Search results for "PERICYTE"

showing 4 items of 14 documents

Vascular endothelial growth factor-A and platelet-derived growth factor-B combination gene therapy prolongs angiogenic effects via recruitment of int…

2008

Vessel stabilization and the inhibition of side effects such as tissue edema are essential in angiogenic gene therapy. Thus, combination gene transfers stimulating both endothelial cell and pericyte proliferation have become of interest. However, there is currently little data to support combination gene transfer in large animal models. In this study, we evaluated the potential advantages of such a strategy by combining the transfer of adenoviral (Ad) vascular endothelial growth factor (VEGF)-A and platelet-derived growth factor (PDGF)-B into rabbit hindlimb skeletal muscle. AdLacZ alone or in combination with AdVEGF-A were used as controls. Contrast-enhanced ultrasound, modified Miles assa…

Platelet-derived growth factorbiologyPhysiologyAngiogenesisGrowth factormedicine.medical_treatmentVascular permeabilitygrowth factorkasvutekijägeeniterapiaVascular endothelial growth factorchemistry.chemical_compoundVascular endothelial growth factor Amedicine.anatomical_structurechemistryImmunologybiology.proteinCancer researchmedicinePericyteCardiology and Cardiovascular MedicinePlatelet-derived growth factor receptor
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Microphthalmia, persistent hyperplastic hyaloid vasculature and lens anomalies following overexpression of VEGF-A188 from the αA-crystallin promoter

2007

Purpose During growth of the embryonic eye, dose- and site-specific expression of heparin-binding growth factors is critical for the formation of an appropriate vascular supply. Overexpression of vascular endothelial growth factor-A188 (VEGF-A188), a strongly heparin-binding, endothelial-specific mitogen, leads to severe disturbance of vascular and overall ocular morphology. This study aimed to evaluate the effects of VEGF-A188 overexpression on growth of ocular tissue components. Methods Stereological and immunohistochemical methods were employed to identify the vascular profiles, ocular tissue proportions, and cell types in VEGF-A188 transgenic mice and compare them with wild-type mice. R…

Vascular Endothelial Growth Factor Agenetic structuresMyocytes Smooth MuscleCell CountMice TransgenicEyealpha-Crystallin A ChainCongenital AbnormalitiesCorneaMiceLens CrystallineAnimalsMicrophthalmosVascular DiseasesPromoter Regions GeneticHyperplasiaEndothelial CellsHypertrophyEmbryo MammalianAntigens DifferentiationImmunohistochemistryeye diseasesActinsDisease Models AnimalAnimals NewbornBlood Vesselssense organsPericytesHeparan Sulfate ProteoglycansResearch ArticleMolecular Vision
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In vitro models of blood-brain barrier set by co-culturing primary pericytes, astrocytes and brain capillary endothelial cells

2010

The blood-brain barrier (BBB) is formed by brain capillary endothelial cells (BCECs) under the effects of the brain microenvironment. BCECs are sealed together by tight junctions (TJs) [2]. We previously found that occludin, one of the main TJ components, is correctly localized at the cell periphery only if BCECs are co-cultured with neurons/astrocytes [1-2]. Moreover, pericytes induce PLA2 protein expression through activation of PKCalpha and the MAPK/ERK cascade in immortalized GP8.3 endothelial cells [3]. In the present work, we analyzed the effects of pericytes and/or astrocytes on survival and differentiation of primary endothelial cells, in the presence of a serum-free medium. To test…

astrocytepericyteSettore BIO/10 - Biochimicaendothelial cellBlood-brain barrier
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Developmental and tumoral vascularization is regulated by G protein-coupled receptor kinase 2

2012

Tumor vessel dysfunction is a pivotal event in cancer progression. Using an in vivo neovascularization model, we identified G protein–coupled receptor kinase 2 (GRK2) as a key angiogenesis regulator. An impaired angiogenic response involving immature vessels was observed in mice hemizygous for Grk2 or in animals with endothelium-specific Grk2 silencing. ECs isolated from these animals displayed intrinsic alterations in migration, TGF-β signaling, and formation of tubular networks. Remarkably, an altered pattern of vessel growth and maturation was detected in postnatal retinas from endothelium-specific Grk2 knockout animals. Mouse embryos with systemic or endothelium-selective Grk2 ablation …

medicine.medical_specialtyG-Protein-Coupled Receptor Kinase 2Angiogenic SwitchAngiogenesisMedicinaActivin Receptors Type IIMelanoma ExperimentalReceptor Transforming Growth Factor-beta Type INeovascularization PhysiologicProtein Serine-Threonine KinasesBiologyMural cellGrk2Transforming Growth Factor beta1NeovascularizationMiceDownregulation and upregulationCell MovementPregnancyInternal medicinemedicineAnimalsHumansCell ProliferationHemizygoteMice KnockoutG protein-coupled receptor kinaseTumorNeovascularization PathologicEndothelial CellsRetinal VesselsG proteinGeneral MedicineCell biologyEndocrinologymedicine.anatomical_structurecardiovascular systemFemalePericyteSignal transductionmedicine.symptomActivin Receptors Type IReceptors Transforming Growth Factor betaSignal TransductionResearch Article
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