Search results for "Histocompatibility Antigens"

showing 10 items of 242 documents

Isolation and characterization of Oct-4+/HLA-G+ mesenchymal stem cells from human umbilical cord matrix: differentiation potential and detection of n…

2008

The presence of multipotent cells in several adult and embryo-related tissues opened new paths for their use in regenerative medicine. Extraembryonic tissues such as umbilical cord are considered a promising source of stem cells, potentially useful in therapy. The characterization of cells from the umbilical cord matrix (Wharton''s Jelly) and amniotic membrane revealed the presence of a population of mesenchymal-like cells, sharing a set of core-markers expressed by "mesenchymal stem cells". Several reports enlightened the differentiation capabilities of these cells, even if at times the lack of an extensive characterization of surface markers and immune co-stimulators expression revealed h…

HistologyCell Culture TechniquesClinical uses of mesenchymal stem cellsCell SeparationBiologyUmbilical CordHLA AntigensHumansAmnionMolecular BiologyCell ProliferationStem cell transplantation for articular cartilage repairHLA-G AntigensSettore BIO/16 - Anatomia UmanaMultipotent Stem CellsHistocompatibility Antigens Class IMesenchymal stem cellCell DifferentiationMesenchymal Stem CellsAmniotic stem cellsCell BiologyTelomereCord liningCell biologyMedical Laboratory TechnologyMesenchymal stem cells Umbilical cord matrix Differentiation protocols Tolerogenic properties Self-renewal markersAmniotic epithelial cellsImmunologyStem cellOctamer Transcription Factor-3BiomarkersAdult stem cellHistochemistry and Cell Biology
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The role of the human cytomegalovirus UL111A gene in down-regulating CD4+ T-cell recognition of latently infected cells: implications for virus elimi…

2009

AbstractThe capacity of human cytomegalovirus (HCMV) to establish and maintain a latent infection from which it can later reactivate ensures its widespread distribution in the population, but the mechanisms enabling maintenance of latency in the face of a robust immune system are poorly understood. We examined the role of the HCMV UL111A gene, which encodes homologs of the immunosuppressive cytokine interleukin-10 in the context of latent infection of myeloid progenitor cells. A UL111A deletion virus was able to establish, maintain, and reactivate from experimental latency in a manner comparable with parental virus, but major histocompatibility complex class II levels increased significantl…

Human cytomegalovirusCD4-Positive T-LymphocytesIsoantigensMyeloidGenes Viralmedicine.medical_treatmentImmunologyPopulationCytomegalovirusDown-RegulationBiologyIn Vitro Techniquesmedicine.disease_causeBiochemistryAutoantigensHerpesviridaeVirusImmune systemmedicineHumansProgenitor celleducationMyeloid Progenitor Cellseducation.field_of_studyHistocompatibility Antigens Class IICell BiologyHematologymedicine.diseaseVirologyVirus LatencyCytokinemedicine.anatomical_structureImmunologyCytomegalovirus InfectionsHost-Pathogen InteractionsGene DeletionBlood
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Human cytomegalovirus pp71 stimulates major histocompatibility complex class i presentation of IE1-derived peptides at immediate early times of infec…

2013

ABSTRACT Suppression of major histocompatibility complex (MHC) class I-mediated presentation of human cytomegalovirus (HCMV) peptides is an important mechanism to avoid CD8 T lymphocyte recognition and killing of infected cells. Of particular interest is how MHC class I presentation of essential regulatory immediate early (IE) proteins of HCMV can be effectively compromised at times when known viral immunoevasins are not abundantly expressed. The tegument protein pp71 had been suggested to be involved in MHC class I downregulation. Intriguingly, this polypeptide is also critically engaged in the initial derepression of the major IE gene locus, leading to enhanced expression of IE proteins I…

Human cytomegalovirusCD74virusesImmunologyCytomegalovirusBiologyCD8-Positive T-LymphocytesMajor histocompatibility complexMicrobiologyImmediate-Early ProteinsViral ProteinsDownregulation and upregulationVirologyMHC class ImedicineHumansDerepressionAntigen PresentationAntigen processingMHC class I antigenHistocompatibility Antigens Class Ivirus diseasesbiochemical phenomena metabolism and nutritionmedicine.diseaseUp-RegulationInsect ScienceImmunologyCytomegalovirus Infectionsbiology.proteinPathogenesis and ImmunityPeptidesJournal of virology
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The immunogenicity of human and murine cytomegaloviruses.

