Search results for "tight junction"

showing 10 items of 74 documents

Impact of polymer-modified gold nanoparticles on brain endothelial cells: exclusion of endoplasmic reticulum stress as a potential risk factor

2016

A library of polymer-coated gold nanoparticles (AuNPs) differing in size and surface modifications was examined for uptake and induction of cellular stress responses in the endoplasmic reticulum (ER stress) in human brain endothelial cells (hCMEC/D3). ER stress is known to affect the physiology of endothelial cells (ECs) and may lead to inflammation or apoptosis. Thus, even if applied at non-cytotoxic concentrations ER stress caused by nanoparticles should be prevented to reduce the risk of vascular diseases and negative effects on the integrity of barriers (e.g. blood-brain barrier). We exposed hCMEC/D3 to twelve different AuNPs (three sizes: 18, 35, and 65 nm, each with four surface-modif…

0301 basic medicineXBP1BiPCell SurvivalPolymersBiomedical EngineeringMetal NanoparticlesApoptosis02 engineering and technologyBiologyEndoplasmic ReticulumToxicologyArticleCell LineProinflammatory cytokine03 medical and health sciencescell stressDownregulation and upregulationRisk FactorsHeat shock proteinAnimalsHumansHSP70 Heat-Shock ProteinsParticle SizeHeat-Shock ProteinsATF6Endoplasmic reticulumInterleukin-8ATF4Endothelial CellsMembrane Proteinsunfolded protein responseEndoplasmic Reticulum Stress021001 nanoscience & nanotechnologyQPActivating Transcription Factor 4Cell biology030104 developmental biologyBlood-Brain Barriertight junction proteinsImmunologyUnfolded protein responseGold0210 nano-technologyTranscription Factor CHOPNanotoxicology
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LBA-06 IMAB362: a novel immunotherapeutic antibody targeting the tight-junction protein component CLAUDIN18.2 in gastric cancer

2016

0301 basic medicinebiologyTight junctionbusiness.industryCancerHematologymedicine.disease03 medical and health sciences030104 developmental biology0302 clinical medicineOncology030220 oncology & carcinogenesisComponent (UML)Antibody targetingbiology.proteinCancer researchmedicineAntibodybusinessAnnals of Oncology
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Nitric Oxide System and Bronchial Epithelium: More Than a Barrier

2021

Airway epithelium forms a physical barrier that protects the lung from the entrance of inhaled allergens, irritants, or microorganisms. This epithelial structure is maintained by tight junctions, adherens junctions and desmosomes that prevent the diffusion of soluble mediators or proteins between apical and basolateral cell surfaces. This apical junctional complex also participates in several signaling pathways involved in gene expression, cell proliferation and cell differentiation. In addition, the airway epithelium can produce chemokines and cytokines that trigger the activation of the immune response. Disruption of this complex by some inflammatory, profibrotic, and carcinogens agents c…

0301 basic medicinecyclic guanosine-3′PhysiologyInflammationReviewCell junctionNitric oxideAdherens junction03 medical and health scienceschemistry.chemical_compound0302 clinical medicinenitric oxidePhysiology (medical)medicineQP1-981bronchial epitheliumLungTight junctionnitric oxide synthasesoluble guanylyl cyclaserespiratory systemrespiratory tract diseases030104 developmental biologymedicine.anatomical_structure030228 respiratory systemchemistryExhaled nitric oxideCancer researchRespiratory epithelium5′-monophosphatemedicine.symptomFrontiers in Physiology
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Alterations in Tight- and Adherens-Junction Proteins Related to Glaucoma Mimicked in the Organotypically Cultivated Mouse Retina Under Elevated Press…

2020

Purpose To scrutinize alterations in cellular interactions and cell signaling in the glaucomatous retina, mouse retinal explants were exposed to elevated pressure. Methods Retinal explants were prepared from C57bl6 mice and cultivated in a pressure chamber under normotensive (atmospheric pressure + 0 mm Hg), moderately elevated (30 mm Hg), and highly elevated (60 mm Hg) pressure conditions. The expression levels of proteins involved in the formation of tight junctions (zonula occludens 1 [ZO-1], occludin, and claudin-5) and adherens junctions (VE-cadherin and β-catenin) and in cell-signaling cascades (Cdc42 and activated Cdc42 kinase 1 [ACK1]), as well as the expression levels of the growth…

0301 basic medicineelevated pressureBlotting WesternVimentinReal-Time Polymerase Chain ReactionOccludinRetinaTight JunctionsAdherens junctionMice03 medical and health scienceschemistry.chemical_compoundOrgan Culture Techniques0302 clinical medicineAntigens CDOccludinmedicinecell signalingAnimalscell contactsEye Proteinscdc42 GTP-Binding ProteinReceptorretina explantsmousebeta CateninRetinabiologyTight junctionGlial fibrillary acidic proteinChemistryGlaucomaRetinalAdherens JunctionsProtein-Tyrosine KinasesCadherinsImmunohistochemistryCell biologyMice Inbred C57BLAtmospheric Pressure030104 developmental biologymedicine.anatomical_structure030220 oncology & carcinogenesisZonula Occludens-1 Proteinbiology.proteinInvestigative Opthalmology & Visual Science
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Transport of Amino Acids Across the Blood-Brain Barrier.

