0000000000157035

AUTHOR

Alessandra Torina

showing 17 related works from this author

Hemoprotozoa of domestic animals in France: Prevalence and molecular characterization

2008

Very limited information is available on epizootiology of haematozoan infections in French domestic animals. In an attempt to address this issue, prevalence of piroplasmida was studied in carnivores and ruminants, whereas prevalence of Hepatozoon spp. was only investigated in carnivores. In total, 383 animals were included in the survey (namely 116 cats, 108 dogs, 91 sheep and 68 cows). Parasite diagnosis was carried out using molecular methods such as PCR and sequencing of the 18S rRNA gene. In addition, ruminant samples were analyzed with the reverse line blotting technique (RLB). Results of RLB and PCR plus sequencing were in total agreement. In carnivores, haematozoan prevalence was clo…

Veterinary medicinePrevalenceBabesiaPolymerase Chain ReactionDogsBabesiosisTheileriaparasitic diseasesTheileriaPrevalenceRNA Ribosomal 18SAnimalsPiroplasmidaSheepGeneral VeterinarybiologySequence Analysis RNAData CollectionEpizootiology Hepatozoon canis Piroplasmida PCRGeneral MedicineCytauxzoonosisbiology.organism_classificationTheileriasisCytauxzoonCanisAnimals DomesticBabesiaCatsBabesia canisCattleParasitologyFranceVeterinary Parasitology
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A retrospective study of the characterization of Rickettsia species in ticks collected from humans

2017

Rickettsiae (family Rickettsiaceae, order Rickettsiales) are obligate intracellular bacteria transmitted by arthropod vectors. Several Rickettsia species causing vector-borne rickettsioses belong to the spotted fever group (SFG). Traditionally, Rickettsia conorii has been considered as the main etiologic agent of Mediterranean spotted fever. However, the molecular characterization of rickettsiae allowed identifying other species involved in spotted fever in the Mediterranean region. In this study, 42 ticks collected from humans were subjected to morphological identification and molecular characterization of Rickettsia species potentially involved in human rickettsiosis in Sicily. Fourteen t…

0301 basic medicineanimal structuresRhipicephalus sanguineusHyalomma marginatum030231 tropical medicine030106 microbiologyBacterial ProteinTickTicks rickettsia spotted fever group humans zoonosis molecular analysisMicrobiologyMicrobiology03 medical and health sciencesZoonosis0302 clinical medicineTicksBacterial ProteinsZoonosiRetrospective Studieparasitic diseasesmedicineAnimalsHumansRickettsiaSicilyRetrospective StudiesRickettsia massiliaebiologyMolecular analysiAnimalMolecular analysisRickettsia InfectionRickettsia Infectionsbiology.organism_classificationmedicine.diseasebacterial infections and mycosesSpotted feverRickettsiaRickettsiosisInfectious DiseasesInsect ScienceSpotted fever groupbacteriaParasitologyRickettsia conoriiHumanTick
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Serological and Molecular Evidence of Bartonella henselae in Stray Cats from Southern Italy

2021

Bartonella henselae is a slow growing and facultative intracellular pathogen mainly transmitted by arthropod vectors adapted to domestic and wild mammalian reservoir hosts. Since cats are the major source of the B. henselae infection, this study aimed to evaluate the seroprevalence and the DNA presence in randomly sampled stray cats. Blood samples of 429 cats were collected from shelter of Palermo (Southern Italy) and sera and whole blood were analyzed for the presence of antibodies against B. henselae by indirect immunofluorescence assay (IFA) and by real-time polymerase chain reaction (PCR), respectively. Two hundred and three sera (47.3%) were positive to IFA and 148 blood samples (34.5%…

0301 basic medicineMicrobiology (medical)040301 veterinary sciencesQH301-705.5Microbiologylaw.inventionSerology<i>Bartonella henselae</i>0403 veterinary science03 medical and health scienceslawVirologySeroprevalenceBiology (General)PathogenPolymerase chain reactionBartonella henselaeCATSbiologyseroprevalencecats04 agricultural and veterinary sciencesbiology.organism_classificationVirology030104 developmental biologyReal-time polymerase chain reactionbiology.proteinAntibodyreal-time PCRMicroorganisms
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Antigen-specific T cells and cytokines detection as useful tool for understanding immunity against zoonotic infections.

