Search results for "Babesia"

showing 10 items of 21 documents

Innate immune response to tick-borne pathogens: Cellular and molecular mechanisms induced in the hosts

2020

This article belongs to the Special Issue Inflammasome.

0301 basic medicineInnate immune responseHost Defense MechanismReviewInflammasomelcsh:ChemistryTicksTheileriaTick borne pathogensRickettsialcsh:QH301-705.5SpectroscopyGene ontology analysisgene ontology analysisInflammasomeGeneral MedicineAcquired immune systemComputer Science ApplicationsTick-Borne DiseasesTumor necrosis factor alphamedicine.drugAnaplasma030106 microbiologyEhrlichiaBabesiaBiologyCatalysisMicrobiologyInorganic Chemistry03 medical and health sciencesAntigeninflammasomeparasitic diseasesmedicineAnimalsHumansPhysical and Theoretical ChemistryMolecular BiologyInnate immune systemOrganic Chemistrygene ontology analysibiology.organism_classificationImmunity InnateComplement systemInsect Vectors030104 developmental biologyRickettsialcsh:Biology (General)lcsh:QD1-999innate immune responsetick borne pathogens
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Validate or falsify: Lessons learned from a microscopy method claimed to be useful for detecting Borrelia and Babesia organisms in human blood.

2016

A modified microscopy protocol (the LM-method) was used to demonstrate what was interpreted as Borrelia spirochetes and later also Babesia sp., in peripheral blood from patients. The method gained much publicity, but was not validated prior to publication, which became the purpose of this study using appropriate scientific methodology, including a control group.Blood from 21 patients previously interpreted as positive for Borrelia and/or Babesia infection by the LM-method and 41 healthy controls without known history of tick bite were collected, blinded and analysed for these pathogens by microscopy in two laboratories by the LM-method and conventional method, respectively, by PCR methods i…

0301 basic medicineMicrobiology (medical)AdultDNA BacterialAdolescent030106 microbiologyBabesiaPolymerase Chain ReactionSensitivity and SpecificityMicrobiology03 medical and health sciencesYoung AdultLyme diseaseBorreliaBabesiosisparasitic diseasesMedicineAnimalsHumansChildAgedLyme DiseaseMicroscopyGeneral Immunology and MicrobiologyHuman bloodbiologybusiness.industryLyme borreliosisBorreliaInfantBabesiosisGeneral MedicineDNA ProtozoanMiddle Agedbiology.organism_classificationmedicine.diseaseVirologyPeripheral blood030104 developmental biologyInfectious DiseasesChild PreschoolBabesiaFemalebusinessInfectious diseases (London, England)
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A large-scale screening for the taiga tick, Ixodes persulcatus, and the meadow tick, Dermacentor reticulatus, in southern Scandinavia, 2016

2019

Abstract The taiga tick, Ixodes persulcatus, has previously been limited to eastern Europe and northern Asia, but recently its range has expanded to Finland and northern Sweden. The species is of medical importance, as it, along with a string of other pathogens, may carry the Siberian and Far Eastern subtypes of tick-borne encephalitis virus. These subtypes appear to cause more severe disease, with higher fatality rates than the central European subtype. Until recently, the meadow tick, Dermacentor reticulatus, has been absent from Scandinavia, but has now been detected in Denmark, Norway and Sweden. Dermacentor reticulatus carries, along with other pathogens, Babesia canis and Rickettsia r…

0301 basic medicineNymphmeadow tickDermacentor reticulatus030231 tropical medicineZoologyIxodes persulcatusIxodes persulcatusTickScandinavian and Nordic CountriesSiberian and Far Eastern tick-borne encephalitisTaiga ticklcsh:Infectious and parasitic diseases03 medical and health sciences0302 clinical medicineDogsDermacentor reticulatusBabesiosisparasitic diseasesmedicineAnimalslcsh:RC109-216NymphLetter to the Editorrange expansionDermacentorSwedenTick-borne diseasebiologyIxodesNorwayTick-borne encephalitisArthropod VectorsBabesiosismedicine.diseasebiology.organism_classificationGrasslandTick Infestations030104 developmental biologyInfectious DiseasesTick-Borne DiseasesEpidemiological MonitoringBabesia canissouthern ScandinaviaParasitologyAnimal DistributionEncephalitis Tick-BorneParasites & Vectors
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Sympatric Ixodes-tick species: pattern of distribution and pathogen transmission within wild rodent populations

2018

AbstractThe generalist tick Ixodes ricinus is the most important vector for tick-borne pathogens (TBP), including Borrelia burgdorferi sensu lato, in Europe. However, the involvement of other sympatric Ixodes ticks, such as the specialist vole tick I. trianguliceps, in the enzootic circulations of TBP remains unclear. We studied the distribution of I. ricinus and I. trianguliceps in Central Finland and estimated the TBP infection likelihood in the most common rodent host in relation with the abundance of the two tick species. Ixodes trianguliceps was encountered in all 16 study sites whereas I. ricinus was frequently observed only at a quarter of the study sites. The abundance of I. ricinus…

0301 basic medicineanimal diseaseslcsh:MedicineDisease VectorspuutiaisetBORRELIA-BURGDORFERI0302 clinical medicinepopulaatiotSCAPULARIS ACARIpathogen transmissionlcsh:ScienceFinlandMultidisciplinarybiologyArvicolinaeRicinuslevinneisyysBORNE ENCEPHALITIS-VIRUSSympatrytaudinaiheuttajatTick-Borne DiseasesANAPLASMA-PHAGOCYTOPHILUMEnzooticIxodes ricinusjyrsijät030231 tropical medicineZoologyLYME BORRELIOSISTickTRIANGULICEPSArticle03 medical and health sciencesIxodes triangulicepsparasitic diseasesAnimalsHumansBorrelia burgdorferiIxodesBABESIA-MICROTILAND-USELANDSCAPEfungilcsh:Rbiology.organism_classificationbacterial infections and mycosesBorrelia-bakteerit030104 developmental biologyRICINUS TICKSVoleIxodeslcsh:Q3111 BiomedicineScientific Reports
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Monitoring of ticks and tick-borne pathogens through a nationwide research station network in Finland.

