Search results for "Parasite"

showing 10 items of 827 documents

Glochidia Infection of Endemic Fishes from Lake Prespa, N. Macedonia

2022

Large freshwater mussels (Unionida) are long-lived, have large bodies, and produce thousands to millions of larvae (glochidia) that usually must attach to host fish tissue to complete their life cycle. This is an obligate parasitic stage of mussel larvae. However, less than one in onemillion find a suitable host and survive. The degree of host specificity varies among unionid species, from specialists that can successfully parasitize only one or a few closely related fish species to generalists that can complete development on a taxonomically broad range of fish species. In addition, freshwater mussels are among the most threatened groups of animals. This is due to habitat destruction, the …

isojärvisimpukkaswan musselswan mussel; glochidia parasites; cyprinid fish; <i>Rutilus prespensis</i>; <i>Chondrostoma prespense</i>parasitismicyprinid fishisäntälajitvedenlaatusimpukatRutilus prespensisChondrostoma prespensetoukatsärkikalatglochidia parasiteskalatHydrobiology; Volume 2; Issue 1; Pages: 36-43
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Nesting behaviour and description of mature larva of Lindenius albilabris (Fabricius, 1793) (Hymenoptera: Crabronidae)

2022

Nesting habits of the digger wasp Lindenius albilabris (Fabricius, 1793) at two localities in Poland were studied. The female hunts nymphs or adults of plant bugs Lygus rugulipennis Poppius, 1911 and L. pratensis (Linnaeus, 1758), depositing up to 10 individuals per cell, depending on their size. Nests are built in a wide variety of sandy habitats, on dirt roads, and in wastelands. The nest consists of a 10–12 cm long main burrow and one to three cells. Males are usually found on flowers of wild carrots Achillea millefolium, Daucus carota, Peucedanum oreoselinum, Pimpinella sp. and Tanacetum vulgare. The nest kleptoparasite Metopia argyrocephala was recorded in nests of this species. The ma…

kleptoparasiteslarvapredatorsBehavioral ecologyAnimal Science and Zoologydigger wasps
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The transcriptome analysis of Strongyloides stercoralis L3i larvae reveals targets for intervention in a neglected disease.

2012

Background: Strongyloidiasis is one of the most neglected diseases distributed worldwide with endemic areas in developed countries, where chronic infections are life threatening. Despite its impact, very little is known about the molecular biology of the parasite involved and its interplay with its hosts. Next generation sequencing technologies now provide unique opportunities to rapidly address these questions. Principal Findings: Here we present the first transcriptome of the third larval stage of S. stercoralis using 454 sequencing coupled with semi-automated bioinformatic analyses. 253,266 raw sequence reads were assembled into 11,250 contiguous sequences, most of which were novel. 8037…

lcsh:Arctic medicine. Tropical medicineSequence analysisHaemonchus-contortuslcsh:RC955-962Molecular Sequence DataComputational biologyBiologyBioinformaticsDNA sequencingStrongyloides stercoralisTranscriptomeParasitic DiseasesmedicineAnimalsHumansDictyocaulus-viviparusGene Expression Profilinglcsh:Public aspects of medicinePublic Health Environmental and Occupational HealthNeglected DiseasesFunctional genomicslcsh:RA1-1270Sequence Analysis DNADNA Protozoanmedicine.diseasebiology.organism_classificationGene expression profilingInfectious DiseasesStrongyloidiasisLarvaHost-Pathogen InteractionsStrongyloidesStrongyloidiasisMedicineHelminth-parasitesStrongyloides stercoralisFunctional genomicsResearch ArticleNeglected Tropical DiseasesPLoS Neglected Tropical Diseases
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Baseline Gut Microbiota Composition Is Associated With Schistosoma mansoni Infection Burden in Rodent Models

2020

In spite of growing evidence supporting the occurrence of complex interactions between Schistosoma and gut bacteria in mice and humans, no data is yet available on whether worm-mediated changes in microbiota composition are dependent on the baseline gut microbial profile of the vertebrate host. In addition, the impact of such changes on the susceptibility to, and pathophysiology of, schistosomiasis remains largely unexplored. In this study, mice colonized with gut microbial populations from a human donor (HMA mice), as well as microbiota-wild type (WT) animals, were infected with Schistosoma mansoni, and alterations of their gut microbial profiles at 50 days post-infection were compared to …

lcsh:Immunologic diseases. Allergy0301 basic medicineRodentImmunologyAntibodies ProtozoanSchistosomiasisGut floradigestive systemParasite LoadHost-Parasite InteractionsMicrobiologyImmunomodulationFecesMice03 medical and health sciences0302 clinical medicineimmune-modulationhuman-microbiota associated mouse modelsRNA Ribosomal 16Sbiology.animalLactobacillusmedicineAnimalsImmunology and AllergySchistosomaBacteriabiologyFOS: Clinical medicineComputational BiologyBiodiversitySchistosoma mansonidysbiosismedicine.diseasebiology.organism_classificationSchistosomiasis mansoniGastrointestinal MicrobiomeDisease Models Animal030104 developmental biologyhelminth-gut microbiota interactionsSchistosomaMetagenomicsSchistosoma mansonigut microbial diversityProteobacterialcsh:RC581-607Dysbiosis030215 immunology
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THE ROLE OF EXTRACELLULAR VESICLES IN MODULATING THE HOST IMMUNE RESPONSE DURING PARASITIC INFECTIONS