2020

The blood-brain-barrier (BBB), present in brain capillaries, constitutes an essential barrier mechanism for normal functioning and development of the brain. The presence of tight junctions between adjacent endothelial cells restricts permeability and movement of molecules between extracellular fluid and plasma. The protein complexes that control cell-cell attachment also polarize cellular membrane, so that it can be divided into luminal (blood-facing) and abluminal (brain) sides, and each solute that enters/leaves the brain must cross both membranes. Several amino acid (AA) transport systems with different distributions on both sides of the BBB have been described. In a broad sense, there a…

0301 basic medicineluminal membranePhysiologyfacilitative transportReviewBlood–brain barrierlcsh:Physiology03 medical and health sciences0302 clinical medicinePhysiology (medical)abluminal membraneCell polaritymedicineactive transportlcsh:QP1-981Tight junctionamino acid transportChemistryTransporterblood-brain barrierendothelial cellsEndothelial stem cellcell polarity030104 developmental biologymedicine.anatomical_structureMembraneBiophysicsEfflux030217 neurology & neurosurgeryHomeostasisFrontiers in physiology
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Blockade of Pannexin-1 Channels and Purinergic P2X7 Receptors Shows Protective Effects Against Cytokines-Induced Colitis of Human Colonic Mucosa

2018

Introduction: The pannexin-1 (Panx1) channels are found in many cell types, and ATP released from these channels can act on nearby cells activating purinergic P2X7 receptors (P2X7R) which lead to inflammation. Although Panx1 and P2X7R are implicated in the process of inflammation and cell death, few studies have looked at the role they play in inflammatory bowel disease in human. Hence, the aim of the present study was to investigate the function of Panx1 and P2X7R in an ex vivo colitis model developed from human colonic mucosal explants.Materials and Methods: Healthy human colonic mucosal strips (4 × 10 mm) were incubated in carbogenated culture medium at 37°C for 16 h. Proinflammatory cyt…

0301 basic medicinemedicine.medical_specialtytissue explantsCryptInflammationInflammatory bowel diseasecolonic inflammationProinflammatory cytokine03 medical and health sciencesInternal medicinemedicinePharmacology (medical)ColitisOriginal ResearchPharmacologyTight junctionChemistrylcsh:RM1-950Purinergic receptorpannexin-1medicine.diseaselcsh:Therapeutics. Pharmacology030104 developmental biologyEndocrinologyP2X7 receptorhuman colitisTumor necrosis factor alphamedicine.symptomFrontiers in Pharmacology
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Multifaceted Mechanisms of WY-14643 to Stabilize the Blood-Brain Barrier in a Model of Traumatic Brain Injury

2017

The blood-brain barrier (BBB) is damaged during ischemic insults such as traumatic brain injury or stroke. This contributes to vasogenic edema formation and deteriorate disease outcomes. Enormous efforts are pursued to understand underlying mechanisms of ischemic insults and develop novel therapeutic strategies. In the present study the effects of PPARα agonist WY-14643 were investigated to prevent BBB breakdown and reduce edema formation. WY-14643 inhibited barrier damage in a mouse BBB in vitro model of traumatic brain injury based on oxygen/glucose deprivation in a concentration dependent manner. This was linked to changes of the localization of tight junction proteins. Furthermore, WY-1…

0301 basic medicinepirinixic acidTraumatic brain injuryp38 mitogen-activated protein kinasesIschemiaischemiaPharmacologyBlood–brain barrierPPARαlcsh:RC321-57103 medical and health sciencesCellular and Molecular Neuroscience0302 clinical medicineDownregulation and upregulationmedicinelcsh:Neurosciences. Biological psychiatry. NeuropsychiatryMolecular BiologyOriginal ResearchTight junctionbusiness.industryKinasetraumatic brain injuryblood-brain barriermedicine.diseasestroke030104 developmental biologymedicine.anatomical_structureKnockout mousebusinessNeuroscience030217 neurology & neurosurgeryNeuroscienceFrontiers in Molecular Neuroscience
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Cellular mechanisms of IL-17-induced blood-brain barrier disruption.

