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RESEARCH PRODUCT
A BMP7 Variant Inhibits Tumor Angiogenesis In Vitro and In Vivo through Direct Modulation of Endothelial Cell Biology
Lisa WyssLiliana MorganteMatilde TodaroCourtney M. TateScott William RowlinsonGiorgio StassiLucia Ricci-vitianiQuintino Giorgio D'alessandrisEliza VakanaAntonina BenfanteWayne BlosserStefano GiannettiJacquelyn Mc EntireMaria Luisa ColoritoLuigi Maria LaroccaLouis StancatoRuggero De MariaRoberto Pallinisubject
Genetics and Molecular Biology (all)MaleVascular Endothelial Growth Factor AFibroblast Growth FactorAngiogenesisBone Morphogenetic Protein 7Nudelcsh:MedicineSmad ProteinsFibroblast growth factorBiochemistryNeovascularizationMiceCell Movementlcsh:ScienceBMP7 Angiogenesis TumorTumorMultidisciplinaryCell DeathNeovascularization PathologicMedicine (all)Cell migrationCell biologyEndothelial stem cellSettore MED/26 - NEUROLOGIAVascular endothelial growth factor ADrug CombinationsAdipose TissueAdipose Tissue; Animals; Bone Morphogenetic Protein 7; Cell Death; Cell Line Tumor; Cell Movement; Cell Proliferation; Collagen; Drug Combinations; Endothelial Cells; Fibroblast Growth Factor 2; Glioblastoma; Human Umbilical Vein Endothelial Cells; Humans; Laminin; Male; Mice Nude; Neoplastic Stem Cells; Neovascularization Pathologic; Neovascularization Physiologic; Proteoglycans; Receptor Fibroblast Growth Factor Type 1; Signal Transduction; Smad Proteins; Vascular Endothelial Growth Factor A; Vascular Endothelial Growth Factor Receptor-2; Xenograft Model Antitumor Assays; Biochemistry Genetics and Molecular Biology (all); Agricultural and Biological Sciences (all)Neoplastic Stem CellsFibroblast Growth Factor 2ProteoglycansCollagenmedicine.symptomReceptorType 1Research ArticleSignal TransductionMice NudeNeovascularization PhysiologicBMP7BiologyCell LineSettore MED/04 - PATOLOGIA GENERALECell Line TumormedicineHuman Umbilical Vein Endothelial CellsAnimalsHumansAgricultural and Biological Sciences (all); Biochemistry Genetics and Molecular Biology (all); Medicine (all)Receptor Fibroblast Growth Factor Type 1PhysiologicNeovascularizationCell ProliferationPathologicMatrigelBiochemistry Genetics and Molecular Biology (all)lcsh:REndothelial CellsKinase insert domain receptorVascular Endothelial Growth Factor Receptor-2Xenograft Model Antitumor AssaysAgricultural and Biological Sciences (all)lcsh:QAngiogenesisLamininGlioblastomadescription
Bone morphogenetic proteins (BMPs), members of the TGF-β superfamily, have numerous biological activities including control of growth, differentiation, and vascular development. Using an in vitro co-culture endothelial cord formation assay, we investigated the role of a BMP7 variant (BMP7v) in VEGF, bFGF, and tumor-driven angiogenesis. BMP7v treatment led to disruption of neo-endothelial cord formation and regression of existing VEGF and bFGF cords in vitro. Using a series of tumor cell models capable of driving angiogenesis in vitro, BMP7v treatment completely blocked cord formation. Pre-treatment of endothelial cells with BMP7v significantly reduced their cord forming ability, indicating a direct effect on endothelial cell function. BMP7v activated the canonical SMAD signaling pathway in endothelial cells but targeted gene knockdown using shRNA directed against SMAD4 suggests this pathway is not required to mediate the anti-angiogenic effect. In contrast to SMAD activation, BMP7v selectively decreased ERK and AKT activation, significantly decreased endothelial cell migration and down-regulated expression of critical RTKs involved in VEGF and FGF angiogenic signaling, VEGFR2 and FGFR1 respectively. Importantly, in an in vivo angiogenic plug assay that serves as a measurement of angiogenesis, BMP7v significantly decreased hemoglobin content indicating inhibition of neoangiogenesis. In addition, BMP7v significantly decreased angiogenesis in glioblastoma stem-like cell (GSLC) Matrigel plugs and significantly impaired in vivo growth of a GSLC xenograft with a concomitant reduction in microvessel density. These data support BMP7v as a potent anti-angiogenic molecule that is effective in the context of tumor angiogenesis.
year | journal | country | edition | language |
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2015-04-28 | PLoS ONE |