Search results for "SPROUTING ANGIOGENESIS"

showing 6 items of 6 documents

Sprouting and intussusceptive angiogenesis in postpneumonectomy lung growth: mechanisms of alveolar neovascularization

2013

In most rodents and some other mammals, the removal of one lung results in compensatory growth associated with dramatic angiogenesis and complete restoration of lung capacity. One pivotal mechanism in neoalveolarization is neovascularization, because without angiogenesis new alveoli can not be formed. The aim of this study is to image and analyze three-dimensionally the different patterns of neovascularization seen following pneumonectomy in mice on a sub-micron-scale. C57/BL6 mice underwent a left-sided pneumonectomy. Lungs were harvested at various timepoints after pneumonectomy. Volume analysis by microCT revealed a striking increase of 143 percent in the cardiac lobe 14 days after pneum…

Pathologymedicine.medical_specialtyCancer ResearchAngiogenesisPhysiologymedicine.medical_treatmentClinical BiochemistryCompensatory growth (organ)Neovascularization Physiologic610 Medicine & healthVascular RemodelingBiologyCorrosion CastingNeovascularizationPneumonectomymedicineAnimalsIntussusceptive angiogenesisLung volumesIntussusceptive angiogenesisPneumonectomyCorrosion castLung surgeryTomographySprouting angiogenesisOriginal PaperMicroscopyLungfungiSynchrotron radiation tomographic microscopyAnatomySynchrotron radiation tomographicrespiratory systemIntussusceptive angiogenesis; Pneumonectomy; Septal alveolarization; Corrosion cast; Synchrotron radiation tomographic; Microscopy; Lung surgerySeptal alveolarizationMice Inbred C57BLPulmonary Alveolimedicine.anatomical_structure570 Life sciences; biologysense organsmedicine.symptomSynchrotrons
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Inflammation-Induced Intussusceptive Angiogenesis in Murine Colitis

2010

Intussusceptive angiogenesis is a morphogenetic process that forms new blood vessels by the division of a single blood vessel into two lumens. Here, we show that this process of intraluminal division participates in the inflammation-induced neovascularization associated with chemically induced murine colitis. In studies of both acute (4-7 days) and chronic (28-31 days) colitis, intravital microscopy of intravascular tracers demonstrated a twofold reduction in blood flow velocity. In the acute colitis model, the decreased velocity was associated with marked dilatation of the mucosal plexus. In contrast, chronic inflammation was associated with normal caliber vessels and duplication (and trip…

Pathologymedicine.medical_specialtyHistologyColonAngiogenesisBiologyCorrosion CastingArticleMicrocirculationNeovascularizationMicemedicineAnimalsColitisIntussusceptive angiogenesisEcology Evolution Behavior and SystematicsAcute colitisFluorescent DyesSprouting angiogenesisMice Inbred BALB CMucous MembraneNeovascularization PathologicStaining and LabelingEndothelial CellsColitismedicine.diseaseAdaptation PhysiologicalCapillariesMice Inbred C57BLDisease Models Animalmedicine.anatomical_structureRegional Blood FlowMicroscopy Electron ScanningNanoparticlesInflammation MediatorsAnatomymedicine.symptomIntussusceptionBiotechnologyBlood vesselThe Anatomical Record: Advances in Integrative Anatomy and Evolutionary Biology
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Integrin-dependent and -independent functions of astrocytic fibronectin in retinal angiogenesis

2011

Fibronectin (FN) is a major component of the extracellular matrix and functions in cell adhesion, cell spreading and cell migration. In the retina, FN is transiently expressed and assembled on astrocytes (ACs), which guide sprouting tip cells and deposit a provisional matrix for sprouting angiogenesis. The precise function of FN in retinal angiogenesis is largely unknown. Using genetic tools, we show that astrocytes are the major source of cellular FN during angiogenesis in the mouse retina. Deletion of astrocytic FN reduces radial endothelial migration during vascular plexus formation in a gene dose-dependent manner. This effect correlates with reduced VEGF receptor 2 and PI3K/AKT signalli…

Vascular Endothelial Growth Factor AIntegrinsAngiogenesisIntegrinNeovascularization PhysiologicMice TransgenicExtracellular matrixMicePhosphatidylinositol 3-KinasesCell MovementAnimalsProtein Interaction Domains and MotifsMolecular BiologyResearch ArticlesMice KnockoutSprouting angiogenesisbiologyRetinal VesselsCell migrationKinase insert domain receptorVascular Endothelial Growth Factor Receptor-2Extracellular MatrixFibronectinsCell biologyMice Inbred C57BLFibronectinVascular endothelial growth factor AAstrocytesbiology.proteinHeparitin SulfateOligopeptidesProto-Oncogene Proteins c-aktIntegrin alpha5beta1Signal TransductionDevelopmental BiologyDevelopment
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Capillary enlargement, not sprouting angiogenesis, determines beneficial therapeutic effects and side effects of angiogenic gene therapy.