2009

Recently T-helper 17 (Th17) cells were demonstrated to disrupt the blood-brain barrier (BBB) by the action of IL-17A. The aim of the present study was to examine the mechanisms that underlie IL-17A-induced BBB breakdown. Barrier integrity was analyzed in the murine brain endothelial cell line bEnd.3 by measuring the electrical resistance values using electrical call impedance sensing technology. Furthermore, in-cell Western blots, fluorescence imaging, and monocyte adhesion and transendothelial migration assays were performed. Experimental autoimmune encephalomyelitis (EAE) was induced in C57BL/6 mice. IL-17A induced NADPH oxidase- or xanthine oxidase-dependent reactive oxygen species (ROS)…

1303 BiochemistryEncephalomyelitisOccludin10263 Institute of Experimental ImmunologyBiochemistryMice0302 clinical medicineEnzyme InhibitorsCell Line Transformed0303 health sciencesMice Inbred BALB CNADPH oxidasebiologyTight junctionExperimental autoimmune encephalomyelitisInterleukin-17AzepinesT-Lymphocytes Helper-InducerCell biologyEndothelial stem cellBlood-Brain Barrier1305 BiotechnologyBiotechnologyXanthine OxidaseMyosin light-chain kinaseEncephalomyelitis Autoimmune ExperimentalDown-Regulation610 Medicine & healthNaphthalenes03 medical and health sciences1311 GeneticsOccludinGeneticsmedicine1312 Molecular BiologyAnimalsMolecular BiologyMyosin-Light-Chain KinaseNeuroinflammation030304 developmental biologyEndothelial CellsMembrane ProteinsNADPH Oxidasesmedicine.diseaseMolecular biologyAntibodies NeutralizingOxidative Stressbiology.protein570 Life sciences; biologyReactive Oxygen Species030217 neurology & neurosurgeryFASEB journal : official publication of the Federation of American Societies for Experimental Biolog
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Anti-inflammatory and tight junction protective activity of the herbal preparation STW 5-II on mouse intestinal organoids

2021

Abstract Background Irritable bowel syndrome (IBS) is a functional bowel disorder, in which recurrent abdominal pain is associated with defecation or a change in bowel habits. STW 5-II is a combination of six medicinal herbs with a clinically proven efficacy in managing IBS. Aim This study aims to establish an in vitro IBS model using mouse intestinal organoids and to explore the anti-inflammatory and tight junction protective activities of the multi-herbal preparation STW 5-II. Methods Intestinal organoids were cultured in 1:1 Matrigel™ and medium domes. Inflammation and tight junction disruption were induced by a cocktail of cytokines (TNFα, IFNγ, IL-1β, IL-6) and bacterial proteins (LPS,…

Anti-Inflammatory AgentsPharmaceutical ScienceInflammationPharmacologyTight JunctionsProinflammatory cytokineIrritable Bowel SyndromeMice03 medical and health sciencesOrgan Culture Techniques0302 clinical medicineWestern blotDownregulation and upregulationDrug DiscoverymedicineOrganoidAnimalsComputer SimulationIntestinal MucosaIrritable bowel syndrome030304 developmental biologyPharmacology0303 health sciencesTight junctionmedicine.diagnostic_testPlant Extractsbusiness.industryNF-kappa Bmedicine.diseaseIntestinesOrganoidsDisease Models AnimalSTAT1 Transcription FactorGene Expression RegulationComplementary and alternative medicine030220 oncology & carcinogenesisZonula Occludens-1 ProteinMolecular MedicineTumor necrosis factor alphaInflammation Mediatorsmedicine.symptombusinessPhytomedicine
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Physical origin of Na+/Cl− selectivity of tight junctions between epithelial cells. Nonlocal electrostatic approach

2020

Abstract Tight junctions (TJs) of epithelial cells play a key role in regulation of the ion exchange between NaCl solutions separated by the layer of these cells. Their functioning is based on a strong difference in the permeabilities of these channels for Na+ and Cl− ion migrational fluxes owing to specific properties of the protein network inside TJs. It has been assumed in this study that this phenomenon originates from combination of two effects related to this specific TJ protein (claudin) which segments are partially located inside the TJ space. First, their ionogenic groups create a negative charge distributed inside TJs, thus inducing a difference between the Na+ and Cl− concentrati…

Aqueous solutionIon exchangeTight junctionChemistrySolvation02 engineering and technologyDielectric010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter PhysicsElectrostatics01 natural sciencesAtomic and Molecular Physics and Optics0104 chemical sciencesElectronic Optical and Magnetic MaterialsIonChemical physicsMaterials ChemistryMolecule[CHIM]Chemical SciencesPhysical and Theoretical Chemistry0210 nano-technologySpectroscopy
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