Search results for "Intestinal mucosa"

showing 10 items of 373 documents

Epithelium‐specific MyD88 signaling, but not DCs or macrophages, control acute intestinal infection with Clostridium difficile

2019

Infection with Clostridium difficile is one of the major causes of health care acquired diarrhea and colitis. Signaling though MyD88 downstream of TLRs is critical for initiating the early protective host response in mouse models of C. difficile infection (CDI). In the intestine, MyD88 is expressed in various tissues and cell types, such as the intestinal epithelium and mononuclear phagocytes (MNP), including DC or macrophages. Using a genetic gain-of-function system, we demonstrate here that restricting functional MyD88 signaling to the intestinal epithelium, but also to MNPs is sufficient to protect mice during acute CDI by upregulation of the intestinal barrier function and recruitment o…

0301 basic medicineCell typeImmunologyBiologyMice03 medical and health sciences0302 clinical medicineDownregulation and upregulationmedicineAnimalsImmunology and AllergyIntestinal MucosaColitisEnterocolitis PseudomembranousBarrier functionClostridioides difficileMacrophagesDendritic CellsClostridium difficilemedicine.diseaseIntestinal epitheliumPhenotypeEpitheliumDisease Models Animal030104 developmental biologymedicine.anatomical_structureHost-Pathogen InteractionsMyeloid Differentiation Factor 88ImmunologySignal Transduction030215 immunologyEuropean Journal of Immunology
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The activation of Wnt signaling by a STAT6-dependent macrophage phenotype promotes mucosal repair in murine IBD

2016

The complete repair of the mucosa constitutes a key goal in inflammatory bowel disease (IBD) treatment. The Wnt signaling pathway mediates mucosal repair and M2 macrophages that coordinate efficient healing have been related to Wnt ligand expression. Signal transducer and activator of transcription 6 (STAT6) mediates M2 polarization in vitro and we hypothesize that a STAT6-dependent macrophage phenotype mediates mucosal repair in acute murine colitis by activating the Wnt signaling pathway. Our results reveal an impaired mucosal expression of M2 macrophage-associated genes and delayed wound healing in STAT6(-/-) mice treated with 2,4,6-trinitrobenzenesulfonic acid (TNBS). These mice also ex…

0301 basic medicineCellular differentiationImmunologyBiology03 medical and health sciencesMice0302 clinical medicineImmunology and AllergyAnimalsHumansIntestinal MucosaCells CulturedSTAT6Mice KnockoutMice Inbred BALB CWound HealingWnt signaling pathwayLGR5LRP5Cell DifferentiationColitisInflammatory Bowel DiseasesCell biologyWnt Proteins030104 developmental biologyPhenotypeTrinitrobenzenesulfonic AcidImmunologySTAT proteinMacrophages PeritonealSignal transductionWound healingSTAT6 Transcription Factor030215 immunologySignal Transduction
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Eosinophil depletion suppresses radiation-induced small intestinal fibrosis.

2017

Radiation-induced intestinal fibrosis (RIF) is a serious complication after abdominal radiotherapy for pelvic tumor or peritoneal metastasis. Herein, we show that RIF is mediated by eosinophil interactions with α-smooth muscle actin-positive (α-SMA+) stromal cells. Abdominal irradiation caused RIF especially in the submucosa (SM) of the small intestine, which was associated with the excessive accumulation of eosinophils in both human and mouse. Eosinophil-deficient mice showed markedly ameliorated RIF, suggesting the importance of eosinophils. After abdominal irradiation, chronic crypt cell death caused elevation of extracellular adenosine triphosphate, which in turn activated expression of…

0301 basic medicineChemokineStromal cellCCR303 medical and health sciencesChemokine receptorMiceIntestine SmallmedicineAnimalsIntestinal MucosaReceptorCCL11biologyChemistryGeneral Medicinerespiratory systemEosinophilFibrosisSmall intestineEosinophilsDisease Models AnimalRadiation Injuries Experimental030104 developmental biologymedicine.anatomical_structurebiology.proteinCancer researchScience translational medicine
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Self-adjuvanting C18 lipid vinil sulfone-PP2A vaccine: study of the induced immunomodulation against Trichuris muris infection

