Search results for "Endothelial Cell"

showing 10 items of 497 documents

Estrogen Receptor Signaling and the PI3K/Akt Pathway Are Involved in Betulinic Acid-Induced eNOS Activation

2016

Betulinic acid (BA) is a naturally occurring pentacyclic triterpenoid with anti-inflammatory, antiviral and anti-cancer properties. Beneficial cardiovascular effects such as increased nitric oxide (NO) production through enhancement of endothelial NO synthase (eNOS) activity and upregulation of eNOS expression have been demonstrated for this compound. In the present study, immortalized human EA.hy 926 endothelial cells were incubated for up to 1 h with 1–100 µM BA and with the phosphatidylinositol-3-kinase (PI3K) inhibitors LY294002 and wortmannin, or the estrogen receptor (ER) antagonist ICI 182,780. Phosphorylation status of eNOS and total eNOS protein were analyzed by Western blotting us…

0301 basic medicinePharmaceutical ScienceEstrogen receptorPI3KAnalytical ChemistryWortmanninchemistry.chemical_compound0302 clinical medicineEnosDrug DiscoveryLY294002PhosphorylationFulvestrantLungbiologyEstradiolendothelial cellsReceptors EstrogenChemistry (miscellaneous)030220 oncology & carcinogenesisMolecular MedicinePhosphorylationSignal transductionPentacyclic TriterpenesWortmanninSignal Transductionestrogen receptormedicine.medical_specialtyNitric Oxide Synthase Type IIIMorpholinesArticleCell Linelcsh:QD241-44103 medical and health sciencesbetulinic acidlcsh:Organic chemistryInternal medicinemedicineAnimalsHumansPhysical and Theoretical ChemistryProtein kinase BPI3K/AKT/mTOR pathwayendothelial nitric oxide synthaseAktOrganic ChemistryFibroblastsbiology.organism_classificationMolecular biologyTriterpenesbetulinic acid; endothelial nitric oxide synthase; endothelial cells; estrogen receptor; PI3K; AktRatsAndrostadienes030104 developmental biologyEndocrinologychemistryGene Expression RegulationChromonesPhosphatidylinositol 3-KinaseProto-Oncogene Proteins c-aktMolecules
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MicroRNA as crucial regulators of gene expression in estradiol-treated human endothelial cells.

2018

Background/Aims: Estrogen signalling plays an important role in vascular biology as it modulates vasoactive and metabolic pathways in endothelial cells. Growing evidence has also established microRNA (miRNA) as key regulators of endothelial function. Nonetheless, the role of estrogen regulation on miRNA profile in endothelial cells is poorly understood. In this study, we aimed to determine how estrogen modulates miRNA profile in human endothelial cells and to explore the role of the different estrogen receptors (ERα, ERβ and GPER) in the regulation of miRNA expression by estrogen. Methods: We used miRNA microarrays to determine global miRNA expression in human umbilical vein endothelial cel…

0301 basic medicinePhysiologymedicine.drug_classEndothelial cellsCèl·lulesDown-RegulationEstrogen receptorEstrogen receptorsBiologylcsh:PhysiologyEpigenetic regulationReceptors G-Protein-Coupledlcsh:Biochemistry03 medical and health sciencesDownregulation and upregulationmicroRNAGene expressionHuman Umbilical Vein Endothelial CellsmedicineCluster AnalysisHumanslcsh:QD415-436EpigeneticsCells CulturedOligonucleotide Array Sequence AnalysisPrincipal Component AnalysisReceptors d'hormoneslcsh:QP1-981EstradiolGene Expression ProfilingUp-RegulationCell biologyGene expression profilingMicroRNAsMetabolic pathway030104 developmental biologyReceptors EstrogenEstrogenMiRNA
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Basement Membrane Mimics of Biofunctionalized Nanofibers for a Bipolar-Cultured Human Primary Alveolar-Capillary Barrier Model

2017

In vitro reconstruction of an alveolar barrier for modeling normal lung functions and pathological events serve as reproducible, high-throughput pharmaceutical platforms for drug discovery, diagnosis, and regenerative medicine. Despite much effort, the reconstruction of organ-level alveolar barrier functions has failed due to the lack of structural similarity to the natural basement membrane, functionalization with specific ligands for alveolar cell function, the use of primary cells and biodegradability. Here we report a bipolar cultured alveolar-capillary barrier model of human primary cells supported by a basement membrane mimics of fully synthetic bifunctional nanofibers. One-step elect…

