0000000000379138

AUTHOR

Lino F. Miele

showing 10 related works from this author

Vascular Microarchitecture of Murine Colitis-Associated Lymphoid Angiogenesis

2009

In permissive tissues, such as the gut and synovium, chronic inflammation can result in the ectopic development of anatomic structures that resemble lymph nodes. These inflammation-induced structures, termed lymphoid neogenesis or tertiary lymphoid organs, may reflect differential stromal responsiveness to the process of lymphoid neogenesis. To investigate the structural reorganization of the microcirculation involved in colonic lymphoid neogenesis, we studied a murine model of dextran sodium sulfate (DSS)-induced colitis. Standard 2-dimensional histology demonstrated both submucosal and intramucosal lymphoid structures in DSS-induced colitis. A spatial frequency analysis of serial histolog…

Colitis LymphocyticPathologymedicine.medical_specialtyHistologyStromal cellLymphoid TissueAngiogenesisBiologyArticleMicrocirculationMicemedicineAnimalsIntestinal MucosaColoring AgentsEcology Evolution Behavior and SystematicsMicrodissectionMicroscopy ConfocalNeovascularization PathologicStaining and LabelingMicrocirculationDextran SulfateHistologyMatrix MetalloproteinasesCapillariesMice Inbred C57BLDisease Models AnimalLymphatic systemRegional Blood FlowCytokinesLymphChemokinesAnatomyIntravital microscopyBiotechnologyThe Anatomical Record: Advances in Integrative Anatomy and Evolutionary Biology
researchProduct

Computational flow dynamics in a geometric model of intussusceptive angiogenesis.

2009

Intussusceptive angiogenesis is a process that forms new blood vessels by the intraluminal division of a single blood vessel into two lumens. Referred to as nonsprouting or intussusceptive angiogenesis, this angiogenic process has been described in morphogenesis and chronic inflammation. Mechanical forces are relevant to the structural changes associated with intussusceptive angiogenesis because of the growing evidence that physiologic forces influence gene transcription. To provide a detailed analysis of the spatial distribution of physiologic shear stresses, we developed a 3D finite element model of the intraluminal intussusceptive pillar. Based on geometries observed in adult intussuscep…

Materials scienceAngiogenesisFlow (psychology)BiochemistryModels BiologicalArticleMicrocirculationMicemedicineShear strengthShear stressAnimalsComputer SimulationIntussusceptive angiogenesisMice Inbred BALB CNeovascularization PathologicComputational BiologyCell BiologyAnatomyColitisBiomechanical PhenomenaDisease Models Animalmedicine.anatomical_structureShear (geology)Trinitrobenzenesulfonic AcidBlood CirculationBiophysicsBlood Vesselssense organsStress MechanicalCardiology and Cardiovascular MedicineShear StrengthBlood vesselMicrovascular research
researchProduct

Pulmonary Mechanics Suggest Mechanical Forces Trigger Neoalveolarization In A Murine Model Of Compensatory Lung Growth

2011

Pulmonary mechanicsPathologymedicine.medical_specialtyLungmedicine.anatomical_structurebusiness.industryMurine modelMedicineSurgerybusinessJournal of Surgical Research
researchProduct

Angiogenesis in Wounds Treated by Microdeformational Wound Therapy.

2011

BACKGROUND:: Mechanical forces play an important role in tissue neovascularization and are a constituent part of modern wound therapies. The mechanisms by which vacuum assisted closure (VAC) modulates wound angiogenesis are still largely unknown. OBJECTIVE:: To investigate how VAC treatment affects wound hypoxia and related profiles of angiogenic factors as well as to identify the anatomical characteristics of the resultant, newly formed vessels. METHODS:: Wound neovascularization was evaluated by morphometric analysis of CD31-stained wound cross-sections as well as by corrosion casting analysis. Wound hypoxia and mRNA expression of HIF-1α and associated angiogenic factors were evaluated by…

MaleVascular Endothelial Growth Factor APathologymedicine.medical_specialtyWound therapyAngiogenesismedicine.medical_treatmentNeovascularization PhysiologicOcclusive DressingsArticleNeovascularizationMiceNegative-pressure wound therapymedicineAnimalsSkinWound Healingintegumentary systemReverse Transcriptase Polymerase Chain Reactionbusiness.industryGranulation tissueBiomechanical PhenomenaMice Inbred C57BLOxygenPlatelet Endothelial Cell Adhesion Molecule-1Occlusive dressingVascular endothelial growth factor Amedicine.anatomical_structureMicrovesselsGranulation TissueCancer researchSurgerymedicine.symptombusinessWound healingNegative-Pressure Wound Therapy
researchProduct

Blood flow patterns spatially associated with platelet aggregates in murine colitis.

2009

In the normal murine mucosal plexus, blood flow is generally smooth and continuous. In inflammatory conditions, such as chemically-induced murine colitis, the mucosal plexus demonstrates markedly abnormal flow patterns. The inflamed mucosal plexus is associated with widely variable blood flow velocity as well as discontinuous and even bidirectional flow. To investigate the mechanisms responsible for these blood flow patterns, we used intravital microscopic examination of blood flow within the murine mucosal plexus during dextran sodium sulphate-and trinitrobenzenesulfonic acid-induced colitis. The blood flow patterns within the mucosal plexus demonstrated flow exclusion in 18% of the vessel…

Blood PlateletsPathologymedicine.medical_specialtyHistologyPlatelet AggregationInterleukin-1betaBiologyArticleMicrocirculationchemistry.chemical_compoundMiceIntestinal mucosamedicineAnimalsPlateletColitisIntestinal MucosaEcology Evolution Behavior and SystematicsPlexusMice Inbred BALB CGene Expression ProfilingMicrocirculationDextran SulfateBlood flowmedicine.diseaseColitisMice Inbred C57BLDextranchemistryTrinitrobenzenesulfonic AcidRegional Blood FlowAcute DiseaseEndothelium VascularAnatomyChemokinesIntravital microscopyBiotechnologyAnatomical record (Hoboken, N.J. : 2007)
researchProduct

QS280. Mesoscopic Traffic Flow Theory Characterizes Microhemodynamics in Chemically-Induced Murine Colitis

2009

PhysicsMesoscopic physicsBiophysicsMurine colitisSurgeryJournal of Surgical Research
researchProduct

Spatial calibration of structured illumination fluorescence microscopy using capillary tissue phantoms.