2012

Zoonoses include a broad range of diseases, that are becoming of great interest, due to the climate changing, that cause the adaptation of vectors to new niches and environments. Host immune responses play a crucial role in determining the outcome of infections, as documented by expansion of antigen-specific T cells during several zoonotic infections. Thus, understanding of the contribution of antigen-specific T-cell subsets in the host immune response is a powerful tool to evaluate the different immunological mechanisms involved in zoonotic infections and for the development of effective vaccines. In this paper we discuss the role of T cells in some eukaryotic and prokaryotic infectious mo…

lcsh:Immunologic diseases. AllergyNematodaT-LymphocytesImmunologyReview ArticleAdaptive ImmunityBiologyHost-Parasite InteractionsImmune systemT-Lymphocyte SubsetsAntigen specificImmunityZoonosesAnimalsHumansImmunology and AllergyAntigensTh1-Th2 BalanceZoonoses antigen specific T-cells animal immunology.VaccinesBacteriaZoonotic InfectionGeneral MedicineAcquired immune systemVirologyImmunity InnateHost-Pathogen InteractionsImmunologyCytokinesAdaptationlcsh:RC581-607
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West Nile Disease (WND) in Sicily

2012

WND is an emerging vector-borne zoonosis caused by an RNA virus included in the Japanese encephalitis group within the Flavivirus genus. In Italy, after the first appearance in Tuscany in 1998, West Nile Virus (WNV) has been continuously circulating since 2008. A National Surveillance Program consisting of monitoring horses, “sentinel poultries”, wild bird mortality and mosquitoes is active in the entire national territory since 2002. Authors describe the outbreaks which occurred in Sicily in 2010 and 2011. Case study: Between September-October 2010, seven horses from the western part of the island, in the Trapani province, showed neurological symptoms. In October 2011, another two horses s…

Microbiology (medical)0303 health sciences03 medical and health sciencesWEST NILE DISEASE horses Sicily0302 clinical medicineGeographyInfectious Diseases030306 microbiologyZoology030212 general & internal medicineGeneral MedicineDiseaseInternational Journal of Infectious Diseases
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The janus face of NKT cell function in autoimmunity and infectious diseases

2018

Natural killer T cells (NKT) are a subset of T lymphocytes bridging innate and adaptive immunity. These cells recognize self and microbial glycolipids bound to non-polymorphic and highly conserved CD1d molecules. Three NKT cell subsets, type I, II and NKT-like expressing different antigen receptors (TCR) were described and TCR activation promotes intracellular events leading to specific functional activities. NKT can exhibit different functions depending on the secretion of soluble molecules and the interaction with other cell types. NKT cells act as regulatory cells in the defence against infections but, on the other hand, their effector functions can be involved in the pathogenesis of sev…

0301 basic medicineglycolipidsAutoimmunityReviewAdaptive Immunitymedicine.disease_causeAutoimmunityCatalysiimmunologylcsh:Chemistry0302 clinical medicineT-Lymphocyte Subsetslcsh:QH301-705.5SpectroscopyInnate lymphoid cellhemic and immune systemsComputer Science Applications1707 Computer Vision and Pattern RecognitionGeneral MedicineNKTNatural killer T cellAcquired immune systemComputer Science ApplicationsCell biologyCD1DmicrobesCell typechemical and pharmacologic phenomenaGlycolipidBiologyCD1dCommunicable DiseasesCatalysisInorganic Chemistry03 medical and health sciencesmedicineAnimalsHumansMicrobePhysical and Theoretical ChemistryMolecular BiologyInflammationT-cell receptorOrganic ChemistryModels ImmunologicalAlpha-galactosylceramideAlpha-galactosylceramide; Autoimmunity; CD1d; Glycolipids; Microbes; NKT; Sulfatide; Catalysis; Molecular Biology; Spectroscopy; Computer Science Applications1707 Computer Vision and Pattern Recognition; Physical and Theoretical Chemistry; Organic Chemistry; Inorganic ChemistryImmunity InnateSettore MED/16 - Reumatologia030104 developmental biologylcsh:Biology (General)lcsh:QD1-999biology.proteinNatural Killer T-CellsSulfatideCD8030215 immunology
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Toxocara canis infection induces antigen-specific IL-10 and IFNγ production in pregnant dogs and their puppies