2017

Despite the importance of the adjuvant in the immunization process, very few adjuvants merge with the antigens in vaccines. A synthetic self-adjuvant oleic-vinyl sulfone (OVS) linked to the catalytic region of recombinant serine/threonine phosphatase 2A from the nematode Angiostrongylus costaricensis (rPP2A) was used for intranasal immunization in mice previously infected with Trichuris muris . The animal intranasal immunization with rPP2A-OVS showed a reduction of 99.01% in the number of the nematode eggs and 97.90% in adult. The immunohistochemical analysis of the intestinal sections showed that in immunized animals with lipopeptide the mucus was significantly higher than in the other ex…

0301 basic medicineChemokinemedicine.medical_treatmentGene ExpressionchemokinesTrichuris murisMicechemistry.chemical_compound0302 clinical medicineIntestinal mucosaProtein Phosphatase 2SulfonesIntestinal Mucosalcsh:QH301-705.5biologyGeneral NeuroscienceLipopeptideHelminth Proteinstrichuris muris vaccinationRecombinant ProteinsTrichurisFemaleAdjuvantAngiostrongylus costaricensisself-assembling lipopeptide rPP2AChemokine CCL11Immunologychemical and pharmacologic phenomenaself-assembling lipopeptide rpp2aGeneral Biochemistry Genetics and Molecular BiologyMicrobiologyLipopeptidesMice Inbred AKR03 medical and health sciencesAdjuvants ImmunologicAntigenmedicineAnimalsAmino Acid SequenceTrichuriasislipid vinyl sulfoneParasite Egg CountAdministration IntranasalChemokine CCL20Vaccines ConjugateInterleukinsbiology.organism_classificationMucusTrichuris muris vaccinationcytokines030104 developmental biologychemistrylcsh:Biology (General)Immunologybiology.proteinTh17 CellsSequence Alignment030215 immunology
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Specific norovirus interaction with Lewis x and Lewis a on human intestinal inflammatory mucosa during refractory inflammatory bowel disease

2021

Inflammatory bowel disease (IBD), including Crohn’s disease (CD) and ulcerative colitis (UC), are progressive diseases affecting millions of people each year. Flare-ups during IBD result in severe mucosal alterations of the small intestine (in CD) and in the colon and rectum (in CD and UC).

0301 basic medicineCrohn’s diseaseMaleSeverity of Illness IndexInflammatory bowel diseasechemistry.chemical_compound0302 clinical medicineMedicineIntestinal MucosaCrohn's disease0303 health sciencesMiddle AgedImmunohistochemistryUlcerative colitisQR1-502HBGA3. Good healthmedicine.anatomical_structure030220 oncology & carcinogenesisImmunohistochemistry030211 gastroenterology & hepatologyFemalegut inflammationResearch ArticleAdultCA-19-9 Antigenmedicine.drug_classLewis X AntigenRectumMonoclonal antibodyMicrobiologydigestive systemVirusHost-Microbe BiologyYoung Adult03 medical and health sciencesAntigenHumansMolecular Biologyulcerative colitis030304 developmental biologybusiness.industryNorovirus[SDV.MHEP.HEG]Life Sciences [q-bio]/Human health and pathology/Hépatology and GastroenterologySialyl-Lewis AInflammatory Bowel Diseasesmedicine.diseasedigestive system diseasesSmall intestineGastrointestinal Tract030104 developmental biologySialyl-Lewis XchemistryinflammationImmunologybusiness[SDV.AEN]Life Sciences [q-bio]/Food and Nutrition
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Enterocyte Purge and Rapid Recovery Is a Resilience Reaction of the Gut Epithelium to Pore-Forming Toxin Attack.