2000

Cytomegaloviruses are strictly host-species-specific. During an aeon of co-evolution, virus and host have found an arrangement: the productive and cytopathogenic cycle of viral gene expression is held in check by the host's immune response. As a consequence, cytomegalovirus disease is restricted to the immunocompromised host. The virus has evolved strategies to avoid its elimination and eventually hides itself in a silent state, referred to as 'viral latency'. Redundant molecular mechanisms have been identified by which cytomegaloviruses interfere with antigen presentation pathways to 'evade' immune control. In the annual period covered by this review, the IE1 protein was revisited as an im…

Human cytomegalovirusMuromegalovirusvirusesImmunologyAntigen presentationCongenital cytomegalovirus infectionCytomegalovirusImmunodominanceBiologyVirusImmediate early proteinImmediate-Early ProteinsViral Matrix ProteinsMiceViral ProteinsAntigenmedicineImmunology and AllergyAnimalsHumansAntigen PresentationImmunogenicityHistocompatibility Antigens Class IIvirus diseasesReceptors Antigen T-Cell gamma-deltamedicine.diseasePhosphoproteinsVirologyKiller Cells NaturalImmunologyCurrent opinion in immunology
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Suppression of CD8+ T cell recognition in the immediate-early phase of human cytomegalovirus infection.

2012

Human cytomegalovirus (HCMV) interferes with MHC class I-restricted antigen presentation and thereby reduces recognition by CD8+ T-cells. This interference is mediated primarily by endoplasmic reticulum-resident glycoproteins that are encoded in the US2–11 region of the viral genome. Such a suppression of recognition would be of particular importance immediately after infection, because several immunodominant viral antigens are already present in the cell in this phase. However, which of the evasion proteins gpUS2–11 interfere(s) with antigen presentation to CD8+ T-cells at this time of infection is not known. Here we address this question, using recombinant viruses (RV) that express only o…

Human cytomegalovirusVirulence FactorsvirusesAntigen presentationCytomegalovirusCD8-Positive T-LymphocytesCell LineImmune toleranceViral ProteinsViral Envelope ProteinsAntigenVirologyMHC class IImmune TolerancemedicineHumansCytotoxic T cellImmune EvasionbiologyHistocompatibility Antigens Class IRNA-Binding Proteinsvirus diseasesmedicine.diseaseVirologyCell cultureCytomegalovirus InfectionsImmunologybiology.proteinCD8
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Identification of transcripts of the T cell antigen receptor beta chain gene and major histocompatibility complex class II genes in antigen-presentin…

1988

The cloned murine cell line BK-BI-2.6.C6 has previously been shown to exhibit T cell characteristics, to synthesize and express MHC class II molecules, and to present protein antigens to antigen-dependent T cell clones. As a more definitive proof of the T-cell nature of these cells, transcripts of the rearranged T cell antigen receptor (TcR) beta gene were assessed by Northern blot analysis. BK-BI-2.6.C6 cells constitutively transcribe mRNA for the light chain of TcR and express the disulphide-linked alpha, beta TcR heterodimer at the cell surface. In addition mRNA for the polymorphic MHC class II subunits A alpha and A beta as well as for the invariant gamma chain were detected. BK-BI-2.6.…

HybridomasT cellReceptors Antigen T-Cell alpha-betaT-LymphocytesImmunologyT-cell receptorAntigen presentationHistocompatibility Antigens Class IIReceptors Antigen T-CellAntigen-Presenting CellsGeneral MedicineMHC restrictionBiologyMajor histocompatibility complexMolecular biologyCell LineMicemedicine.anatomical_structurebiology.proteinmedicineCytotoxic T cellAnimalsRNA MessengerAntigen-presenting cellCD8Scandinavian journal of immunology
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Lymphokine profile and activation pattern of two unrelated antigen- or idiotype-specific T suppressor cell clones.

1992

Two T suppressor (Ts) clones of different specificity have been analyzed for their lymphokine spectrum. BVI/5 is an I-Ek-restricted bovine serum albumin (BSA)-specific Ts cell clone from a CBA/J mouse tolerized by low doses of BSA. It affects directly or indirectly the function of BSA-specific T helper (Th) cells. The Ts cell clone 178-4 from a BALB/c mouse is I-Ed restricted and recognizes the public J558 Id on B cells. It prevents alpha(1----3)dextran B 1355S (Dex)-specific IgG antibody production and drives Dex-specific J558 idiotype-bearing B cells into an anergic B IgG memory cell state. Both Ts cell clones thus cause specific suppression, yet in different experimental systems using di…