2005

Toxocara canis (T. canis) is originally a parasite of canine bitches and their pups. The pathogenicity of T. canis infection is enhanced during pregnancy and puppyhood. The aim of this study was to investigate if modification of IFNgamma and IL-10 secretion occurs during infection in pregnant dogs and puppies. Analysis of cytokines secreted could let us hypothesize a role for IL-10 and/or IFNgamma in T. canis infection. We tested T. canis-specific production of IFNgamma and IL-10 by lymphocytes of pregnant dogs and their puppies after in vitro re-exposure to purified excretory/secretory antigen (ESAg) from T. canis. Blood mononuclear cells (BMC) isolated from pregnant dogs and their puppies…

medicine.medical_treatmentImmunologyIn Vitro TechniquesPeripheral blood mononuclear cellInterferon-gammaDogsAntigenPregnancymedicineAnimalsDog DiseasesPregnancyToxocariasisGeneral VeterinarybiologyToxocara canisbiology.organism_classificationmedicine.diseaseIn vitroInterleukin-10Interleukin 10CanisCytokineAntigens HelminthPregnancy Complications ParasiticImmunologyFemaleToxocara canisVeterinary Immunology and Immunopathology
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Immune response to tick-borne hemoparasites: Host adaptive immune response mechanisms as potential targets for therapies and vaccines

2020

This article belongs to the Section Molecular Immunology.

0301 basic medicineChemokine030106 microbiologyReviewAdaptive ImmunityBiologyCatalysisEpitopeInorganic Chemistry03 medical and health sciencesImmune systemAntigenmedicineAnimalsHumansCytotoxic T cellPhysical and Theoretical ChemistryAntigensMolecular BiologySpectroscopyVaccinesHost Microbial InteractionsEffectorOrganic ChemistryGeneral MedicineT helper cellAcquired immune systemTick-borne hemoparasitesComputer Science Applications030104 developmental biologymedicine.anatomical_structureAdaptive immune response Antigens Tick-borne hemoparasitesTick-Borne DiseasesImmunologybiology.proteinAdaptive immune response
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Characterization of the Apical Membrane Antigen-1 in Italian Strains of Babesia bigemina

2010

Summary Babesia bigemina is a parasite endemic in different parts of the world, including Europe and the Americas. One of the few genes characterized in this species codifies for the Apical Membrane Antigen 1 (AMA-1), a trans-membrane antigen recently identified. In this research, we characterized the ama-1 gene from three Italian B. bigemina strains, two B. bigemina strains obtained from Ragusa, Sicily (ITA1 and ITA3) and a third one obtained from Benevento, Campania (ITA2). Italian sequences were compared with those of the Australian strain obtained from the Sanger Institute web site and to strains from different parts of the world. The results obtained confirmed that this newly described…

General VeterinaryGeneral Immunology and MicrobiologyAntigenStrain (biology)Parasite hostingGeneral MedicineApical membrane antigen 1BiologyVirologyGeneBabesia bigeminaMicrobiologyWeb siteTransboundary and Emerging Diseases
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Avian mite dermatitis: an Italian case indicating the establishment and spread of Ornithonyssus bursa (Acari: Gamasida: Macronyssidae) (Berlese, 1888…

2015

Background Avian mite dermatitis is a skin disease caused in mammals by the incidental bites of blood-sucking mites which customarily parasitize wild and domestic birds. It manifests in the form of pruritic, erythematous, or urticarial papules, with a central sting mark, in skin regions normally covered by clothing. The species mainly implicated in human bite cases are Dermanyssus gallinae, Ornithonyssus sylviarum and, less frequently, Ornithonyssus bursa. The latter is mainly a tropical and subtropical mite and its – presumably transitory – presence has been recorded only once in Europe, in migratory birds. Case report We report a case of avian mite dermatitis in a 70-year-old man, an owne…

MaleVeterinary medicineMite InfestationsDermanyssus gallinaeDermatitisDermatologymedicine.disease_causeparasitic diseasesInfestationMitemedicineSettore MED/35 - Malattie Cutanee E VenereeAnimalsHumansAcariSicilyPoultry DiseasesAgedMitesintegumentary systembiologyOrnithonyssus bursa human infestation Alien speciesEuropebiology.organism_classificationArthropod mouthpartsStingMacronyssidaeOrnithonyssus bursaIntroduced SpeciesChickensInternational journal of dermatology
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Recent Advances on the Innate Immune Response to Coxiella burnetii.