2014

Parasites are the cause of major diseases affecting billions of people. As the inflictions caused by these parasites affect mainly developing countries, they are considered as neglected diseases. These parasitic infections are often chronic and lead to significant immunomodulation of the host immune response by the parasite, which could benefit both the parasite and the host and are the result of millions of years of co-evolution. The description of parasite extracellular vesicles (EVs) in protozoa and helminths suggests that they may play an important role in host–parasite communication. In this review, recent studies on parasitic (protozoa and helminths) EVs are presented and their potent…

lcsh:Immunologic diseases. AllergyImmunologyReview ArticleimmunomodulationExtracellular vesiclesprotozoaImmune systemProtozoan infectionHelminthsImmunodulationparasitic diseasesmedicineImmunology and AllergyParasite hostingHelminthshelminthProtozoan InfectionsbiologyHost (biology)biology.organism_classificationmedicine.diseaseImmunologyparasiteProtozoaextracellular vesicleslcsh:RC581-607Frontiers in Immunology
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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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Phenotypic Buffering in a Monogenean: Canalization and Developmental Stability in Shape and Size of the Haptoral Anchors of Ligophorus cephali (Monog…

2015

Phenotypic variation results from the balance between sources of variation and counteracting regulatory mechanisms. Canalization and developmental stability are two such mechanisms, acting at two different levels of regulation. The issue of whether or not they act concurrently as a common developmental buffering capacity has been subject to debate. We used geometric morphometrics to quantify the mechanisms that guarantee phenotypic constancy in the haptoral anchors of Ligophorus cephali. Canalization and developmental stability were appraised by estimating inter- and intra-individual variation, respectively, in size and shape of dorsal and ventral anchors. The latter variation was estimated…

lcsh:MedicineStability (probability)Fluctuating asymmetryMorfologia (Biologia) -- MatemàticaParasites -- VariationAnimalsMorphology -- Mathematicslcsh:ScienceMorphometricsAnalysis of VariancePrincipal Component AnalysisMultidisciplinarybiologylcsh:RAnatomybiology.organism_classificationPhenotypeDactylogyridaeLigophorus cephaliFixation (population genetics)PhenotypePlatyhelminthsEvolutionary biologylcsh:QParàsits -- VariacióMonogeneaResearch ArticlePLoS ONE
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Parasite presence induces gene expression changes in an ant host related to immunity and longevity

2021

Most species are either parasites or exploited by parasites, making parasite&ndash

lcsh:QH426-470<i>Anomotaenia brevis</i>host–parasite interactionAntsextended phenotypehost lifespanHymenopteraArticleAnomotaenia brevisHost-Parasite Interactions570 Life scienceslcsh:GeneticstranscriptomicsGene Expression RegulationTemnothorax nylanderiAnimalsCestodaInsect Proteins<i>Temnothorax nylanderi</i>570 Biowissenschaften
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Genotype-specific vs. cross-reactive host immunity against a macroparasite

2013

Vertebrate hosts often defend themselves against several co-infecting parasite genotypes simultaneously. This has important implications for the ecological dynamics and the evolution of host defence systems and parasite strategies. For example, it can drive the specificity of the adaptive immune system towards high genotype-specificity or cross-reactivity against several parasite genotypes depending on the sequence and probability of re-infections. However, to date, there is very little evidence on these interactions outside mammalian disease literature. In this study we asked whether genotype-specific or cross-reactive responses dominate in the adaptive immune system of a fish host towards…

lcsh:Rlcsh:MedicineTrematode InfectionsAdaptive ImmunityCross Reactionshost-parasite interactionHost-Parasite InteractionsristikkäisresistenssiFish Diseasesco-infectionOncorhynchus mykissisäntä-loinen vuorovaikutusyhteisinfektioAnimalslcsh:QTrematodalcsh:Sciencecross-resistanceLymnaeaResearch Article
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Apoptotic-like Leishmania exploit the host´s autophagy machinery to reduce T-cell-mediated parasite elimination

2015

Apoptosis is a well-defined cellular process in which a cell dies, characterized by cell shrinkage and DNA fragmentation. In parasites like Leishmania, the process of apoptosis-like cell death has been described. Moreover upon infection, the apoptotic-like population is essential for disease development, in part by silencing host phagocytes. Nevertheless, the exact mechanism of how apoptosis in unicellular organisms may support infectivity remains unclear. Therefore we investigated the fate of apoptotic-like Leishmania parasites in human host macrophages. Our data showed--in contrast to viable parasites--that apoptotic-like parasites enter an LC3(+), autophagy-like compartment. The compartm…

log.ph logarithmic phaseT-LymphocytesApoptosisMACS magnetic-associated cell sortingMacrophageMFI mean fluorescence intensityLeishmaniasisMOI multiplicity of infectionanti-inflammatoryLeishmaniaeducation.field_of_studyPhagocytesCFSE carboxyfluorescein succinimidyl esterTGFB transforming growth factorAcquired immune systemapoptotic-like LeishmaniaPS phosphatidylserinehuman primary macrophagesCell biologyβ; TT tetanus toxoidCorrigendumProgrammed cell deathautophagyPopulationAntigen presentationANXA5 annexin VBasic Science Research PapersBiologyPhagocytosisCM complete mediumMAP1LC3/LC3 microtubule-associated protein 1 light chain 3AnimalsHumansMHC major histocompatibility complexIF immunofluorescenceeducationMolecular Biologyimmune evasionPBMCs peripheral blood mononuclear cellsT-cell proliferationIntracellular parasiteMacrophagesstat.ph stationary phaseAutophagyLm LeishmaniaCell BiologyLeishmaniabiology.organism_classificationIL interleukinLAP LC3-associated phagocytosisLAPhMDM human monocyte derived macrophageAutophagy
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