IdiotypeMalemedicine.medical_treatmentImmunologyLymphocyte ActivationT-Lymphocytes RegulatoryInterferon-gammaMiceAntigenInterferonAntibody SpecificityCell ClonemedicineImmunology and AllergyAnimalsAntigensLymphokinesCD40biologyLymphokineHistocompatibility Antigens Class IISerum Albumin BovineT-Lymphocytes Helper-InducerMolecular biologyClone CellsCytokineImmunologybiology.proteinMice Inbred CBAClone (B-cell biology)medicine.drugInterleukin-1European journal of immunology
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T-T cell collaboration during in vivo responses to antigens coded by the peripheral and central region of the MHC.

1976

MIXED lymphocyte culture (MLC)1 has been used extensively as an in vitro model to analyse the reactivity of T cells to antigens coded by the major histocompatibility complex (MHC). When murine T responder cells are exposed in vitro to allogeneic lymphoid cells (stimulator cells) they proliferate and cytotoxic T lymphocytes (CTL) are generated2,3. Antigens coded by the central I region of the MHC are chiefly responsible for triggering proliferation4,5, whereas the target antigen of the CTL generated is either a H–2K or H–2D region or a I–A subregion gene product5–8. This dichotomy in the antigenic requirement of a MLC seems to be reflected at the level of the responding T lymphocytes. Two di…

Immunity CellularIsoantigensMultidisciplinarybiologyT cellT-LymphocytesMice Inbred StrainsMajor histocompatibility complexCytotoxicity Tests ImmunologicIn vitroHistocompatibilityTransplantationCTL*Micemedicine.anatomical_structureAntigenGenesHistocompatibility AntigensImmunologybiology.proteinmedicineCytotoxic T cellAnimalsNature
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Selective Uptake of Cylindrical Poly(2-Oxazoline) Brush-AntiDEC205 Antibody-OVA Antigen Conjugates into DEC-Positive Dendritic Cells and Subsequent T…

2014

To achieve specific cell targeting by various receptors for oligosaccharides or antibodies, a carrier must not be taken up by any of the very many different cells and needs functional groups prone to clean conjugation chemistry to derive well-defined structures with a high biological specificity. A polymeric nanocarrier is presented that consists of a cylindrical brush polymer with poly-2-oxazoline side chains carrying an azide functional group on each of the many side chain ends. After click conjugation of dye and an anti-DEC205 antibody to the periphery of the cylindrical brush polymer, antibody-mediated specific binding and uptake into DEC205(+) -positive mouse bone marrow-derived dendri…

ImmunoconjugatesOvalbuminPolymersT-LymphocytesT cellMolecular Sequence DataReceptors Cell SurfacePeptideLymphocyte ActivationCatalysisMinor Histocompatibility AntigensMicechemistry.chemical_compoundAntigenAntigens CDmedicineSide chainAnimalsLectins C-TypeAmino Acid SequenceReceptorOxazolesCells Culturedchemistry.chemical_classificationbiologyOrganic ChemistryDendritic CellsGeneral Chemistrymedicine.anatomical_structurechemistryBiochemistrybiology.proteinBiophysicsAzideAntibodyConjugateChemistry - A European Journal
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Costimulatory signalling potential of murine MHC class II‐positive T‐clone cells

1996

Activated human and rat T cells as well as mouse T-cell clones have been reported to synthesize and express major histocompatibility complex (MHC) class II molecules. However, the capacity of class II+ antigen (Ag) presenting T cells to induce proliferation of Ag-specific cloned T cells has been controversial. We analysed whether the failure of some T-cell clones to proliferate in response to Ag presented by class II+ T cells is because of a lack of costimulatory cytokine production by the antigen-presenting cells (APC). As a model system the mouse class II+ cloned BI/O4.1 T cells were used as APC in order to activate the T cell clone KIII5. This T-helper 1 (Th1) type, GAT (synthetic copoly…

ImmunologyAntigen presentationCD1Antigen-Presenting CellsPolymerase Chain ReactionCell LineMiceInterleukin 21T-Lymphocyte SubsetsAnimalsImmunology and AllergyCytotoxic T cellIL-2 receptorAntigen-presenting cellMice Inbred C3HMHC class IICD40biologyHistocompatibility Antigens Class IIReceptors Interleukin-2Th1 CellsInterleukin-12Molecular biologyMice Inbred C57BLbiology.proteinInterleukin-2Cell DivisionSpleenSignal TransductionResearch ArticleImmunology
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