Search results for "2403 Immunology"

showing 10 items of 30 documents

Succinate receptor mediates intestinal inflammation and fibrosis.

2018

Succinate, an intermediate of the tricarboxylic acid cycle, is accumulated in inflamed areas and its signaling through succinate receptor (SUCNR1) regulates immune function. We analyze SUCNR1 expression in the intestine of Crohn's disease patients and its role in murine intestinal inflammation and fibrosis. We show that both serum and intestinal succinate levels and SUCNR1 expression in intestinal surgical resections were higher in CD patients than in controls. SUCNR1 co-localized with CD86, CD206, and alpha-SMA(+) cells in human intestine and we found a positive and significant correlation between SUCNR1 and alpha-SMA expression. In human isolated fibroblasts from CD patients SUCNR1 expres…

0301 basic medicineAdultMaleAdolescentImmunologyMacrophage polarizationSuccinic Acid610 Medicine & healthProinflammatory cytokineReceptors G-Protein-Coupled03 medical and health sciencesMiceYoung Adult0302 clinical medicineImmune systemCrohn DiseaseFibrosismedicineImmunology and AllergyAnimalsHumansIntestinal MucosaFibroblastReceptorCells CulturedCD86InflammationMice Knockout2403 Immunologybusiness.industryMacrophagesmedicine.diseaseColitisFibrosisCitric acid cycleMice Inbred C57BLDisease Models Animal10219 Clinic for Gastroenterology and Hepatology030104 developmental biologymedicine.anatomical_structure2723 Immunology and AllergyCancer researchFemalebusiness030215 immunologyMucosal immunology
researchProduct

IL-17 controls central nervous system autoimmunity through the intestinal microbiome

2021

Interleukin-17A- (IL-17A) and IL-17F-producing CD4(+) T helper cells (T(H)17 cells) are implicated in the development of chronic inflammatory diseases, such as multiple sclerosis and its animal model, experimental autoimmune encephalomyelitis (EAE). T-H 17 cells also orchestrate leukocyte invasion of the central nervous system (CNS) and subsequent tissue damage. However, the role of IL-17A and IL-17F as effector cytokines is still confused with the encephalitogenic function of the cells that produce these cytokines, namely, T-H 17 cells, fueling a long-standing debate in the neuroimmunology field. Here, we demonstrated that mice deficient for IL-17A/F lose their susceptibility to EAE, which…

0301 basic medicineCentral Nervous SystemMaleEncephalomyelitis Autoimmune ExperimentalMultiple SclerosisreceptorImmunologyCentral nervous system610 Medicine & healthGut flora10263 Institute of Experimental Immunologymedicine.disease_causeAutoimmunityinterleukin-1703 medical and health sciencesMice0302 clinical medicinemedicinecytokineAnimalsHumanscnst-cellsMice Knockout2403 Immunologybiologygut microbiotaMultiple sclerosisExperimental autoimmune encephalomyelitisGeneral MedicineFecal Microbiota Transplantationneutralizationmedicine.diseasebiology.organism_classificationAdoptive Transfer3. Good healthGut EpitheliumGastrointestinal Microbiome030104 developmental biologyNeuroimmunologymedicine.anatomical_structureImmunology2723 Immunology and Allergy570 Life sciences; biologyTh17 CellssequencesFemaleInterleukin 17030217 neurology & neurosurgery
researchProduct

IL-17A mediated endothelial breach promotes metastasis formation

2015

Abstract The role of the IL23/IL17A axis in tumor–immune interactions is a matter of controversy. Although some suggest that IL17A-producing T cells (TH17) can suppress tumor growth, others report that IL17A and IL23 accelerate tumor growth. Here, we systematically assessed the impact of IL17A-secreting lymphocytes in several murine models of tumor lung metastasis. Genetic fate mapping revealed that IL17A was secreted within lung metastases predominantly by γδ T cells, whereas TH17 cells were virtually absent. Using different tumor models, we found Il17a−/− mice to consistently develop fewer pulmonary tumor colonies. IL17A specifically increased blood vessel permeability and the expression …

0301 basic medicineGenetically modified mouseCancer ResearchPathologymedicine.medical_specialtyLung NeoplasmsEndotheliumImmunologyMelanoma ExperimentalVascular permeability610 Medicine & healthBiology10263 Institute of Experimental ImmunologyCapillary Permeability03 medical and health sciencesCarcinoma Lewis LungCell Line TumormedicineCell AdhesionAnimals1306 Cancer ResearchCell adhesionMice Knockout2403 ImmunologyLungMelanomaInterleukin-17Transendothelial and Transepithelial MigrationEndothelial Cellsmedicine.diseaseMice Inbred C57BL030104 developmental biologymedicine.anatomical_structureCell culture570 Life sciences; biologyInterleukin 17Endothelium VascularNeoplasm Transplantation
researchProduct

Fate-Mapping of GM-CSF Expression Identifies a Discrete Subset of Inflammation-Driving T Helper Cells Regulated by Cytokines IL-23 and IL-1β.

