Search results for "Blood–brain barrier"

showing 4 items of 134 documents

CRP-induced levels of oxidative stress are higher in brain than aortic endothelial cells

2010

C-reactive protein (CRP) has been demonstrated to induce blood-brain barrier disruption (BBB) involving NAD(P)H-oxidase dependent oxidative stress. It is unclear why CRP affects the BBB and not other vascular beds following stroke. Therefore we examined CRP receptor and NAD(P)H-oxidase expression levels in bovine brain- (BEC) and aortic endothelial cells. Dichlorodihydrofluorescein measurements revealed significantly higher CRP-induced reactive oxygen species (ROS) levels in BEC. Protein expression of the CRP-receptors CD16, CD32 and of the NAD(P)H-oxidase subunit p22phox were also significantly higher in BEC. In conclusion BEC show a higher vulnerability to CRP due to increased levels of C…

medicine.medical_specialtyImmunologyBlood–brain barriermedicine.disease_causeBiochemistryInternal medicinemedicineAnimalsImmunology and AllergyReceptorMolecular BiologyAortachemistry.chemical_classificationReactive oxygen speciesNADPH oxidasebiologyChemistryReceptors IgGBrainEndothelial CellsNADPH OxidasesHematologyOxidative StressC-Reactive Proteinmedicine.anatomical_structureEndocrinologyNAD(P)H oxidaseImmunologybiology.proteinCattleP22phoxNAD+ kinaseOxidative stressCytokine
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Mechanisms of C-reactive protein-induced blood-brain barrier disruption.

2009

Background and Purpose— Increased mortality after stroke is associated with brain edema formation and high plasma levels of the acute phase reactant C-reactive protein (CRP). The aim of this study was to examine whether CRP directly affects blood–brain barrier stability and to analyze the underlying signaling pathways. Methods— We used a cell coculture model of the blood–brain barrier and the guinea pig isolated whole brain preparation. Results— We could show that CRP at clinically relevant concentrations (10 to 20 μg/mL) causes a disruption of the blood–brain barrier in both approaches. The results of our study further demonstrate CRP-induced activation of surface Fcγ receptors CD16/32 fo…

medicine.medical_specialtyMyosin light-chain kinaseMyosin Light ChainsGuinea PigsBrain Edemamedicine.disease_causeBlood–brain barrierp38 Mitogen-Activated Protein KinasesMyosin light chain kinase activityTight JunctionsInternal medicineMyosinmedicineAnimalsPhosphorylationReceptorCells CulturedAdvanced and Specialized Nursingbusiness.industryReceptors IgGCoculture TechniquesCell biologyRatsStrokeEndocrinologymedicine.anatomical_structureC-Reactive ProteinBlood-Brain BarrierPhosphorylationNeurology (clinical)Endothelium VascularSignal transductionCardiology and Cardiovascular MedicinebusinessReactive Oxygen SpeciesOxidative stressSignal TransductionStroke
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Addition of NMDA-receptor antagonist MK801 during oxygen/glucose deprivation moderately attenuates the upregulation of glucose uptake after subsequen…

2011

During stroke the blood–brain barrier (BBB) is damaged which can result in vasogenic brain edema and inflammation. The reduced blood supply leads to decreased delivery of oxygen and glucose to affected areas of the brain. Oxygen and glucose deprivation (OGD) can cause upregulation of glucose uptake of brain endothelial cells. In this letter, we investigated the influence of MK801, a non-competitive inhibitor of the NMDA-receptor, on the regulation of the glucose uptake and of the main glucose transporters glut1 and sglt1 in murine BBB cell line cerebEND during OGD. mRNA expression of glut1 was upregulated 68.7- fold after 6 h OGD, which was significantly reduced by 10 μM MK801 to 28.9-fold.…

medicine.medical_specialtyTime FactorsSchlaganfallNMDA-RezeptorGlucose uptakeNMDA-AntagonistInflammationCarbohydrate metabolismTritiumBlood–brain barrierReceptors N-Methyl-D-AspartateMice03 medical and health sciences0302 clinical medicineDownregulation and upregulationInternal medicinemedicineBlut-Hirn-SchrankeAnimalsddc:610RNA MessengerHypoxia030304 developmental biology0303 health sciencesDose-Response Relationship DrugbiologyGeneral NeuroscienceGlucosetransportproteineGlucose transporterBrainEndothelial CellsUp-RegulationOxygencarbohydrates (lipids)Glucosemedicine.anatomical_structureEndocrinologynervous systembiology.proteinNMDA receptorGLUT1Dizocilpine Maleatemedicine.symptomExcitatory Amino Acid Antagonists030217 neurology & neurosurgeryNeuroscience Letters
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Lymphatic vessels of the dura mater: a new discovery?

2015

Aspelund et al. discover the presence of a lymphatic vessel network in the dura mater of the mouse brain and show that these dural lymphatic vessels are important for the clearance of macromolecules from the brain.

musculoskeletal diseasesPathologymedicine.medical_specialtyHistologyMacromolecular SubstancesDura materCentral nervous systemNeuroimmunologyBlood–brain barrierBlood-brain barrier; Brain; Central nervous system; Dura mater; Lymphatics; Mascagni; Neuroanatomy; Neuroimmunology; Transudate; Anatomy; Histology; Developmental Biology; Ecology Evolution Behavior and Systematics; Molecular Biology; Cell BiologyTransudateLymphatic SystemMatters ArisingmedicineAnimalsDura materMolecular BiologyEcology Evolution Behavior and SystematicsBlood-brain barrierCerebrospinal Fluidintegumentary systembusiness.industrySettore BIO/16 - Anatomia UmanaBrief Definitive ReportMascagniBrainExtracellular FluidAnatomyCell Biologymusculoskeletal systemEcology Evolution Behavior and SystematicTransudatenervous system diseasesNeuroanatomyNeuroimmunologymedicine.anatomical_structureLymphatic systemnervous systemCentral nervous systemLymph NodesAnatomybusinessLymphaticNeuroanatomyDevelopmental BiologyJournal of anatomy
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