Search results for "echinostoma"

showing 10 items of 55 documents

FOOD MAKES YOU A TARGET: DISENTANGLING GENETIC, PHYSIOLOGICAL, AND BEHAVIORAL EFFECTS DETERMINING SUSCEPTIBILITY TO INFECTION

2010

Genetics, physiology, and behavior are all expected to influence the susceptibility of hosts to parasites. Furthermore, interactions between genetic and other factors are suggested to contribute to the maintenance of genetic polymorphism in resistance when the relative susceptibility of host genotypes is context dependent. We used a maternal sibship design and long- and short-term food deprivation treatments to test the role of family-level genetic variation, body condition, physiological state, and foraging behavior on the susceptibility of Lymnaea stagnalis snails to infection by a trematode parasite that uses chemical cues to locate its hosts. In experimental exposures, we found that sna…

0106 biological sciencesFood deprivationForagingLymnaea stagnalisSnail010603 evolutionary biology01 natural sciencesHost-Parasite Interactions03 medical and health sciencesbiology.animalparasitic diseasesGenetic variationGenotypeGeneticsAnimalsParasite hostingFinlandEcology Evolution Behavior and SystematicsLymnaea030304 developmental biologyEchinostomatidae0303 health sciencesbiologyEcologyGenetic VariationFeeding Behaviorbiology.organism_classificationFood DeprivationGeneral Agricultural and Biological SciencesBody conditionEvolution
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Partial resistance to homologous challenge infections of the digenean Echinostoma caproni in ICR mice

2015

AbstractIn the present paper, we analyse the effect of a primary infection of ICR mice with Echinostoma caproni (Trematoda: Echinostomatidae) on the generation of resistance against homologous challenge infections. In ICR mice, E. caproni induces chronic infections concomitantly with strong responses characterized by the development of T-helper 1 (Th1)-type local immune responses with elevated levels of local interferon-gamma (IFN-γ) and inflammatory and antibody responses. Here, the effect of the response generated against a primary infection with E. caproni in the generation of resistance against subsequent homologous infections was analysed. For this purpose, ICR mice were challenged wit…

0301 basic medicineEchinostoma caproniAntibodies HelminthMicrobiologyInterferon-gamma03 medical and health sciencesImmune systemEchinostomaHomologous chromosomeAnimalsParasite hostingDisease ResistanceInflammationEchinostomiasisMice Inbred ICRbiologyGeneral MedicineTh1 Cellsbiology.organism_classificationDisease Models Animal030104 developmental biologyAntibody responseAnimal Science and ZoologyParasitologyTrematodaIcr miceJournal of Helminthology
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Subcutaneous injection of exosomes reduces symptom severity and mortality induced by Echinostoma caproni infection in BALB/c mice.

2016

Recent studies have shown the importance of exosomes in the host-parasite relationship. These vesicles are an important part of the excretory/secretory pathway for proteins with the potential to alter immune responses. Therefore, in the present study, we examined the immunomodulatory role of exosomes in BALB/c mice using Echinostoma caproni as an experimental model of intestinal helminth infection. For this purpose, BALB/c mice were injected twice s.c. with purified exosomes of E. caproni, followed by experimental infection. We report a delay in the development of the parasite in mice immunised with exosomes, a concomitant reduced symptom severity and increased survival upon infection. Immu…

0301 basic medicineInjections Subcutaneous030231 tropical medicineAntibodies HelminthSpleenExosomesExosomeBALB/cHost-Parasite InteractionsImmunomodulation03 medical and health sciencesSubcutaneous injectionInterferon-gammaMiceRandom Allocation0302 clinical medicineImmune systemAntigenTransforming Growth Factor betaEchinostomamedicineAnimalsIntestinal Diseases ParasiticEchinostomiasisMice Inbred BALB Cbiologybiology.organism_classificationMicrovesiclesImmunoglobulin AInterleukin-10Disease Models Animal030104 developmental biologyInfectious Diseasesmedicine.anatomical_structureImmunoglobulin MAntigens HelminthImmunoglobulin GImmunologybiology.proteinParasitologyFemaleInterleukin-4AntibodySpleenInternational journal for parasitology
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Antibody trapping: A novel mechanism of parasite immune evasion by the trematode Echinostoma caproni