2019

Summary Pathogenic lymphocytes initiate the development of chronic inflammatory diseases. The cytokine granulocyte-macrophage colony-stimulating factor (GM-CSF) (encoded by Csf2) is a key communicator between pathogenic lymphocytes and tissue-invading inflammatory phagocytes. However, the molecular properties of GM-CSF-producing cells and the mode of Csf2 regulation in vivo remain unclear. To systematically study and manipulate GM-CSF+ cells and their progeny in vivo, we generated a fate-map and reporter of GM-CSF expression mouse strain (FROG). We mapped the phenotypic and functional profile of auto-aggressive T helper (Th) cells during neuroinflammation and identified the signature and pa…

0301 basic medicineMalemedicine.medical_treatmentImmunologyInterleukin-1betaInflammation610 Medicine & health10071 Functional Genomics Center ZurichBiology10263 Institute of Experimental Immunology03 medical and health sciencesInterferon-gammaMice0302 clinical medicineFate mappingImmunopathologymedicineInterleukin 23Immunology and AllergyAnimalsReceptorNeuroinflammationReceptors CXCR6InflammationMice KnockoutReceptors Interleukin-1 Type I2403 ImmunologyTumor Necrosis Factor-alphaGranulocyte-Macrophage Colony-Stimulating Factor2725 Infectious DiseasesReceptors InterleukinTh1 CellsPhenotype3. Good healthCell biology10040 Clinic for NeurologyMice Inbred C57BL030104 developmental biologyInfectious DiseasesCytokine030220 oncology & carcinogenesis2723 Immunology and AllergyInterleukin-23 Subunit p19570 Life sciences; biologyTh17 CellsFemalemedicine.symptomImmunity
researchProduct

Origin of modern syphilis and emergence of a pandemic Treponema pallidum cluster

2016

The abrupt onslaught of the syphilis pandemic that started in the late fifteenth century established this devastating infectious disease as one of the most feared in human history1 . Surprisingly, despite the availability of effective antibiotic treatment since the mid-twentieth century, this bacterial infection, which is caused by Treponema pallidum subsp. pallidum (TPA), has been re-emerging globally in the last few decades with an estimated 10.6 million cases in 2008 (ref. 2). Although resistance to penicillin has not yet been identified, an increasing number of strains fail to respond to the secondline antibiotic azithromycin3. Little is known about the genetic patterns in current infec…

0301 basic medicineMicrobiologia340 LawCiencias de la SaludAzithromycinGlobal HealthBacterisApplied Microbiology and Biotechnology2726 Microbiology (medical)1307 Cell BiologyGenotypePandemicPhylogenyMolecular EpidemiologyTreponemaPhylogenetic treebiology2404 Microbiology10177 Dermatology ClinicTREPONEMA PALLIDUM10218 Institute of Legal MedicineAnti-Bacterial Agents3. Good health590 Animals (Zoology)//purl.org/becyt/ford/3 [https]ORIGIN OF SYPHILISMalalties de transmissió sexualDNA BacterialMicrobiology (medical)CIENCIAS MÉDICAS Y DE LA SALUDGenotypeImmunology610 Medicine & healthMicrobiologyEvolution Molecular//purl.org/becyt/ford/3.3 [https]10127 Institute of Evolutionary Biology and Environmental Studies03 medical and health sciences1311 GeneticsPhylogeneticsDrug Resistance BacterialGeneticsmedicine2402 Applied Microbiology and BiotechnologyHumansSyphilisTreponema pallidumPandemics2403 ImmunologyMolecular epidemiologyGenetic VariationSequence Analysis DNACell Biologymedicine.diseasebiology.organism_classificationVirologyEnfermedades Infecciosas030104 developmental biologyInfectious disease (medical specialty)570 Life sciences; biologySyphilisGenome Bacterial
researchProduct