0301 basic medicinePolymers and PlasticsPolyestersNanofibersBiocompatible MaterialsBioengineeringNanotechnology02 engineering and technologyRegenerative medicineBasement MembranePermeabilityPolyethylene GlycolsBiomaterialsAlveolar cells03 medical and health sciencesTissue engineeringCell Line TumorCell AdhesionHuman Umbilical Vein Endothelial CellsMaterials ChemistrymedicineHumansBasement membraneTissue EngineeringTissue ScaffoldsChemistryEndothelial Cellsrespiratory system021001 nanoscience & nanotechnologyElectrospinningPolyester030104 developmental biologymedicine.anatomical_structureNanofiberBiophysicsSurface modification0210 nano-technologyBiomacromolecules
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Extracellular histones disarrange vasoactive mediators reléase through COX-NOS interaction in human endothelial cells

2017

Abstract Extracellular histones are mediators of inflammation, tissue injury and organ dysfunction. Interactions between circulating histones and vascular endothelial cells are key events in histone‐mediated pathologies. Our aim was to investigate the implication of extracellular histones in the production of the major vasoactive compounds released by human endothelial cells (HUVECs), prostanoids and nitric oxide (NO). HUVEC exposed to increasing concentrations of histones (0.001 to 100 μg/ml) for 4 hrs induced prostacyclin (PGI2) production in a dose‐dependent manner and decreased thromboxane A2 (TXA2) release at 100 μg/ml. Extracellular histones raised cyclooxygenase‐2 (COX‐2) and prostac…

0301 basic medicineProstacyclinHistoneschemistry.chemical_compoundThromboxane A2Cytochrome P-450 Enzyme SystemSuperoxidesEnosvascular mediatorsGenètica humanabiologySuperoxideendothelial cellsIntramolecular OxidoreductasesEndothelial stem cellMolecular MedicineOriginal ArticleThromboxane-A SynthaseSignal Transductionmedicine.drugmedicine.medical_specialtyNitric Oxide Synthase Type IIIPrimary Cell CultureNitric OxideProstacyclin synthaseNitric oxideCyclic N-OxidesThromboxane A203 medical and health sciencesInternal medicineHuman Umbilical Vein Endothelial CellsmedicineExtracellularHumansRNA MessengerprostanoidsDose-Response Relationship DrugOriginal ArticlesCell Biologybiology.organism_classificationEpoprostenolÒxid nítric030104 developmental biologyEndocrinologyGene Expression RegulationchemistryCelecoxibCyclooxygenase 2Cyclooxygenase 1biology.proteinSpin LabelsProteïnesextracellular histones
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Curcumin modulates chronic myelogenous leukemia exosomes composition and affects angiogenic phenotype, via exosomal miR-21

2016

Abstract: Tumor derived exosomes are vesicles which contain proteins and microRNAs that mediate cell-cell communication and are involved in angiogenesis and tumor progression. Curcumin derived from the plant Curcuma longa, shows anticancer effects. Exosomes released by CML cells treated with Curcumin contain a high amount of miR-21 that is shuttled into the endothelial cells in a biologically active form. The treatment of HUVECs with CML Curcu-exosomes reduced RhoB expression and negatively modulated endothelial cells motility. We showed that the addition of CML control exosomes to HUVECs caused an increase in IL8 and VCAM1 levels, but Curcu-exosomes reversed these effects thus attenuating …

0301 basic medicineProteomicsCurcuminProteomeAngiogenesisRHOBNeovascularization PhysiologicAntineoplastic AgentsexosomesExosome03 medical and health scienceschemistry.chemical_compound0302 clinical medicineSettore BIO/13 - Biologia ApplicataCell Line TumorLeukemia Myelogenous Chronic BCR-ABL PositiveHuman Umbilical Vein Endothelial CellsMedicineHumansInterleukin 8MARCKSMyristoylated Alanine-Rich C Kinase SubstrateCMLBiologyCells CulturedNeovascularization Pathologicbusiness.industryexosomes curcumin miR-21 CMLMicrovesiclesCell biologyMicroRNAs030104 developmental biologyOncologychemistryGene Expression RegulationSettore CHIM/09 - Farmaceutico Tecnologico Applicativo030220 oncology & carcinogenesisImmunologyCurcuminmiR-21Human medicinebusinessK562 CellsK562 cellsResearch PaperOncotarget
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JAK2 mediates lung fibrosis, pulmonary vascular remodelling and hypertension in idiopathic pulmonary fibrosis: an experimental study