2017

Background Helminth infections are among the most prevalent neglected tropical diseases, causing an enormous impact in global health and the socioeconomic growth of developing countries. In this context, the study of helminth biology, with emphasis on host-parasite interactions, appears as a promising approach for developing new tools to prevent and control these infections. Methods/Principal findings The role that antibody responses have on helminth infections is still not well understood. To go in depth into this issue, work on the intestinal helminth Echinostoma caproni (Trematoda: Echinostomatidae) has been undertaken. Adult parasites were recovered from infected mice and cultured in vi…

0301 basic medicineMalePhysiologyAntibody ResponsePathogenesisPathology and Laboratory MedicineBiochemistryMiceImmune PhysiologyEchinostomaMedicine and Health SciencesParasite hostingEnzyme-Linked ImmunoassaysMicroscopy ImmunoelectronImmune ResponseEchinostomiasisImmune System Proteinsbiologylcsh:Public aspects of medicineProteases030108 mycology & parasitologyEnzymesInfectious DiseasesHelminth InfectionsHost-Pathogen InteractionsTrematodaAntibodyEchinostomaCellular Structures and OrganellesResearch ArticleProtein BindingProteaseslcsh:Arctic medicine. Tropical medicinelcsh:RC955-962ImmunologyAntibodies HelminthContext (language use)Research and Analysis MethodsAntibodies03 medical and health sciencesImmune systemParasitic DiseasesAnimalsSecretionVesiclesImmunoassaysImmune EvasionPublic Health Environmental and Occupational HealthBiology and Life SciencesProteinslcsh:RA1-1270Cell Biologybiology.organism_classificationVirologyDisease Models Animal030104 developmental biologyMicroscopy FluorescenceProteolysisbiology.proteinImmunologic TechniquesEnzymologyPLoS Neglected Tropical Diseases
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Resistance against Echinostoma caproni (Trematoda) secondary infections in mice is not dependent on the ileal protein production

2016

Echinostoma caproni (Trematoda: Echinostomatidae) is an intestinal trematode, which has been widely employed to investigate the factors determining the rejection of intestinal helminths. Protein production patterns of intestinal epithelial cells are related to the infection-induced changes that determine the course of E. caproni infections. Herein, we compare the protein production profiles in the ileum of four experimental groups of mice: control; infected; dewormed and reinfected. Worm burdens were significantly lower in secondary infections, confirming the generation of partial resistance to homologous secondary infections in mice. However, quantitative comparison by 2D-DIGE showed that …

0301 basic medicineSecondary infection030231 tropical medicineBiophysicsIleumBiochemistryMass SpectrometryMice03 medical and health sciences0302 clinical medicineIleumEchinostomaProtein biosynthesismedicineAnimalsHelminthsTissue homeostasisCell ProliferationDisease ResistanceEchinostomiasisCell DeathbiologyCoinfectionEpithelial Cellsbiology.organism_classificationPraziquantel030104 developmental biologymedicine.anatomical_structureProtein BiosynthesisImmunologyTrematodaEchinostomamedicine.drugJournal of Proteomics
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Interleukin-25-mediated resistance against intestinal trematodes does not depend on the generation of Th2 responses

2020

AbstractInterleukin-25 (IL-25) is recognized as the most relevant initiator of protective Th2 responses in intestinal helminth infections. It is well known that IL-25 induces resistance against several species of intestinal helminths, including the trematode Echinostoma caproni. E. caproni has been extensively used as an experimental model to study the factors determining the resistance to intestinal infections. Herein, we assessed the role of IL-25 in the generation of resistance in mice to E. caproni infections. ICR mice are permissive hosts for E. caproni in which chronic infections are developed in relation to the lack of IL-25 production in response to primary infection and the consequ…

0301 basic medicinemedicine.medical_treatmentResistanceDrug ResistanceHelminthiasisGene ExpressionEchinostoma caproniMiceTh20302 clinical medicineEchinostomaInterleukin 25Intestinal Diseases ParasiticSTAT6EchinostomiasisInterleukin-17PhenotypeIntestinesInfectious DiseasesCytokineCytokinesTrematodaSecondary infection030231 tropical medicineAntibodies HelminthTrematode InfectionsBiologyIntestinal helminthlcsh:Infectious and parasitic diseases03 medical and health sciencesTh2 CellsImmune systemMemory cellImmunitymedicineHelminthsAnimalslcsh:RC109-216RNA MessengerPermissiveResistance (ecology)ResearchImmunityDisease Models Animal030104 developmental biologyImmunoglobulin GImmunologySTAT proteinParasitologySTAT6 Transcription FactorInterleuquin-25
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The transcriptome of Echinostoma caproni adults: further characterization of the secretome and identification of new potential drug targets.

