Search results for "Host-Pathogen Interaction"

showing 9 items of 189 documents

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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Data from: Age-related effects of chronic hantavirus infection on female host fecundity

2016

1. Pathogens often cause detrimental effects to their hosts and, consequently, may influence host population dynamics that may, in turn, feed back to pathogen transmission dynamics. Understanding fitness effects of pathogens upon animal host populations can help to predict the risks that zoonotic pathogens pose to humans. 2. Here we determine whether chronic infection by Puumala hantavirus (PUUV) affects important fitness-related traits, namely the probability of breeding, reproductive effort and mother and offspring condition, in the bank vole (Myodes glareolus). Using 9 years empirical data in a PUUV endemic area in Central Finland, we found differences between reproductive characteristic…

medicine and health carefemale fecunditydisease transmissionendemic pathogenPuumala hantavirusMyodes glareolusLife SciencesMedicinehost-pathogen interactionResource allocation
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Transcription factors controlling development and function of innate lymphoid cells.

2014

Abstract Innate lymphoid cells (ILCs) are a heterogeneous group of lymphocytes, which play an important role in tissue homeostasis at epithelial surfaces. They are scarce in spleen and lymph nodes, but substantial numbers can be found in the intestinal mucosa even at steady state. There, they represent the first line of defence against invading pathogens and contribute to lymphorganogenesis, tissue repair and, when inappropriately activated, immune pathology. Lineage-specific development, function and maintenance of these cells depend on a restricted set of transcription factors that partially emerged as a result of diversification and selection during vertebrate evolution. The differential…

medicine.medical_treatmentImmunologyBiologyLymphocyte ActivationIntestinal mucosaRAR-related orphan receptor gammamedicineTranscriptional regulationImmunology and AllergyAnimalsHomeostasisHumansCell LineageLymphopoiesisLymphocytesIntestinal MucosaTranscription factorTissue homeostasisInnate lymphoid cellGene Expression Regulation DevelopmentalCell DifferentiationGeneral MedicineBiological EvolutionImmunity InnateCytokineImmunologyHost-Pathogen InteractionsCytokinesInterleukin Receptor Common gamma SubunitTranscription FactorsInternational immunology
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Immune Modulating Effects of NKT Cells in a Physiologically Low Dose Leishmania major Infection Model after αGalCer Analog PBS57 Stimulation

2014

Leishmaniasis is a parasitic infection affecting ∼12 million people worldwide, mostly in developing countries. Treatment options are limited and no effective vaccines exist to date. Natural Killer T (NKT) cells are a conserved innate-like lymphocyte population with immunomodulating effects in various settings. A number of reports state a role of NKT cells in different models of Leishmania infection. Here, we investigated the effect of NKT cells in a physiologically relevant, intradermal low dose infection model. After inoculation of 103 infectious-stage L. major, comparable numbers of skin-immigrating NKT cells in both susceptible BALB/c mice and resistant C57BL/6 mice were noted. Compared …

medicine.medical_treatmentLymphocyteMedizinPathogenesisNK cellsProtozoologyPathology and Laboratory MedicineCellular typesMedicine and Health SciencesLymphoid OrgansLeishmania majorImmune ResponseLeishmania majorSkinProtozoansMice Inbred BALB Ceducation.field_of_studybiologylcsh:Public aspects of medicineNatural killer T cellInfectious Diseasesmedicine.anatomical_structureCytokineMedical MicrobiologyHost-Pathogen InteractionsWhite blood cellsCytokinesAnatomyResearch ArticleCell biologyBlood cellslcsh:Arctic medicine. Tropical medicinelcsh:RC955-962Immune CellsImmunologyPopulationT cellsLeishmaniasis CutaneousGalactosylceramidesSpleenImmunopathologyMicrobiologyLymphatic SystemImmunomodulationImmune ActivationImmune systemImmunityMicrobial ControlmedicineAnimalsImmunologic FactorseducationImmunity to InfectionsMicrobial PathogensBiology and life sciencesImmunityOrganismsPublic Health Environmental and Occupational HealthImmunoregulationlcsh:RA1-1270Molecular Developmentbiology.organism_classificationAcquired Immune SystemParasitic ProtozoansMice Inbred C57BLDisease Models AnimalAnimal cellsImmune SystemImmunologyNatural Killer T-CellsClinical ImmunologyParasitologyDevelopmental Biology
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Bacteriophage Adherence to Mucus Mediates Preventive Protection against Pathogenic Bacteria