2018

BackgroundPulmonary hypertension (PH) is a common disorder in patients with idiopathic pulmonary fibrosis (IPF) and portends a poor prognosis. Recent studies using vasodilators approved for PH have failed in improving IPF mainly due to ventilation (V)/perfusion (Q) mismatching and oxygen desaturation. Janus kinase type 2 (JAK2) is a non-receptor tyrosine kinase activated by a broad spectrum of profibrotic and vasoactive mediators, but its role in PH associated to PH is unknown.ObjectiveThe study of JAK2 as potential target to treat PH in IPF.Methods and resultsJAK2 expression was increased in pulmonary arteries (PAs) from IPF (n=10; 1.93-fold; P=0.0011) and IPF+PH (n=9; 2.65-fold; P<0.00…

0301 basic medicinePulmonary and Respiratory Medicinemedicine.medical_specialtyHypertension PulmonaryBlotting WesternMyocytes Smooth MuscleFluorescent Antibody TechniqueVasodilationVascular RemodelingReal-Time Polymerase Chain ReactionVascular remodelling in the embryo03 medical and health sciencesIdiopathic pulmonary fibrosisTransforming Growth Factor betaRight ventricular hypertrophyInternal medicinepulmonary hypertensionAnimalsHumansMedicineRNA Small InterferingRats WistarCells CulturedCell ProliferationBKCaJanus kinase 2biologybusiness.industryEndothelial CellsJanus Kinase 2idiopathic pulmonary fibrosismedicine.diseaseImmunohistochemistryPulmonary hypertensionIdiopathic Pulmonary FibrosisTriterpenesRatsPhenotype030104 developmental biologyJAK2biology.proteinCardiologyAnimal studiesJanus kinasebusinessSignal TransductionPulmonary artery smooth muscle cells Pulmonary artery endothelial cells.Thorax
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Regulatory network analysis in estradiol-treated human endothelial cells.

2021

Background/Aims: Estrogen has been reported to have beneficial effects on vascular biology through direct actions on endothelium. Together with transcription factors, miRNAs are the major drivers of gene expression and signaling networks. The objective of this study was to identify a com-prehensive regulatory network (miRNA-transcription factor-downstream genes) that controls the transcriptomic changes observed in endothelial cells exposed to estradiol. Methods: miR-NA/mRNA interactions were assembled using our previous microarray data of human umbilical vein endothelial cells (HUVEC) treated with 17ß- Estradiol (E2) (1 nmol/lL, 24 h). miRNA--mRNA pairings and their associated canonical pat…

0301 basic medicineQH301-705.5FisiologiaBiologyCatalysisArticleInorganic Chemistry03 medical and health sciences0302 clinical medicineGene expressionCadherin bindingHuman Umbilical Vein Endothelial CellsHumansGene Regulatory NetworksRNA MessengerPhysical and Theoretical ChemistryBiology (General)Molecular BiologyTranscription factorQD1-999Spectroscopytranscription factormiRNAEstradiolMicroarray analysis techniquesOrganic ChemistryPromoterEstrogensGeneral Medicineendothelial cellsComputer Science ApplicationsCell biologyDNA binding siteChemistryMicroRNAs030104 developmental biology030220 oncology & carcinogenesisCell adhesion molecule bindingTRANSFACTranscriptome
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Molecular chaperones in the brain endothelial barrier: neurotoxicity or neuroprotection?