2013

Abstract Echinostomes are cosmopolitan parasites that infect a large number of different warm-blooded hosts, both in nature and in the laboratory. They also constitute an important group of food-borne trematodes of public health importance mainly in Southeast Asia and the Far East. In addition, echinostomes are an ideal model to study several aspects of intestinal helminth biology, since they present a number of advantages. For example, echinostomes are large worms whose life cycle is relatively easy to maintain in the laboratory. Recently, several studies documented their great value in the study of intestinal helminth–vertebrate host relationship. Detailed knowledge of their genome, trans…

AnthelminticsEchinostomiasisProteomeved/biologyved/biology.organism_classification_rank.speciesBiophysicsComputational biologyHelminth ProteinsBiologyBiochemistryMolecular biologyGenomeHomology (biology)TranscriptomeSecretory proteinMetabolomicsDrug Delivery SystemsEchinostomaProteomeHelminthsAnimalsAmino Acid SequenceModel organismJournal of proteomics
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Protective immunity against Echinostoma caproni in rats is induced by Syphacia muris infection.

2012

Syphacia muris (Nematoda: Oxyuridae) is a ubiquitous nematode that commonly infects rats in the laboratory and can interfere with the development of unrelated biological assays. In this context, we analysed the effect of a patent S. muris infection in Wistar rats on a superimposed infection with the intestinal trematode, Echinostoma caproni (Trematoda: Echinostomatidae). The results indicate that in the rats, infection with S. muris induces an immunity against a subsequent infection with E. caproni, although each parasite occupies different niches in the host. Echinostoma caproni worm recovery was significantly decreased in the rats primarily infected with S. muris and, at 3 and 4 weeks pos…

Antibodies HelminthIleumContext (language use)Trematode InfectionsImmunityIleumOxyuroideamedicineParasite hostingHelminthsAnimalsIntestinal MucosaRats WistarImmunity MucosalDisease ResistanceOxyuriasisEchinostomatidaebiologyMucinbiology.organism_classificationRatsDisease Models AnimalInfectious Diseasesmedicine.anatomical_structureNematodeImmunologyParasitologyFemaleTrematodaInternational journal for parasitology
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Production and chronobiology of emergence of the cercariae of Euparyphium albuferensis (Trematoda: Echinostomatidae).

1999

The production and the chronobiology of emergence of the cercariae of Euparyphium albuferensis from Gyraulus chinensis experimentally infected with a single miracidium were established during 28 consecutive days from the first day of cercarial shedding. Moreover, the effect of a sudden change in light-dark cycling was investigated. Although the daily cercarial shedding rates show great variability, a progressive increase in cercarial production was observed in the first weeks of the cercarial shedding periods, probably in relation to the demography of intramollusean larval stages. Under 12:12 light-dark cycling condition;, it, albuferensis cercariae emerged in the light, and the rhythm was …

Chronobiology PhenomenaEchinostomatidaeChronobiologyLarvabiologyLightEcologySnailsIntermediate hostZoologyDarknessbiology.organism_classificationPulmonataEchinostomatidaeCircadian RhythmHost-Parasite InteractionsAnimalsParasitologyCircadian rhythmTrematodaGyraulus chinensisEcology Evolution Behavior and Systematics
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Euparyphium albuferensis and Echinostoma friedi (Trematoda: Echinostomatidae): Experimental cercarial transmission success in sympatric snail communi…

2008

Euparyphium albuferensis and Echinostoma friedi cercarial infectivity to four species of sympatric snails was exam- ined under single- or multiple-choice laboratory conditions to show the level of parasite-snail host compatibility. Radix peregra, Lymnaea fuscus, Physella acuta and Gyraulus chinensis act as second intermediate hosts of both parasite species although differ- ent cercarial transmission success (CTS) was observed. In single-host experiments, R. peregra and P. acuta showed a high de- gree of compatibility with E. albuferensis, while only P. acuta in the case of E. friedi. In two-choice snail communities, a snail with high CTS increased the values of another with low compatibilit…

EchinostomatidaeSympatrybiologyEcologySnailsRadix peregraZoologyTrematode InfectionsSnailbiology.organism_classificationPhysella acutaSympatric speciationbiology.animalAnimalsParasite hostingParasitologyTrematodaGyraulus chinensis
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