2021

Coxiella burnetii is an obligate intracellular Gram-negative bacterium and the causative agent of a worldwide zoonosis known as Q fever. The pathogen invades monocytes and macrophages, replicating within acidic phagolysosomes and evading host defenses through different immune evasion strategies that are mainly associated with the structure of its lipopolysaccharide. The main transmission routes are aerosols and ingestion of fomites from infected animals. The innate immune system provides the first host defense against the microorganism, and it is crucial to direct the infection towards a self-limiting respiratory disease or the chronic form. This review reports the advances in understanding…

Microbiology (medical)LipopolysaccharidesImmunologyexperimental modelcytokine—immunological termsQ feverimmunotherapeuticReviewMicrobiologyMicrobiologyImmune systemCellular and Infection MicrobiologyToll-like receptorinflammasomeautophagiamedicineAnimalsHumansPathogeninnate immunityInnate immune systemObligatebiologyTransmission (medicine)MacrophagesInflammasomeCoxiella burnetiibiology.organism_classificationmedicine.diseasebacterial infections and mycosesImmunity InnateQR1-502Toll-like receptorsimmunotherapeuticsInfectious DiseasesCoxiella burnetiibacteriaQ Fevercytokine—immunological termmedicine.drug
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Development and validation of two PCR tests for the detection of and differentiation between Anaplasma ovis and Anaplasma marginale

2012

Anaplasma ovis and Anaplasma marginale are tick-transmitted bacteria that cause anaplasmosis in domestic and wild animals. Recent results show that some domestic and wild animals and ticks are susceptible to both A. ovis and A. marginale, thus supporting the need to differentiate between these species in hosts and ticks diagnosed with Anaplasma infection. However, although anaplasmosis is one of the most common diseases of grazing animals worldwide, rapid and effective tests are not available for the detection of and discrimination between these 2 Anaplasma species. The objective of this research was to develop an easy and reliable method to identify and discriminate between the closely rel…

DNA BacterialVeterinary MedicineAnaplasmosisAnaplasmaSequence analysisMolecular Sequence DataMicrobiologySensitivity and SpecificityBacterial geneticslaw.inventionMajor surface protein 4Bacterial Proteinslawparasitic diseasesAnaplasma Diagnostics major surface protein 4 Polymerase Chain ReactionmedicineAnimalsAnaplasmaPathogenOvisDiagnosticsPolymerase chain reactionDNA PrimersBacteriological TechniquesbiologyAnaplasma ovisAnaplasma ovisSequence Analysis DNAbiology.organism_classificationmedicine.diseaseVirologyPolymerase chain reactionAnaplasma marginaleInfectious DiseasesMolecular Diagnostic TechniquesInsect ScienceParasitologyAnaplasmosis
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Detection of natural killer T cells in mice infected with Rickettsia conorii.

2013

Little information is available regarding the role of natural killer T (NKT) cells during the early stage of Rickettsia conorii infection. Herein, C3H/HeN mice were infected with the Malish 7 strain of R. conorii. Splenocytes from these mice were analysed in the early stage of the infection by flow cytometry and compared with uninfected controls. Our results showed an increase in NKT cells in infected mice. Additionally, NKT interleukin (IL)-17(+) cells increased three days after infection, together with a concurrent decrease in the relative amount of NKT interferon (IFN)-γ(+) cells. We also confirmed a higher amount of NK IFN-γ(+) cells in infected mice. Taken together, our data showed tha…

rickettsiosis; interleukin 17; interferon-γchemical and pharmacologic phenomenaSpleenrickettsiosisBiologyBoutonneuse FeverFlow cytometryMiceInterferonmedicineAnimalsCells CulturedImmunity CellularMice Inbred C3HGeneral VeterinaryGeneral Immunology and Microbiologymedicine.diagnostic_testInterleukinGeneral Medicinemedicine.diseaseNatural killer T cellbiology.organism_classificationInterferon-γ; interleukin 17; rickettsiosisVirologyRickettsia conoriiRickettsiosismedicine.anatomical_structureImmunologyNatural Killer T-CellsInterferon-γInterleukin 17Rickettsia conoriiinterleukin 17Spleenmedicine.drugTransboundary and emerging diseases
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Development of fluorogenic probe-based PCR assays for the detection and quantification of bovine piroplasmids.

