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A BMP7 Variant Inhibits Tumor Angiogenesis In Vitro and In Vivo through Direct Modulation of Endothelial Cell Biology

  • CM Tate
  • , J Mc Entire
  • , R Pallini
  • , E Vakana
  • , L Wyss
  • , W Blosser
  • , L Ricci-Vitiani
  • , Quintino Giorgio D'Alessandris
  • , L Morgante
  • , Stefano Giannetti
  • , LM Larocca
  • , M Todaro
  • , A Benfante
  • , ML Colorito
  • , G Stassi
  • , Ruggero De Maria Marchiano
  • , S Rowlinson
  • , L. Stancato

Research output: Contribution to journalArticle

Abstract

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 endo- thelial 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 acti- vation, BMP7v selectively decreased ERK and AKT activation, significantly decreased en- dothelial 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.
Original languageEnglish
Pages (from-to)N/A-N/A
Number of pages20
JournalPLoS One
Issue number10(4)
DOIs
Publication statusPublished - 2015

All Science Journal Classification (ASJC) codes

  • General

Keywords

  • glioblastoma

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