Search results for "Interaction"

showing 10 items of 5710 documents

Anxiety during English lessons among ninth graders in a Finnish comprehensive school

1997

language anxietyEnglish lessonclassroom activityanxietyteacher-student interaction
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In-Seguire la Regola: Giochi Linguistici e Arti Performative

2017

Abstract In this paper, we will describe some characteristics of the relationship between spectator and artwork from the point of view of the mechanisms of comprehension of an artwork, with a specific focus on performing arts. We will develop our argument along the lines of a comparison between art and language, focusing on analogies and differences between the comprehension of an artwork and linguistic comprehension. We will build on Wittgenstein’s notion of rule and language game, and on models of linguistic interaction developed within the domain of cognitive science and psycholinguistics. Both paradigms rely on a systemic approach to linguistic interaction, with interaction being concei…

language game linguistic interaction performing arts rule-followingSettore M-FIL/05 - Filosofia E Teoria Dei Linguaggi
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Interpreting and managing a monolingual norm in an English-speaking class in Finland: When first and second graders contest the norm

2011

This study explores the stances that multilingual learners adopt in the face of a monolingual, “English-only” norm in a primary English medium class in Finland. I examine classroom interaction focusing on three students and the ways in which they reinterpret, reformulate, and contest this norm. This research is informed by the perspective of language socialization and draws on methods of microethnographic discourse analysis. I find that the three focal students come into opposition when they interpret and manage the institutional monolingual norm differently, indexing issues of mother tongue expertise and group membership. Aleksi employs a variety of discursive practices in resisting the En…

language socializationlanguage normsclassroom interactionethnographymultilingual learners
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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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2018

Tetraspanins (Tspans) are a family of four-span transmembrane proteins, known as plasma membrane “master organizers.” They form Tspan-enriched microdomains (TEMs or TERMs) through lateral association with one another and other membrane proteins. If multiple microdomains associate with each other, larger platforms can form. For infection, viruses interact with multiple cell surface components, including receptors, activating proteases, and signaling molecules. It appears that Tspans, such as CD151, CD82, CD81, CD63, CD9, Tspan9, and Tspan7, coordinate these associations by concentrating the interacting partners into Tspan platforms. In addition to mediating viral attachment and entry, these …

lcsh:Immunologic diseases. Allergy0301 basic medicineCell signalingTetraspaninsMini ReviewreceptorImmunology610 MedizinbuddingvirusBiologyVirusStructure-Activity Relationship03 medical and health sciencesMembrane MicrodomainsTetraspanintrafficking610 Medical sciencesAnimalsHumansendocytosisImmunology and Allergy030102 biochemistry & molecular biologymicrodomainLipid microdomainMembrane ProteinsVirus InternalizationTransmembrane proteinCell biologytetraspanin030104 developmental biologyMembrane proteinViral replicationVirus DiseasesHost-Pathogen Interactionsentrylcsh:RC581-607BiomarkersCD81Frontiers in Immunology
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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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Prediction of Specific TCR-Peptide Binding From Large Dictionaries of TCR-Peptide Pairs

2019

Abstract The T cell repertoire is composed of T cell receptors (TCR) selected by their cognate MHC-peptides and naive TCR that do not bind known peptides. While the task of distinguishing a peptide-binding TCR from a naive TCR unlikely to bind any peptide can be performed using sequence motifs, distinguishing between TCRs binding different peptides requires more advanced methods. Such a prediction is the key for using TCR repertoires as disease-specific biomarkers. We here used large scale TCR-peptide dictionaries with state-of-the-art natural language processing (NLP) methods to produce ERGO (pEptide tcR matchinG predictiOn), a highly specific classifier to predict which TCR binds to which…

lcsh:Immunologic diseases. AllergyComputer scienceevaluation methodsT-LymphocytesT cellImmunologyReceptors Antigen T-CellEpitopes T-LymphocyteTarget peptidePeptide bindingPeptidechemical and pharmacologic phenomenaComputational biologyLigandsSoftware implementationautoencoder (AE)AntigenEvaluation methodsmedicineImmunology and AllergyHumansProtein Interaction Domains and MotifsEpitope specificityAntigensDatabases ProteinOriginal Researchchemistry.chemical_classificationBinding SitesT cell repertoireChemistryRepertoirelong short-term memory (LSTM)T-cell receptorepitope specificitydeep learninghemic and immune systemsmedicine.anatomical_structuremachine learningPeptidesSequence motiflcsh:RC581-607SoftwareProtein BindingSignal TransductionTCR repertoire analysisFrontiers in Immunology
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How the knowledge of interactions between meningococcus and the human immune system has been used to prepare effective Neisseria meningitidis vaccines

2015

In the last decades, tremendous advancement in dissecting the mechanisms of pathogenicity ofNeisseria meningitidisat a molecular level has been achieved, exploiting converging approaches of different disciplines, ranging from pathology to microbiology, immunology, and omics sciences (such as genomics and proteomics). Here, we review the molecular biology of the infectious agent and, in particular, its interactions with the immune system, focusing on both the innate and the adaptive responses. Meningococci exploit different mechanisms and complex machineries in order to subvert the immune system and to avoid being killed. Capsular polysaccharide and lipooligosaccharide glycan composition, in…

lcsh:Immunologic diseases. AllergyImmunologyGenomicsMeningococcal VaccinesMeningococcal vaccineReview ArticleBiologyMeningitis MeningococcalNeisseria meningitidisProteomicsmedicine.disease_causeImmune systemAntigenConjugate vaccineImmunityAnimals; Gram-Negative Bacteria; Host-Pathogen Interactions; Humans; Immunity; Meningitis Meningococcal; Meningococcal Vaccines; Neisseria meningitidis; Immune System; Immunology and Allergy; ImmunologyGram-Negative BacteriamedicineAnimalsHumansImmunology; Immunology and AllergyImmunology and AllergyNeisseria meningitidisImmunityGeneral MedicineVirologyImmune SystemHost-Pathogen Interactionslcsh:RC581-607
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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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New Insight into Immunity and Immunopathology of Rickettsial Diseases

2011

Human rickettsial diseases comprise a variety of clinical entities caused by microorganisms belonging to the generaRickettsia,Orientia,Ehrlichia, andAnaplasma. These microorganisms are characterized by a strictly intracellular location which has, for long, impaired their detailed study. In this paper, the critical steps taken by these microorganisms to play their pathogenic roles are discussed in detail on the basis of recent advances in our understanding of molecularRickettsia-host interactions, preferential target cells, virulence mechanisms, three-dimensional structures of bacteria effector proteins, upstream signalling pathways and signal transduction systems, and modulation of gene exp…

lcsh:Immunologic diseases. AllergySettore MED/09 - Medicina InternaVirulence FactorsRickettsial diseasesImmunologyRickettsiaceae InfectionsVirulenceImmunopathologyReview ArticleAdaptive ImmunityHost SpecificityMicrobiologyImmune systemBacterial ProteinsImmunityAnimalsHumansImmunology and AllergyAnaplasmaMolecular Targeted TherapyRickettsiaArthropodsPathogenRickettsieaeGeneticsImmunopathology; Rickettsial diseasesbiologyEffectorGeneral Medicinebacterial infections and mycosesbiology.organism_classificationAcquired immune systemOrientiaImmunity InnateGene Expression RegulationHost-Pathogen Interactionslcsh:RC581-607Signal TransductionClinical and Developmental Immunology
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