2019

Brain microvascular endothelial cells (BMECs) interact with astrocytes and pericytes to form the blood-brain barrier (BBB). Their compromised function alters the BBB integrity, which is associated with early events in the pathogenesis of cancer, neurodegenerative diseases, and epilepsy. Interestingly, these conditions also induce the expression of heat shock proteins (HSPs). Here we review the contribution of major HSP families to BMEC and BBB function. Although investigators mainly report protective effects of HSPs in brain, contrasted results were obtained in BMEC, which depend both on the HSP and on its location, intra- or extracellular. The therapeutic potential of HSPs must be scrupulo…

0301 basic medicineReviewBiochemistryNeuroprotectionPathogenesis03 medical and health sciencesEpilepsy0302 clinical medicineHeat shock proteinGeneticsExtracellularMedicineAnimalsHumansMolecular Biologybusiness.industryNeurotoxicityCancerBrainEndothelial CellsBiological TransportCell Differentiationmedicine.diseaseNeuroprotectionCell biology030104 developmental biologyBlood-Brain Barriercardiovascular systembusiness030217 neurology & neurosurgeryFunction (biology)BiotechnologyMolecular ChaperonesFASEB journal : official publication of the Federation of American Societies for Experimental Biology
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Vascular ageing and endothelial cell senescence: Molecular mechanisms of physiology and diseases

2016

Ageing leads to a progressive deterioration of structure and function of all organs over the time. During this process endothelial cells undergo senescence and manifest significant changes in their properties, resulting in impairment of the vascular functionality and neo-angiogenic capability. This ageing-dependent impairment of endothelial functions is considered a key factor contributing to vascular dysfunctions, which is responsible of several age-related diseases of the vascular system and other organs. Several mechanisms have been described to control ageing-related endothelial cell senescence including microRNAs, mitochondrial dysfunction and micro environmental stressors, such as hyp…

0301 basic medicineSenescenceAgingEndotheliump73Biologymedicine.disease_cause03 medical and health sciencesEndotheliocyte; Endothelium; Hypoxia; MicroRNAs; Mitochondrial dysfunction; Oxidative stress; P53 family; P73; Transglutaminase 2; VEGF; Aging; Developmental BiologymicroRNAmedicineAnimalsHumansSettore MED/05 - Patologia ClinicaEndotheliocyte; Endothelium; Hypoxia; Mitochondrial dysfunction; Oxidative stress; Transglutaminase 2; VEGF; microRNAs; p53 family; p73Vascular DiseasesEndotheliumHypoxiaCellular SenescenceEndothelial CellsMicroRNASettore MED/23 - Chirurgia CardiacaBECN1Hypoxia (medical)VEGFMitochondriamicroRNAsEndothelial stem cellTransglutaminase 2030104 developmental biologymedicine.anatomical_structureOxidative stressAgeingImmunologyOxidative stremedicine.symptomMitochondrial dysfunctionp53 familyEndotheliocyteNeuroscienceOxidative stressDevelopmental BiologyMechanisms of Ageing and Development
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The angiotensin‐(1‐7)/Mas receptor axis protects from endothelial cell senescence via klotho and Nrf2 activation

2019

Endothelial cell senescence is a hallmark of vascular aging that predisposes to vascular disease. We aimed to explore the capacity of the renin-angiotensin system (RAS) heptapeptide angiotensin (Ang)-(1-7) to counteract human endothelial cell senescence and to identify intracellular pathways mediating its potential protective action. In human umbilical vein endothelial cell (HUVEC) cultures, Ang II promoted cell senescence, as revealed by the enhancement in senescence-associated galactosidase (SA-β-gal+) positive staining, total and telomeric DNA damage, adhesion molecule expression, and human mononuclear adhesion to HUVEC monolayers. By activating the G protein-coupled receptor Mas, Ang-(1…

0301 basic medicineSenescenceAgingNF-E2-Related Factor 2medicine.medical_treatmentCellBiologyKlothoReceptors G-Protein-Coupled03 medical and health sciences0302 clinical medicineheme oxygenase‐1medicineHuman Umbilical Vein Endothelial CellsHumansReceptorKlothoKlotho ProteinsCells CulturedCellular SenescenceGlucuronidaseangiotensin‐(1‐7)Original PaperNuclear factor (erythroid-derived 2)-like 2nuclear factor (erythroid‐derived 2)‐like 2Vascular agingCell BiologyAngiotensin-(1-7)FarmaciaOriginal PapersPeptide FragmentsEndothelial senescenceCell biologyEndothelial stem cell030104 developmental biologyCytokinemedicine.anatomical_structureHeme oxygenase-1cardiovascular systemHuman umbilical vein endothelial cellAngiotensin I030217 neurology & neurosurgeryIntracellular
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