Search results for "INFECTIONS"

showing 10 items of 2671 documents

An updated insight into the Sialotranscriptome of Triatoma infestans: developmental stage and geographic variations

2014

Background Triatoma infestans is the main vector of Chagas disease in South America. As in all hematophagous arthropods, its saliva contains a complex cocktail that assists blood feeding by preventing platelet aggregation and blood clotting and promoting vasodilation. These salivary components can be immunologically recognized by their vector's hosts and targeted with antibodies that might disrupt blood feeding. These antibodies can be used to detect vector exposure using immunoassays. Antibodies may also contribute to the fast evolution of the salivary cocktail. Methodology Salivary gland cDNA libraries from nymphal and adult T. infestans of breeding colonies originating from different loc…

lcsh:Arctic medicine. Tropical medicinelcsh:RC955-962030231 tropical medicine03 medical and health sciences0302 clinical medicineTriatoma infestansMedicine and Health SciencesParasitic DiseasesAnimalsGenomic libraryChagas DiseaseTriatomaSalivary Proteins and PeptidesSaliva030304 developmental biologyGene LibraryGenetics0303 health sciencesProtozoan InfectionsbiologycDNA librarySalivary Proteins and Peptides/genetics/metabolismlcsh:Public aspects of medicineHaplotypePublic Health Environmental and Occupational Healthlcsh:RA1-1270Saliva/chemistrySouth AmericaTranscriptome/geneticsbiology.organism_classificationTropical DiseasesMolecular biologyTriatoma/genetics/metabolism3. Good healthVector-Borne DiseasesInfectious DiseasesTriatomaVector (epidemiology)GenBankSialomeTranscriptome//purl.org/pe-repo/ocde/ford#3.03.06 [https]Research ArticleNeglected Tropical Diseases
researchProduct

Azithromycin Differentially Alters TCR-Activated Helper T Cell Subset Phenotype and Effector Function

2020

In addition to their antibiotic activities, azithromycin (AZM) exhibits anti-inflammatory effects in various respiratory diseases. One of the potent anti-inflammatory mechanisms is through inhibition of CD4+ helper T (Th) cell effector function. However, their impact on specific Th subset is obscure. Herein, we demonstrate the cellular basis of phenotypic and functional alterations associated with Th subsets following AZM treatment in vitro. Using well-characterized Th subset specific chemokine receptors, we report significant suppression of T cell receptor (TCR)-stimulated hyperactivated CCR4+CXCR3+ (Th0) expansion compared to CCR4-CXCR3+ (Th1-like) and CCR4+CXCR3- (Th2-like) cells. Intere…

lcsh:Immunologic diseases. Allergy0301 basic medicineReceptors CCR4Receptors CXCR3Receptor expressionImmunologyReceptors Antigen T-CellBiologyCXCR303 medical and health sciencesChemokine receptorInterferon-gamma0302 clinical medicineDownregulation and upregulationCell MovementT-Lymphocyte SubsetsImmunology and AllergyHumansIFN-γInterleukin 4Cells CulturedOriginal Researchanti-inflammatoryazithromycinCD4+ helper T cellsCXCR3EffectorCell growthT-cell receptorIL-4apoptosisCell DifferentiationBacterial InfectionsTh1 CellsHealthy VolunteersCell biologyAnti-Bacterial Agents030104 developmental biologyCCR4Interleukin-4lcsh:RC581-607030215 immunologyFrontiers in Immunology
researchProduct

Human γδ T-Cells: From Surface Receptors to the Therapy of High-Risk Leukemias

2018

γδ T lymphocytes are potent effector cells, capable of efficiently killing tumor and leukemia cells. Their activation is mediated by γδ T-cell receptor (TCR) and by activating receptors shared with NK cells (e.g., NKG2D and DNAM-1). γδ T-cell triggering occurs upon interaction with specific ligands, including phosphoantigens (for Vγ9Vδ2 TCR), MICA-B and UL16 binding protein (for NKG2D), and PVR and Nectin-2 (for DNAM-1). They also respond to cytokines undergoing proliferation and release of cytokines/chemokines. Although at the genomic level γδ T-cells have the potential of an extraordinary TCR diversification, in tissues they display a restricted repertoire. Recent studies have identified …

lcsh:Immunologic diseases. Allergy0301 basic medicineαβ T-cellChemokineB-cell depletion; hematopoietic stem cells; HLA-haploidentical transplantation; receptors; αβ T-cell; γδ T-cellsReceptors Antigen T-Cell alpha-betaMini ReviewHLA-haploidentical transplantationImmunologyGenes MHC Class Ichemical and pharmacologic phenomenaMajor histocompatibility complexCD19Mice03 medical and health sciencesγδ T-cellsAntigenReceptorsMHC class ImedicineAnimalsHumansImmunology and AllergyIntraepithelial LymphocytesB-LymphocytesLeukemiaB-cell depletionbiologyT-cell receptorHematopoietic Stem Cell Transplantationmedicine.diseaseNKG2DKiller Cells NaturalLeukemia030104 developmental biologySettore MED/38 - PEDIATRIA GENERALE E SPECIALISTICACytomegalovirus InfectionsImmunologybiology.proteinlcsh:RC581-607Hematopoietic stem cellsFrontiers in Immunology
researchProduct

Neutrophils: Between host defence, immune modulation, and tissue injury.

