acetamido-2,3,6-trideoxy-3-[(S)- and (R)-3-hydro…

2008

A polysaccharide was isolated by GPC after mild acid treatment of the lipopolysaccharide of Vibrio vulnificus CECT4602 and found to contain L-Rha, D-GlcpNAc and 2-acetamido-2,3,6-trideoxy-3-(3-hydroxybutanoylamino)-L-mannose (L-RhaNAc3NHb). GLC analysis of the trifluoroacetylated (S)-2-octyl esters derived by full acid hydrolysis of the polysaccharide showed that approximately 80% of the 3-hydroxybutanoic acid has the S configuration and approximately 20% the R configuration. The following structure of the polysaccharide was established by (1)H and (13)C NMR spectroscopies, including 2D ROESY and (1)H/(13)C HMBC experiments: [carbohydrate sequence see in text].

Lipopolysaccharideschemistry.chemical_classificationMagnetic Resonance SpectroscopybiologyLipopolysaccharideStereochemistryMolecular Sequence DataPolysaccharides BacterialOrganic ChemistryMannoseGeneral MedicineVibrio vulnificusCarbon-13 NMRbiology.organism_classificationPolysaccharideBiochemistryAnalytical Chemistrychemistry.chemical_compoundCarbohydrate SequencechemistryAcid hydrolysisAcid treatmentMannoseVibrio vulnificusCarbohydrate Research
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The lipopolysaccharide O side chain of Vibrio vulnificus serogroup E is a virulence determinant for eels

1997

Vibrio vulnificus is a gram-negative bacterium capable of producing septicemic infections in eels and immunocompromised humans. Two biotypes are classically recognized, with the virulence for eels being specific to strains belonging to biotype 2, which constitutes a homogeneous lipopolysaccharide (LPS)-based O serogroup (which we have designated serogroup E). In the present study we demonstrated that the O side chain of this LPS determines the selective virulence of biotype 2 for eels: (i) biotype 1 strains (which do not belong to serogroup E) are destroyed by the bactericidal action of nonimmune eel serum (NIS) through activation of the alternative pathway of complement, (ii) biotype 2 str…

Lipopolysaccharidesendocrine systemanimal structuresLipopolysaccharideComplement Pathway AlternativeImmunologyMutantVirulenceVibrio vulnificusBiologyMicrobiologyMicrobiologychemistry.chemical_compoundPhagocytosisVibrionaceaeAnimalsVibrioEelsVirulenceO Antigensbiology.organism_classificationVirologyVibrioInfectious DiseaseschemistryAlternative complement pathwayImmunizationParasitologyBacteriaResearch Article
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Production of methyl mercury in the gut of the Australian termite Mastotermes darwiniensis

2008

Animals are often exposed to or can ingest heavy metals along with their food. Therefore, we tested whether the hindgut microbiota of Mastotermes darwiniensis possesses the capability to form methyl mercury. The termite M. darwiniensis (Isoptera) was fed with saw dust containing different concentrations of inorganic mercury. Methyl mercury was determined by purge-and-trap capillary gas chromatography-atom fluorescence spectrometry (CGC-AFS) using ethyl mercury chloride as the internal standard. Total mercury concentrations were determined in the termite tissue by inductive coupled plasma-isotope dilution mass spectrometry (ICP-IDMS) after microwave-assisted digestion. The obtained results s…

MERCUREbiologyMicroorganismFluorescence spectrometrychemistry.chemical_elementHindgutbiology.organism_classificationDesulfovibrioChlorideMercury (element)chemistryMastotermes darwiniensisInsect ScienceEnvironmental chemistryBotanymedicineAgronomy and Crop Sciencemedicine.drugJournal of Applied Entomology
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Toxicological profile of cereulide, the Bacillus cereus emetic toxin, in functional assays with human, animal and bacterial cells