2019

The mucosal surfaces of animals are habitat for microbes, including viruses. Bacteriophages—viruses that infect bacteria—were shown to be able to bind to mucus. This may result in a symbiotic relationship in which phages find bacterial hosts to infect, protecting the mucus-producing animal from bacterial infections in the process. Here, we studied phage binding on mucus and the effect of mucin on phage-bacterium interactions. The significance of our research is in showing that phage adhesion to mucus results in preventive protection against bacterial infections, which will serve as basis for the development of prophylactic phage therapy approaches. Besides, we also reveal that exposure to m…

medicine.medical_treatmentvirusesbacteriophage therapymedicine.disease_causebakteeritBacteriophageFish Diseaseshost-pathogen interactionslimakalvotPathogenOrganism1183 Plant biology microbiology virology11832 Microbiology and virology2. Zero hunger0303 health scienceshostpathogen interactionsbiologyvirulenssimucosal pathogensQR1-5023. Good healthBACTERIOPHAGEResearch ArticleProtein BindingbacteriophagesPhage therapyeducationvirusFlavobacteriumMicrobiologybakteriofagitHost-Microbe BiologyMicrobiologyViral Proteins03 medical and health sciencesImmunityVirologyAntibiosismedicineAnimalsPhage Therapy030304 developmental biologyMucous MembraneBacteria030306 microbiologybacterial virulenceMucinPathogenic bacteriaEditor's Pickkalatauditbiology.organism_classificationMucusfagiterapiaMucusFlavobacterium columnareBacteriamBio
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Evolutionary Dynamics of Pathoadaptation Revealed by Three Independent Acquisitions of the VirB/D4 Type IV Secretion System in Bartonella

2017

The α-proteobacterial genus Bartonella comprises a group of ubiquitous mammalian pathogens that are studied as a model for the evolution of bacterial pathogenesis. Vast abundance of two particular phylogenetic lineages of Bartonella had been linked to enhanced host adaptability enabled by lineage-specific acquisition of a VirB/D4 type IV secretion system (T4SS) and parallel evolution of complex effector repertoires. However, the limited availability of genome sequences from one of those lineages as well as other, remote branches of Bartonella has so far hampered comprehensive understanding of how the VirB/D4 T4SS and its effectors called Beps have shaped Bartonella evolution. Here, we repor…

parallel evolution0301 basic medicineBartonellaAMPylation; bacterial effector; filamentation induced by cAMP; parallel evolutionVirulence FactorsIn silico030106 microbiologyBiologyfilamentation induced by cAMPGenomeEvolution MolecularType IV Secretion Systems03 medical and health sciencesBacterial ProteinsBartonella InfectionsGeneticsAMPylationHumansEvolutionary dynamicsBacterial Secretion SystemsPhylogenyEcology Evolution Behavior and SystematicsPhylogenetic treeEffectorbiology.organism_classificationbacterial effectorVirology030104 developmental biologyEvolutionary biologyFilamentation induced by cAMP; AMPylation; Parallel evolution; Bacterial effectorHost-Pathogen InteractionsParallel evolutionAdaptationBartonellaResearch Article
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Genome sequence of SeIV-1, a novel virus from the Iflaviridae family infective to Spodoptera exigua

2011

Analysis of the transcriptome of Spodoptera exigua larvae revealed the presence of several ESTs with homology to virus of the order Picornavirales and with the highest similarity to Infectious flacherie virus (Iflaviridae) that infects Bombyx mori larvae. Iflaviridae is a recently defined family of insect-infecting viruses that consist of positive single strand RNA genomes translated into a single polyprotein of around 3000 amino acids long. Using the sequence information derived from the obtained ESTs, we have completed the genomic sequence of this virus. The novel S. exigua iflavirus (SeIV-1) has a genome of 10.3 kb and codes for a 3222 aa polyprotein. Expression analysis has revealed the…

virusesMolecular Sequence DataInsect VirusesSpodopteraSpodopteraGenomeVirusRNA Virus InfectionsExiguaAnimalsRNA VirusesAmino Acid SequencePest Control BiologicalEcology Evolution Behavior and SystematicsExpressed Sequence TagsViral Structural ProteinsGeneticsInfectivityGenomebiologyfungibiology.organism_classificationVirologyIntestinesIflaviridaeNovel virusHost-Pathogen InteractionsRNA ViralPicornaviralesJournal of Invertebrate Pathology
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