2015

Neutrophils, the most abundant human immune cells, are rapidly recruited to sites of infection, where they fulfill their life-saving antimicrobial functions. While traditionally regarded as short-lived phagocytes, recent findings on long-term survival, neutrophil extracellular trap (NET) formation, heterogeneity and plasticity, suppressive functions, and tissue injury have expanded our understanding of their diverse role in infection and inflammation. This review summarises our current understanding of neutrophils in host-pathogen interactions and disease involvement, illustrating the versatility and plasticity of the neutrophil, moving between host defence, immune modulation, and tissue da…

lcsh:Immunologic diseases. AllergyChemokineCell SurvivalNeutrophilsPhagocytosisImmunologyInflammation610 Medicine & healthDiseaseReviewNeutropeniamedicine.disease_causeInfectionsMicrobiologyExtracellular TrapsImmune systemCell MovementVirologyGeneticsmedicineAnimalsHumansMolecular Biologylcsh:QH301-705.5InflammationMutationbiologyNeutrophil extracellular trapsmedicine.disease3. Good healthCell biologylcsh:Biology (General)Immunologybiology.proteinParasitologymedicine.symptomlcsh:RC581-607
researchProduct

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
researchProduct

Control of Murine Cytomegalovirus Infection by γδ T Cells

2015

Infections with cytomegalovirus (CMV) can cause severe disease in immunosuppressed patients and infected newborns. Innate as well as cellular and humoral adaptive immune effector functions contribute to the control of CMV in immunocompetent individuals. None of the innate or adaptive immune functions are essential for virus control, however. Expansion of γδ T cells has been observed during human CMV (HCMV) infection in the fetus and in transplant patients with HCMV reactivation but the protective function of γδ T cells under these conditions remains unclear. Here we show for murine CMV (MCMV) infections that mice that lack CD8 and CD4 αβ-T cells as well as B lymphocytes can control a MCMV i…

lcsh:Immunologic diseases. AllergyMuromegalovirusAdoptive cell transferCD3 ComplexT cellImmunologyPopulation-MicrobiologyMiceImmune systemT-Lymphocyte SubsetsMedizinische FakultätVirologyGeneticsmedicineAnimalsCytotoxic T cellddc:610educationlcsh:QH301-705.5Molecular BiologyMice Knockouteducation.field_of_studybiologyvirus diseasesHerpesviridae InfectionsFlow CytometryAdoptive TransferVirologyHigh-Throughput Screening AssaysMice Inbred C57BLmedicine.anatomical_structurelcsh:Biology (General)Immunologybiology.proteinParasitologyAntibodyStem celllcsh:RC581-607CD8Research ArticlePLOS Pathogens
researchProduct

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
researchProduct

Chlamydia trachomatis Infection and Anti-Hsp60 Immunity: The Two Sides of the Coin

2009

Chlamydia trachomatis (CT) infection is one of the most common causes of reproductive tract diseases and infertility. CT-Hsp60 is synthesized during infection and is released in the bloodstream. As a consequence, immune cells will produce anti-CT-Hsp60 antibodies. Hsp60, a ubiquitous and evolutionarily conserved chaperonin, is normally sequestered inside the cell, particularly into mitochondria. However, upon cell stress, as well as during carcinogenesis, the chaperonin becomes exposed on the cell surface (sf-Hsp60) and/or is secreted from cells into the extracellular space and circulation. Reports in the literature on circulating Hsp and anti-Hsp antibodies are in many cases short on detai…

lcsh:Immunologic diseases. Allergyanimal structuresImmunologyCardiovascular Disorders/Heart FailurePublic Health and Epidemiology/Infectious DiseasesChlamydia trachomatisPathology/Immunologychemical and pharmacologic phenomenaReviewmedicine.disease_causecomplex mixturesMicrobiologyAutoimmune DiseasesInfectious Diseases/Bacterial InfectionsPathogenesisImmune systemImmunityVirologyGeneticsmedicineAnimalsHumansImmunology/Cellular Microbiology and Pathogenesislcsh:QH301-705.5Molecular BiologyRheumatology/Autoimmunity Autoimmune and Inflammatory DiseasesAntigens BacterialbiologySettore BIO/16 - Anatomia UmanaMultiple sclerosisfungiAutoantibodyChaperonin 60Chlamydia Infectionsmedicine.diseaseHSP60 ChlamydiaMicrobiology/Immunity to Infectionslcsh:Biology (General)Immunologybiology.proteinParasitologyHSP60AntibodyDiabetes and Endocrinology/Type 1 Diabeteslcsh:RC581-607Chlamydia trachomatisPLoS Pathogens
researchProduct

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
researchProduct

Antibiotic susceptibility of the bacteria causing odontogenic infections

2006

Objetivos: Identificar la flora bacteriana y su susceptibilidad a varios antibióticos utilizados en infecciones odontogénicas de localización periapical y en las pericoronaritis del tercer molar inferior, para poder adaptar convenientemente el tratamiento antibiótico a las exigencias de tales infecciones, y evitar así los efectos secundarios y los sobretratamientos con antibióticos. Material y métodos: Se han seleccionado con unos criterios de inclusión y de exclusión a 64 pacientes que presentaban una infección odontogénica. Se recogieron muestras de las lesiones en condiciones de máxima asepsia, evitando la contaminación por flora saprófita bucal. Las muestras se sembraron en medios de cu…

lesión periapicalpericonaritis del tercer molarMalalties bacterianesBacterial diseasesOdontologíaAntibiòticsoral bacteriologyMalalties de la boca:CIENCIAS MÉDICAS [UNESCO]InfectionsCiencias de la saludInfeccionsbacteriología bucalsusceptibilidad antibióticaMouth diseasesPatologia dentalAntibioticsperiapical lesionUNESCO::CIENCIAS MÉDICASInfección odontogénicaantibiotic susceptibilitythird molar pericoronitisDental pathologyOdontogenic infection
researchProduct