Lymphatic Endothelial Cells Control Initiation of Lymph Node Organogenesis

2017

Lymph nodes (LNs) are strategically situated throughout the body at junctures of the blood vascular and lymphatic systems to direct immune responses against antigens draining from peripheral tissues. The current paradigm describes LN development as a programmed process that is governed through the interaction between mesenchymal lymphoid tissue organizer (LTo) cells and hematopoietic lymphoid tissue inducer (LTi) cells. Using cell-type-specific ablation of key molecules involved in lymphoid organogenesis, we found that initiation of LN development is dependent on LTi-cell-mediated activation of lymphatic endothelial cells (LECs) and that engagement of mesenchymal stromal cells is a succeedi…

0301 basic medicinePathologymedicine.medical_specialtygovernment.form_of_governmentOrganogenesis[SDV]Life Sciences [q-bio]Immunology610 Medicine & healthMice TransgenicBiologyChoristoma10263 Institute of Experimental Immunology03 medical and health sciencesMiceImmune systemLymphotoxin beta ReceptormedicineLymph node stromal cellImmunology and AllergyAnimalsLymph nodeCells CulturedComputingMilieux_MISCELLANEOUS2403 ImmunologyReceptor Activator of Nuclear Factor-kappa BMesenchymal stem cellNF-kappa BEndothelial CellsCell DifferentiationMesenchymal Stem Cells2725 Infectious DiseasesEmbryo MammalianCell biologyMice Inbred C57BLHaematopoiesisLymphatic EndotheliumReceptors Lysosphingolipid030104 developmental biologyInfectious Diseasesmedicine.anatomical_structureLymphatic system2723 Immunology and Allergygovernment570 Life sciences; biology[SDV.IMM]Life Sciences [q-bio]/ImmunologyLymphLymph NodesSignal Transduction
researchProduct

Conditional Gene-Targeting in Mice: Problems and Solutions.

2018

0301 basic medicineTransgeneImmunologyMutagenesis (molecular biology technique)Guidelines as TopicMice Transgenic610 Medicine & healthBiology10263 Institute of Experimental ImmunologyArticleMice03 medical and health sciencesAnimalsImmunology and AllergyMice KnockoutRecombination GeneticGenetics2403 ImmunologyIntegrasesGene targeting2725 Infectious DiseasesIntegrasesMice transgenic030104 developmental biologyInfectious DiseasesMutagenesisGene Targeting2723 Immunology and Allergy570 Life sciences; biology
researchProduct

Tissue microenvironment dictates the fate and tumor-suppressive function of type 3 ILCs

2017

Nussbaum et al. found that tumor suppression through innate lymphoid cells (ILCs) cannot be predicted solely based on the ILC phenotype and lineage but that their immune properties are shaped both by their ontogeny and by the tissue microenvironment they reside in.

0301 basic medicinemedicine.medical_treatmentImmunology314610 Medicine & healthBiology10263 Institute of Experimental ImmunologyArticle31103 medical and health sciencesMiceRAR-related orphan receptor gammaCell Line TumormedicineImmunology and AllergyAnimalsLymphocytesskin and connective tissue diseasesTranscription factorResearch ArticlesMice Knockout2403 ImmunologyInnate lymphoid cellNeoplasms ExperimentalNuclear Receptor Subfamily 1 Group F Member 3PhenotypeCell biologybody regionsKiller Cells NaturalMice Inbred C57BL030104 developmental biologyCytokineCellular MicroenvironmentCell cultureTumor progressionInterleukin 122723 Immunology and AllergyCytokines570 Life sciences; biologyTranscription Factors
researchProduct

Gamma interferon blocks gammaherpesvirus reactivation from latency in a cell type-specific manner

2007

Gammaherpesviruses are important pathogens whose lifelong survival in the host depends critically on their capacity to establish and reactivate from latency, processes regulated by both viral genes and the host immune response. Previous work has demonstrated that gamma interferon (IFN-gamma) is a key regulator of chronic infection with murine gammaherpesvirus 68 (gammaHV68), a virus that establishes latent infection in B lymphocytes, macrophages, and dendritic cells. In mice deficient in IFN-gamma or the IFN-gamma receptor, gammaHV68 gene expression is altered during chronic infection, and peritoneal cells explanted from these mice reactivate more efficiently ex vivo than cells derived from…