2009

This paper reports two new quantitative PCR (qPCR) assays, developed in an attempt to improve the detection of bovine piroplasmids. The first of these techniques is a duplex TaqMan assay for the simultaneous diagnosis of Babesia bovis and B. bigemina. This technique is ideal for use in South America where bovids harbour no theilerids. The second technique, which is suitable for the diagnosis of both babesiosis and theileriosis worldwide, involves fluorescence resonance energy transfer (FRET) probes. In FRET assays, Babesia bovis, B. divergens, Babesia sp. (B. major or B. bigemina), Theileria annae and Theileria sp. were all identifiable based on the melting temperatures of their amplified f…

BabesiaPolymerase Chain ReactionSensitivity and Specificitylaw.inventionlawBabesiosisTheileriaTheileriaFluorescence Resonance Energy TransferTaqManmedicineAnimalsHorsesBabesia bigeminaPolymerase chain reactionGeneral VeterinarybiologyReproducibility of ResultsBabesia bovisBabesiosisGeneral MedicineDNA Protozoanbiology.organism_classificationmedicine.diseaseVirologyMolecular biologyBabesiaTheileria Quantitative PCR Molecular diagnostic TaqMan probes FRET probesTheileriasisReal-time polymerase chain reactionBabesiaCattleHorse DiseasesParasitology
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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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Rickettsia conorii Indian Tick Typhus Strain and R. slovaca in Humans, Sicily

2012

Letter to the Editor.-- et al.

Microbiology (medical)LetterSettore MED/17 - Malattie Infettivevector-borne infectionslcsh:MedicineBacteremiaBiologyTickBoutonneuse FeverMicrobiologylcsh:Infectious and parasitic diseasesBacterial proteinBacterial ProteinsSequence Homology Nucleic AcidmedicineHumanslcsh:RC109-216Letters to the EditorSicilyCiencias VeterinariasStrain (biology)RICKETTSIOSIS SICILY TICKlcsh:RMediterranean spotted feverMediterranean spotted fever (Boutonneuse fever)zoonosisIndian tick typhus strainmedicine.diseasebiology.organism_classificationVirologyrickettsiatickRickettsia slovacaBoutonneuse feverRickettsia conoriiInfectious DiseasesCIENCIAS AGRÍCOLASRickettsia slovacaepidemiology//purl.org/becyt/ford/4.3 [https]Rickettsia conorii//purl.org/becyt/ford/4 [https]TyphusMultilocus Sequence TypingEmerging Infectious Diseases
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Scalp eschar and neck lymphadenopathy caused by Rickettsia massiliae

2013

To the Editor: Scalp eschar and neck lymphadenopathy is a common clinical entity that most frequently affects women and children during spring and fall. It is usually caused by Rickettsia slovaca and R. raoultii. Typical clinical signs are a scalp lesion at the tick bite site and regional, often painful, lymphadenopathy. Acute disease can be followed by residual alopecia at the bite site (1,2). Two designations have been proposed for this syndrome: tick-borne lymphadenopathy and Dermacentor-borne necrosis-erythema-lymphadenopathy (both have been associated with R. slovaca); however, the most generic and all-inclusive term is scalp eschar and neck lymphadenopathy. R. massiliae belongs to the…

MalePathologyLetterEpidemiologylcsh:MedicineSerologyMedicineRickettsiaRickettsia massiliaebacteriafeverbiologyRickettsia InfectiontickInfectious Diseasesmedicine.anatomical_structuremedicine.symptomDermacentorHumanDNA BacterialMicrobiology (medical)medicine.medical_specialtyAdolescentSettore MED/17 - Malattie InfettiveMolecular Sequence DataInfectious DiseaseEscharTicklcsh:Infectious and parasitic diseasesCicatrixBacterial Typing Techniquelymphadenopathylcsh:RC109-216Rickettsia; Rickettsia massiliae; bacteria; eschar; fever; lymphadenopathy; scalp eschar and neck lymphadenopathy; tick; Adolescent; Alopecia; Animals; Bacterial Typing Techniques; Base Sequence; Cicatrix; DNA Bacterial; Dermacentor; Humans; Lymphatic Diseases; Male; Molecular Sequence Data; Rickettsia; Rickettsia Infections; Scalp; Microbiology (medical); Infectious Diseases; EpidemiologyLetters to the EditorDermacentorRickettsia massiliaeScalpScalp EscharBase Sequencebusiness.industryAnimallcsh:RRickettsia massiliae; Scalp Eschar; LymphadenopathyAlopeciascalp eschar and neck lymphadenopathybiology.organism_classificationSpotted feverRickettsiaScalpLymphatic Diseasebusinesseschar
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