2010

Aims Currently, it is still unclear which mechanisms drive metabolic benefits after angiogenic gene therapy. The side-effect profile of efficient angiogenic gene therapy is also currently incompletely understood. In this study, the effects of increasing doses of adenoviral (Ad) vascular endothelial growth factor-A (VEGF-A) were evaluated on vascular growth, metabolic benefits, and systemic side effects. Methods and results Adenoviral vascular endothelial growth factor-A or AdLacZ control was injected intramuscularly (109–1011 vp/mL) or intra-arterially (5 × 1011 vp/mL) into rabbit ( n = 102) hindlimb muscles and examined 6 or 14 days later. Blood flow, tissue oedema, metabolic benefits, and…

Vascular Endothelial Growth Factor Amedicine.medical_specialtyAngiogenesisGenetic VectorsNeovascularization PhysiologicEnzyme-Linked Immunosorbent Assayta3111Injections IntramuscularAdenoviridaeNeovascularizationchemistry.chemical_compoundInternal medicinemedicineAnimalsMuscle SkeletalUltrasonography InterventionalSprouting angiogenesisDose-Response Relationship Drugbusiness.industryGene Transfer TechniquesMetabolic acidosisGenetic Therapymedicine.diseaseCapillariesHindlimbVascular endothelial growth factorVascular endothelial growth factor AEndocrinologychemistryLac OperonCirculatory systemRabbitsmedicine.symptomCardiology and Cardiovascular MedicinebusinessPerfusionEuropean heart journal
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Hierarchical imaging and computational analysis of three-dimensional vascular network architecture in the entire postnatal and adult mouse brain

2021

The formation of new blood vessels and the establishment of vascular networks are crucial during brain development, in the adult healthy brain, as well as in various diseases of the central nervous system. Here, we describe a step-by-step protocol for our recently developed method that enables hierarchical imaging and computational analysis of vascular networks in postnatal and adult mouse brains. The different stages of the procedure include resin-based vascular corrosion casting, scanning electron microscopy, synchrotron radiation and desktop microcomputed tomography imaging, and computational network analysis. Combining these methods enables detailed visualization and quantification of t…

Vessel networkBiochemistry & Molecular BiologyBrain developmentBrain vasculatureScanning electron microscopeComputer sciencePoint densityCentral nervous systemVascular volumeGenetics and Molecular BiologyINTUSSUSCEPTIVE ANGIOGENESISINHIBITS TUMOR-GROWTHTortuosityBiochemical Research MethodsSCANNING-ELECTRON-MICROSCOPYGeneral Biochemistry Genetics and Molecular BiologyBLOOD-VESSELSSPROUTING ANGIOGENESIS10180 Clinic for NeurosurgeryNEUROVASCULAR UNIT1300 General Biochemistry Genetics and Molecular Biologymedicine10237 Institute of Biomedical EngineeringComputational analysisAdult stageMICROVASCULAR NETWORKSIntussusceptive angiogenesisSprouting angiogenesisScience & TechnologySTRUCTURAL ADAPTATIONCOCHLEAR VASCULATUREMOLECULAR-MECHANISMS10177 Dermatology Clinic10081 Institute of Veterinary Physiology10124 Institute of Molecular Life SciencesVessel diametermedicine.anatomical_structureVascular network10036 Medical ClinicGeneral Biochemistry570 Life sciences; biologyLife Sciences & BiomedicinePerfusionBiomedical engineering
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Stretch-induced Intussuceptive and Sprouting Angiogenesis in the Chick Chorioallantoic Membrane

2014

Vascular systems grow and remodel in response to not only metabolic needs, but also mechanical influences as well. Here, we investigated the influence of tissue-level mechanical forces on the patterning and structure of the chick chorioallantoic membrane (CAM) microcirculation. A dipole stretch field was applied to the CAM using custom computer-controlled servomotors. The topography of the stretch field was mapped using finite element models. After 3 days of stretch, Sholl analysis of the CAM demonstrated a 7-fold increase in conducting vessel intersections within the stretch field (p 0.05). In contrast, corrosion casting and SEM of the stretch field capillary meshwork demonstrated intense …

animal structuresTime FactorsCapillary actionFinite Element AnalysisNeovascularization PhysiologicChick EmbryoCorrosion CastingBiochemistryMechanotransduction CellularArticleChorioallantoic MembraneChick chorioallantoic membraneMicrocirculationSholl analysisFluorescence microscopeAnimalsIntussusceptive angiogenesisSprouting angiogenesisMicroscopy VideoChemistryMicrocirculationModels CardiovascularCell BiologyAnatomyCapillariesChorioallantoic membraneMicroscopy FluorescenceBiophysicsMicroscopy Electrochemical ScanningStress MechanicalCardiology and Cardiovascular Medicine
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