2016

International audience; Besides digesting nutrients, the gut protects the host against invasion by pathogens. Enterocytes may be subjected to damage by both microbial and host defensive responses, causing their death. Here, we report a rapid epithelial response that alleviates infection stress and protects the enterocytes from the action of microbial virulence factors. Intestinal epithelia exposed to hemolysin, a pore-forming toxin secreted by Serratia marcescens, undergo an evolutionarily conserved process of thinning followed by the recovery of their initial thickness within a few hours. In response to hemolysin attack, Drosophila melanogaster enterocytes extrude most of their apical cyto…

0301 basic medicineCytoplasmDisease toleranceSurvivalApoptosismedicine.disease_causeOral infectionHemolysin ProteinsLipid droplet[SDV.IDA]Life Sciences [q-bio]/Food engineeringMitochondrial extrusionIntestinal MucosaSerratia marcescensBacterial-infectionPore-forming toxinbiologyCell DeathMicrovilliPlasma-membrane[ SDV.IDA ] Life Sciences [q-bio]/Food engineeringGut EpitheliumMitochondriamedicine.anatomical_structureDrosophila melanogasterEnterocyteVirulence FactorsVarroidaeSerratia-marcescensBacterial ToxinsVirulenceMicrobiologyMicrobiologySerratia Infections03 medical and health sciencesVirologymedicineAnimalsApical cytoplasmDefense strategyDrosophila cyclin jToxinbiology.organism_classificationLipid dropletsDisease Models AnimalIntestinal Diseases030104 developmental biologyEnterocytesSerratia marcescensParasitologyDigestive SystemCell hostmicrobe
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Preventive effects of guanosine on intestinal inflammation in 2, 4-dinitrobenzene sulfonic acid (DNBS)-induced colitis in rats

2018

Background: Guanosine, a guanine-based purine, is an extracellular signaling molecule exerting anti-inflammatory and antioxidative effects in several in vivo and in vitro injury models. We aimed to investigate its protective effects on 2, 4-dinitrobenzene sulfonic acid (DNBS)-induced colitis in rat. Methods: Rats were divided into five groups and colitis was induced by intracolonic instillation of DNBS (15 mg/rat). Guanosine (4 or 8 mg/kg) was administered for 6 days i.p. starting the day of the colitis induction. Body weight loss, stool consistency, colon weight/length, histological analysis, myeloperoxidase activity (MPO) and pro-inflammatory cytokine levels were assessed. Immunoblotting …

0301 basic medicineDNBS ratColonmedicine.medical_treatmentInterleukin-1betaImmunologyAnti-Inflammatory AgentsGuanosineInflammationPharmacologySettore BIO/09 - FisiologiaInflammatory bowel diseaseAntioxidantsInflammatory bowel disease03 medical and health scienceschemistry.chemical_compound0302 clinical medicineIn vivomedicineAnimalsPharmacology (medical)Intestinal MucosaRats WistarColitisPurineInflammationPharmacologychemistry.chemical_classificationReactive oxygen speciesGuanosineInterleukin-6Tumor Necrosis Factor-alphaNF-kappa BColitismedicine.diseaseRats030104 developmental biologyCytokinechemistryCytokinesDinitrofluorobenzeneTumor necrosis factor alphamedicine.symptomReactive Oxygen Species030217 neurology & neurosurgeryInflammopharmacology
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Targeted delivery of Cyclosporine A by polymeric nanocarriers improves the therapy of inflammatory bowel disease in a relevant mouse model

2017

The therapy of inflammatory bowel diseases is still rather inefficient, and about 80% of patients require surgery at some stage. Improving the treatments by more efficient medication is, therefore, an urgent medical need. The objective of this project was to demonstrate targeted delivery of Cyclosporine-A (CYA) to the inflamed areas of the intestinal mucosa after oral administration, enabling improved alleviation of the symptoms and, at the same time, reduced systemic drug absorption and associated adverse effects. As had already been demonstrated in previous studies, nano- to micrometer-sized drug particles will accumulate at inflamed mucosal areas, providing a platform for such purposes. …