2007

International audience; Some strains of the endospore-forming bacterium Bacillus cereus produce a heat-stable ionophoric peptide, cereulide, of high human toxicity. We assessed cell toxicity of cereulide by measuring the toxicities of crude extracts of cereulide producing and non-producing strains of B. cereus, and of pure cereulide, using cells of human, animal and bacterial origins. Hepatic cell lines and boar sperm, with cytotoxicity and sperm motility, respectively, as the end points, were inhibited by <= 1 nM of cereulide present as B. cereus extract. RNA synthesis and cell proliferation in HepG2 cells was inhibited by 2 nM of cereulide. These toxic effects were explainable by the acti…

MaleLuminescenceSwineCytotoxicityBacillus cereusCYP1A1Toxicologymedicine.disease_causeHepa-1Ames testPotassium carrierchemistry.chemical_compoundMiceDepsipeptidesBioassayRNA Neoplasm0303 health sciencesbiologyMotilityAliivibrio fischeriSpermatozoaAmes testCereusBiochemistry[SDV.TOX]Life Sciences [q-bio]/ToxicologySperm MotilityBiological AssayERODBioluminescenceHepG2CereulideCell SurvivalBacterial ToxinsVibrio fischeriHEp-2Microbiology03 medical and health sciencesBacillus cereusCell Line TumorIonophoremedicineAnimalsHumansRNA synthesis030304 developmental biologyCell ProliferationDose-Response Relationship Drug030306 microbiologyToxinMutagenicity TestsfungiMicronucleus assayCereulidecomet test (SCG)biology.organism_classificationComet assaychemistryHepatocytesbacteriaBoar spermGenotoxicityGenotoxicity
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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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Phenotypic study by numerical taxonomy of strains belonging to the genus Aeromonas.

2002

Aims:  This study was undertaken to cluster and identify a large collection of Aeromonas strains. Methods and Results:  Numerical taxonomy was used to analyse phenotypic data obtained on 54 new isolates taken from water, fish, snails, sputum and 99 type and reference strains. Each strain was tested for 121 characters but only the data for 71 were analysed using the `SSM' and `SJ' coefficients, and the UPGMA clustering algorithm. At SJ values of ≥ 81·6% the strains clustered into 22 phenons which were identified as Aer. jandaei, Aer. hydrophila, Aer. encheleia, Aer. veronii biogroup veronii, Aer. trota, Aer. caviae, Aer. eucrenophila, Aer. ichthiosmia, Aer. sobria, Aer. allosaccharophila, Ae…

Microbiological Techniquesanimal structuresendocrine system diseasesGenotypeurologic and male genital diseasesApplied Microbiology and BiotechnologyMicrobiologyNumerical taxonomyVibrionaceaeGenotypeGeneticsbiologyPhylogenetic treeUPGMAReproducibility of ResultsGeneral Medicinebiology.organism_classificationClassificationPhenotypefemale genital diseases and pregnancy complicationsPhenotypeAeromonasTaxonomy (biology)Aeromonashuman activitiesAlgorithmsBiotechnologyJournal of applied microbiology
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In Vitro Testing of Alternative Synthetic and Natural Antiparasitic Compounds against the Monogenean Sparicotyle chrysophrii

2021

© 2021 by the authors.

Microbiology (medical)AnthelminthicsAntiparasiticmedicine.drug_class<i>Sparicotyle chrysophrii</i>AquacultureBiologyMicrobiology03 medical and health sciencesIvermectinAquacultureSettore AGR/20 - Zoocolturemedicinegilthead sea breamImmunology and AllergyParasite hostingPotency14. Life underwateranthelminthicsMolecular Biology030304 developmental biology0303 health sciencesGeneral Immunology and MicrobiologyVibrio harveyibusiness.industryR04 agricultural and veterinary sciencesanthelminthics ; aquaculture ; gilthead sea bream ; monogenea ; Sparicotyle chrysophriimonogeneabiology.organism_classification3. Good healthPraziquantelInfectious DiseasesaquacultureGilthead sea breamSparicotyle chrysophriiToxicity040102 fisheries0401 agriculture forestry and fisheriesMedicinebusinessMonogeneamedicine.drugPathogens
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The Fish Pathogen Vibrio vulnificus Biotype 2: Epidemiology, Phylogeny, and Virulence Factors Involved in Warm-Water Vibriosis