2020

In 2015 a long-term, nationwide tick and tick-borne pathogen (TBP) monitoring project was started by the Finnish Tick Project and the Finnish Research Station network (RESTAT), with the goal of producing temporally and geographically extensive data regarding exophilic ticks in Finland. In the current study, we present results from the first four years of this collaboration. Ticks were collected by cloth dragging from 11 research stations across Finland in May September 2015-2018 (2012-2018 in Seili). Collected ticks were screened for twelve different pathogens by qPCR: Borrelia afzelii, Borrelia garinii, Borrelia valaisiana, Borrelia burgdorferi sensu stricto, Borrelia miyamotoi, Babesia sp…

0301 basic medicineviruksetPopulation DynamicsmonitorointiIxodes persulcatuspuutiaisetACARImedicine.disease_causeBURGDORFERI SENSU-LATODISEASEbakteeritTicks0302 clinical medicineINFECTIONPOPULATIONFinland11832 Microbiology and virologyTick-borne pathogensbiologylongitudinal studylevinneisyysPREVALENCEInfectious Diseasestaudinaiheuttajat1181 Ecology evolutionary biologyEpidemiological Monitoringtick-borne pathogensBartonella-bakteeritSeasonsLongitudinal studyNymphIxodes ricinusMonitoringBorrelia valaisiana030231 tropical medicineZoologyBabesiaLYME BORRELIOSISBorrelia miyamotoipitkittäistutkimusTickBorrelia afzeliiMicrobiologyticksEncephalitis Viruses Tick-Borne03 medical and health sciencesCOINFECTIONSparasitic diseasesGram-Negative BacteriamedicineAnimalsBorrelia burgdorferiIxodesIXODES-RICINUS TICKSbiology.organism_classificationbacterial infections and mycosespunkitBorrelia-bakteeritmonitoring030104 developmental biologyNationwideitiöeläimetInsect ScienceParasitologyBorrelia gariniinationwideCANDIDATUS NEOEHRLICHIA MIKURENSISTicks and tick-borne diseases
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A promising new ELISA diagnostic test for cattle babesiosis based on Babesia bigemina Apical Membrane Antigen-1.

2016

Babesiosis due to Babesia bigemina is a relevant tick‑borne disease, affecting cattle worldwide. Many surface proteins of the pathogen including the Apical Membrane Antigen 1 (AMA‑1) ‑ have been analysed for vaccine and diagnostic purposes. This study focused on B. bigemina AMA‑1 and on its use for the assessment of diagnostic tests. After bioinformatic analyses, AMA‑1 codifying region was amplified and cloned into an expression vector used to induce protein synthesis in Escherichia coli cells. AMA‑1 was purified by affinity chromatography and used to set up the best condition for an ELISA protocol. Bovine field sera positive to B. bigemina were used to evaluate the presence of anti‑AMA‑1 a…

Antibodies Apical Membrane Antigen-1 Babesia bigemina Babesiosis Diagnostic test ELISA Piroplasmosis Tick borne pathogens
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SVILUPPO DI METODICHE PER LA DIAGNOSI DELLA BABESIOSI BOVINA E RICERCA DI CANDIDATI VACCINALI IN BABESIA BIGEMINA

2012

Cattle babesiosis is a tick-borne disease transmitted by haemoparasites belonging to the phylum of Apicomplexa, such as Babesia bovis and B.bigemina. The pathology affects cattle mainly in tropical and subtropical areas, but also in Europe, strongly reducing meat and milk production. The study performed during these three years of PhD was addressed to the molecular characterization of Italian B.bigemina strains isolated from infected animals, with attention to the genes codifying for surface antigens, putative candidates for vaccine and diagnostic tools development. One of the molecules potentially involved in the erythrocyte invasion by B.bigemina is the Apical Membrane Antigen-1 (AMA-1), …

BABESIOSI BOVINABABESIA BIGEMINACANDIDATI VACCINALISettore BIO/06 - Anatomia Comparata E Citologia
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Identification and molecular characterization of an antigen of Babesia bigemina with homology to the Apical Membrane Antigen 1 (AMA-1) of Apicomplexa

2008

Babesia bigemina AMA-1
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Babesia bigemina Apical Membrane Antigen-1: features of the gene and predictive information of the protein from Italian strains

2010

Babesia bigemina is a tick-borne haemoparasite affecting cattle in different parts of the world. One of the few antigens characterized in this species codifies for the Apical Membrane Antigen 1 (AMA-1), a transmembrane protein recently identified. In this work, we characterized the ama-1 gene from four Italian B.bigemina strains, two obtained from Ragusa, Sicily (ITA1 and ITA3), one obtained from Benevento, Campania (ITA2) and one coming from Perugia, Umbria (ITA4). Italian sequences were compared to the Australian strain, whose sequence is available in the Sanger Institute web site, and to some strains coming from different parts of the world. This study provides useful information on the …

Babesia bigemina AMA-1
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Sequence variability in the Babesia bigemina merozoite surface antigen GP45 gene among Mexican and Italian isolates

2008

Babesia bigemina merozoite surface Antigen gp45
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