1109 Insect Sciencemedicine.medical_treatmentImmunologyCellSpleen610 Medicine & healthBiology10263 Institute of Experimental ImmunologyMicrobiologyInterferon-gammaGammaherpesvirinaeImmune systemVirologyVirus latencymedicineAnimalsHumansInterferon gammaDiphtheria toxinB-Lymphocytes2403 ImmunologyMacrophages2404 MicrobiologyHerpesviridae Infectionsmedicine.diseaseVirus LatencyCell biologyChronic infectionCytokinemedicine.anatomical_structureInsect ScienceImmunology2406 VirologyPathogenesis and Immunity570 Life sciences; biologyVirus Activationmedicine.drug
researchProduct

Cabbage and fermented vegetables: from death rate heterogeneity in countries to candidates for mitigation strategies of severe COVID-19

2021

International audience; Large differences in COVID-19 death rates exist between countries and between regions of the same country. Some very low death rate countries such as Eastern Asia, Central Europe, or the Balkans have a common feature of eating large quantities of fermented foods. Although biases exist when examining ecological studies, fermented vegetables or cabbage have been associated with low death rates in European countries. SARS-CoV-2 binds to its receptor, the angiotensin-converting enzyme 2 (ACE2). As a result of SARS-CoV-2 binding, ACE2 downregulation enhances the angiotensin II receptor type 1 (AT1 R) axis associated with oxidative stress. This leads to insulin resistance …

ARIA groupAntioxidantMediterranean dietmedicine.medical_treatmentBrassicasulforaphaneMESH: Angiotensin-Converting Enzyme 2ReviewcabbageAntioxidants0302 clinical medicine10183 Swiss Institute of Allergy and Asthma ResearchVegetableskimchiFood sciencekimči0303 health sciencesMESH: NF-E2-Related Factor 23. Good healthAngiotensin-converting enzyme 22723 Immunology and Allergyfermentirana zelenjavaMESH: EcologyKeywords: Angiotensin converting enzyme 2NF-E2-Related Factor 2KEAP1-NRF2 SYSTEMImmunologyReviewsBrassicaNRF203 medical and health sciencesudc:578:635.34:663.15:COVID‐19angiotensin-converting enzyme 2CorrespondenceHumansMESH: SARS-CoV-2LactobacilluINTERMITTENT HYPOXIA2403 ImmunologyScience & TechnologyMESH: HumansAngiotensin II receptor type 1koronavirusMESH: Antioxidantsmedicine.disease030228 respiratory systemchemistryFermentationAllergymedicine.disease_causechemistry.chemical_compoundLINKING GUT MICROBIOTALactobacillalesLactobacillusImmunology and AllergyMESH: COVID-19Angiotensin converting enzyme 2030212 general & internal medicineOXIDATIVE STRESS[SDV.IMM.ALL]Life Sciences [q-bio]/Immunology/AllergologyKeywords: Angiotensin converting enzyme 2; COVID-19; Lactobacillus; cabbage; diet; fermented vegetable; kimchi; sulforaphane.angiotensin-converting enzyme 2; cabbage; COVID-19; diet; fermented vegetable; kimchi; Lactobacillus; sulforaphane2. Zero hungerFOODSEcologyLactobacillalesMortality rate10177 Dermatology ClinicMEDITERRANEAN DIET1107 ImmunologyLife Sciences & Biomedicinefermented vegetable610 Medicine & healthSettore MED/10 - Malattie Dell'Apparato RespiratorioBiologyMESH: FermentationMESH: Gastrointestinal MicrobiomeInsulin resistanceMESH: DietDownregulation and upregulationmedicine030304 developmental biologySARS-CoV-2COVID-19MESH: BrassicaCOVID-19; Lactobacillus; angiotensin-converting enzyme 2; cabbage; diet; fermented vegetable; kimchi; sulforaphane; Angiotensin-Converting Enzyme 2; Antioxidants; COVID-19; Diet; Ecology; Gastrointestinal Microbiome; Humans; Lactobacillales; NF-E2-Related Factor 2; Brassica; Fermentation; SARS-CoV-2; Vegetablesbiology.organism_classificationMESH: VegetablesDYSFUNCTIONDietGastrointestinal MicrobiomeLactobacillusMESH: Lactobacillalesangiotensin-converting enzyme 2 cabbage COVID-19 diet fermented vegetable kimchi Lactobacillus sulforaphanedietOxidative stressSulforaphane
researchProduct