2015

ABSTRACT Vibrio vulnificus biotype 2 is the etiological agent of warm-water vibriosis, a disease that affects eels and other teleosts, especially in fish farms. Biotype 2 is polyphyletic and probably emerged from aquatic bacteria by acquisition of a transferable virulence plasmid that encodes resistance to innate immunity of eels and other teleosts. Interestingly, biotype 2 comprises a zoonotic clonal complex designated as serovar E that has extended worldwide. One of the most interesting virulence factors produced by serovar E is RtxA1 3 , a multifunctional protein that acts as a lethal factor for fish, an invasion factor for mice, and a survival factor outside the host. Two practically id…

Microbiology (medical)Gene Transfer HorizontalVirulence FactorsPhysiologyFish farmingBacterial ToxinsVirulenceVibrio vulnificusMicrobiologyFish DiseasesMicePlasmidReceptors TransferrinGeneticsAnimalsHumansVibrio vulnificusGenePathogenPhylogenyEelsGeneral Immunology and MicrobiologyEcologybiologyCell Biologybiology.organism_classificationImmunity InnateInfectious DiseasesVibrio InfectionsHorizontal gene transferWater MicrobiologyBacterial outer membranePlasmidsMicrobiology Spectrum
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Method for Specific Identification of the Emerging Zoonotic Pathogen Vibrio vulnificus Lineage 3 (Formerly Biotype 3).

2020

ABSTRACT Vibrio vulnificus is a zoonotic pathogen that is spreading worldwide due to global warming. Lineage 3 (L3; formerly biotype 3) includes the strains of the species with the unique ability to cause fish farm-linked outbreaks of septicemia. The L3 strains emerged recently and are particularly virulent and difficult to identify. Here, we describe a newly developed PCR method based on a comparative genomic study useful for both rapid identification and epidemiological studies of this interesting emerging group. The comparative genomic analysis also revealed the presence of a genetic duplication in the L3 strains that could be related to the unique ability of this lineage to produce sept…

Microbiology (medical)Genetics0303 health sciencesLineage (genetic)030306 microbiologyVirulenceOutbreakBacteriologyVibrio vulnificusBiologybiology.organism_classificationDisease Outbreaks03 medical and health sciencesFish DiseasesSepsisVibrio InfectionsGene duplicationAnimalsHumansComparative genomic analysisZoonotic pathogenVibrio vulnificus030304 developmental biologySpecific identificationVibrioJournal of clinical microbiology
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Vibrio Proteases for Biomedical Applications: Modulating the Proteolytic Secretome of V. alginolyticus and V. parahaemolyticus for Improved Enzymes P…

2019

Proteolytic enzymes are of great interest for biotechnological purposes, and their large-scale production, as well as the discovery of strains producing new molecules, is a relevant issue. Collagenases are employed for biomedical and pharmaceutical purposes. The high specificity of collagenase-based preparations toward the substrate strongly relies on the enzyme purity. However, the overall activity may depend on the cooperation with other proteases, the presence of which may be essential for the overall enzymatic activity, but potentially harmful for cells and tissues. Vibrios produce some of the most promising bacterial proteases (including collagenases), and their exo-proteome includes s…

Microbiology (medical)ProteasesV. alginolyticusproteases productionMicrobiologyArticle<i>V. parahaemolyticus</i>03 medical and health sciences<i>V. alginolyticus</i>V. AlginolyticuSettore BIO/10 - BiochimicaVirologymedicinelcsh:QH301-705.5030304 developmental biology2. Zero hungerchemistry.chemical_classificationVibrio alginolyticus0303 health sciencesbiology030306 microbiologyChemistryVibrio parahaemolyticusProteolytic enzymesSubstrate (chemistry)biology.organism_classificationVibriocollagenaseEnzymeBiochemistrylcsh:Biology (General)proteolytic secretomeCollagenaseV. parahaemolyticusmedicine.drugMicroorganisms
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