2008

Quantitative assessment of microvascular structure is relevant to the investigations of ischemic injury, reparative angiogenesis and tumor revascularization. In light microscopy applications, thick tissue specimens are necessary to characterize microvascular networks; however, thick tissue leads to image distortions due to out-of-focus light. Structured illumination confocal microscopy is an optical sectioning technique that improves contrast and resolution by using a grid pattern to identify the plane-of-focus within the specimen. Because structured illumination can be applied to wide-field (nonscanning) microscopes, the microcirculation can be studied by sequential intravital and confocal…

MaleHistologyMaterials scienceMicroscopeOptical sectioningSilicon dioxideArticlelaw.inventionchemistry.chemical_compoundMiceOpticslawConfocal microscopyMicroscopyFluorescence microscopeImage Processing Computer-AssistedAnimalsInstrumentationMicroscopy Confocalbusiness.industryPhantoms ImagingMicrocirculationResolution (electron density)CarbocyaninesSilicon DioxideMicrospheresCapillariesMice Inbred C57BLMedical Laboratory TechnologychemistryMicroscopy FluorescenceNonlinear DynamicsLight sheet fluorescence microscopyData Interpretation StatisticalCalibrationMicrovesselsAnatomybusinessSoftwareMicroscopy research and technique
researchProduct

Blood flow shapes intravascular pillar geometry in the chick chorioallantoic membrane.

2010

The relative contribution of blood flow to vessel structure remains a fundamental question in biology. To define the influence of intravascular flow fields, we studied tissue islands--here defined as intravascular pillars--in the chick chorioallantoic membrane. Pillars comprised 0.02 to 0.5% of the vascular system in 2-dimensional projection and were predominantly observed at vessel bifurcations. The bifurcation angle was generally inversely related to the length of the pillar (R = -0.47, P .05). 3-dimensional computational flow simulations indicated that the intravascular pillars were located in regions of low shear stress. Both wide-angle and acute-angle models mapped the pillars to regio…

HistologyResearchFlow (psychology)PillarBlood flowAnatomyFlow modelingPathology and Forensic MedicineChick chorioallantoic membraneShear (sheet metal)Shear stressBiophysicssense organsBifurcation angleDevelopmental BiologyJournal of angiogenesis research
researchProduct

Cross-circulation and Cell Distribution Kinetics in Parabiotic Mice

2011

Blood-borne nucleated cells participate not only in inflammation, but in tissue repair and regeneration. Because progenitor and stem cell populations have a low concentration in the blood, the circulation kinetics and tissue distribution of these cells is largely unknown. An important approach to tracking cell lineage is the use of fluorescent tracers and parabiotic models of cross-circulation. Here, we investigated the cross-circulation and cell distribution kinetics of C57/B6 GFP(+)/wild-type parabionts. Flow cytometry analysis of the peripheral blood after parabiosis demonstrated no evidence for a "parabiotic barrier" based on cell size or surface characterstics; all peripheral blood cel…

Time FactorsPhysiologyParabiosisT-LymphocytesClinical BiochemistryGreen Fluorescent ProteinsParabiosisMice TransgenicBiologyArticleFlow cytometryMiceNucleated cellWeight LossmedicineAnimalsPeripheral blood cellWhole bloodmedicine.diagnostic_testBehavior AnimalCell BiologyMolecular biologyMice Inbred C57BLLymphatic systemGene Expression RegulationImmunologyLymphStem cell
researchProduct

Dynamic determination of oxygenation and lung compliance in murine pneumonectomy.

2011

Thoracic surgical procedures in mice have been applied to a wide range of investigations, but little is known about the murine physiologic response to pulmonary surgery. Using continuous arterial oximetry monitoring and the FlexiVent murine ventilator, the authors investigated the effect of anesthesia and pneumonectomy on mouse oxygen saturation and lung mechanics. Sedation resulted in a dose-dependent decline of oxygen saturation that ranged from 55% to 82%. Oxygen saturation was restored by mechanical ventilation with increased rate and tidal volumes. In the mouse strain studied, optimal ventilatory rates were a rate of 200/minute and a tidal volume of 10 mL/kg. Sustained inflation pressu…

Pulmonary and Respiratory Medicinemedicine.medical_treatmentClinical BiochemistryPulmonary complianceArticlePositive-Pressure RespirationPneumonectomyMiceTidal VolumeMedicineAnimalsLung volumesAnesthesiaPneumonectomyMolecular BiologyLungLung ComplianceTidal volumeOxygen saturation (medicine)Mechanical ventilationLungbusiness.industryTotal Lung CapacityOxygenationrespiratory systemRespiration ArtificialMice Inbred C57BLOxygenmedicine.anatomical_structureAnesthesiabusinessLung Volume MeasurementsExperimental lung research
researchProduct