0301 basic medicineDrugColonPolymersmedia_common.quotation_subjectAdministration OralBiological AvailabilityPharmaceutical Science02 engineering and technologyPharmacologyInflammatory bowel diseaseMice03 medical and health sciencesDrug Delivery SystemsPolylactic Acid-Polyglycolic Acid CopolymerIntestinal mucosaOral administrationAnimalsMedicineLactic AcidIntestinal MucosaParticle SizeAdverse effectmedia_commonDrug CarriersMice Inbred BALB CCrohn's diseasebusiness.industryGeneral MedicineInflammatory Bowel Diseases021001 nanoscience & nanotechnologymedicine.diseaseBioavailabilityDisease Models Animal030104 developmental biologyCyclosporineNanoparticlesNanocarriers0210 nano-technologybusinessPolyglycolic AcidBiotechnologyEuropean Journal of Pharmaceutics and Biopharmaceutics
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Usefulness of Caco-2/HT29-MTX and Caco-2/HT29-MTX/Raji B Coculture Models To Predict Intestinal and Colonic Permeability Compared to Caco-2 Monocultu…

2017

The Caco-2 cellular monolayer is a widely accepted in vitro model to predict human permeability but suffering from several and critical limitations. Therefore, some alternative cell cultures to mimic the human intestinal epithelium, as closely as possible, have been developed to achieve more physiological conditions, as the Caco-2/HT29-MTX coculture and the triple Caco-2/HT29-MTX/Raji B models. In this work the permeability of 12 model drugs of different Biopharmaceutical Classification System (BCS) characteristics, in the coculture and triple coculture models was assessed. Additionally, the utility of both models to classify compounds according to the BCS criteria was scrutinized. The obta…

0301 basic medicineDrugColonmedia_common.quotation_subjectPharmaceutical Science02 engineering and technologyBiologydigestive systemPermeability03 medical and health sciencesCell Line TumorDrug DiscoverymedicineLow permeabilityHumansIntestinal Mucosamedia_commonHt29 mtxIntestinal permeability021001 nanoscience & nanotechnologymedicine.diseaseIntestinal epitheliumCoculture Techniques030104 developmental biologyIntestinal AbsorptionCaco-2Cell culturePermeability (electromagnetism)ImmunologyCancer researchMolecular MedicineCaco-2 Cells0210 nano-technologyHT29 CellsMolecular Pharmaceutics
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Redox signaling in the gastrointestinal tract.

2017

Redox signaling regulates physiological self-renewal, proliferation, migration and differentiation in gastrointestinal epithelium by modulating Wnt/β-catenin and Notch signaling pathways mainly through NADPH oxidases (NOXs). In the intestine, intracellular and extracellular thiol redox status modulates the proliferative potential of epithelial cells. Furthermore, commensal bacteria contribute to intestine epithelial homeostasis through NOX1- and dual oxidase 2-derived reactive oxygen species (ROS). The loss of redox homeostasis is involved in the pathogenesis and development of a wide diversity of gastrointestinal disorders, such as Barrett's esophagus, esophageal adenocarcinoma, peptic ulc…

0301 basic medicineGastrointestinal DiseasesNotch signaling pathwaymedicine.disease_causeBiochemistryGastrointestinal epitheliumSuperoxide dismutase03 medical and health scienceschemistry.chemical_compoundPhysiology (medical)medicineHumansSulfhydryl CompoundsIntestinal MucosaWnt Signaling PathwayCell Proliferationchemistry.chemical_classificationReactive oxygen speciesbiologySuperoxideWnt signaling pathwayNADPH OxidasesDual oxidase 2digestive system diseasesGastrointestinal TractIntestinesOxidative Stress030104 developmental biologychemistryImmunologybiology.proteinCancer researchReactive Oxygen SpeciesOxidation-ReductionOxidative stressFree radical biologymedicine
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