Reduced angiogenic responses in adult endoglin heterozygous mice

Mirjana Jerkić(Universidad de Salamanca), Alicia Rodríguez‐Barbero(Universidad de Salamanca), Marta Prieto(Universidad de Salamanca), Mourad Toporsian(University of Toronto), Miguel Pericacho(Universidad de Salamanca), Juan V. Rivas‐Elena(Universidad de Salamanca), Juana Obreo(Universidad de Salamanca), An Wang(Hospital for Sick Children), Fernando Pérez‐Barriocanal(Universidad de Salamanca), M. Arévalo(Universidad de Salamanca)
Cardiovascular Research
January 11, 2006
Cited by 123

Abstract

OBJECTIVE: To determine if angiogenesis is altered in adult Endoglin heterozygous (Eng(+/-)) mice, the animal model for the vascular disorder hereditary hemorrhagic telangiectasia type 1 (HHT1). METHODS: Primary cultures of endothelial cells were generated from Eng(+/-) and Eng(+/+) mice and analyzed for proliferation, migration, and ability to form capillary-like tubes. Endothelial cells derived from umbilical veins of newborns (HUVEC) with an HHT1 genotype were also tested for capillary formation. Two in vivo models of angiogenesis were tested in the Eng(+/-) and Eng(+/+) mice: Matrigel implant-dependent angiogenesis and reperfusion following hindlimb ischemia. RESULTS: The Eng(+/-) endothelial cells displayed significantly reduced proliferation and migration, increased collagen production, and decreased NO synthase expression and vascular endothelial growth factor (VEGF) secretion. They also showed impaired capillary tube formation in vitro, as did the HHT1 HUVEC. These endothelial cell-specific abnormalities were associated with impaired Matrigel-dependent capillary tube formation in vivo and delayed reperfusion following hindlimb ischemia. CONCLUSIONS: Although vascular development is normal in Eng(+/-) mice, angiogenic abnormalities were observed in the adult mice and their isolated endothelial cells. These results suggest that a normal level of endoglin is required for full angiogenic activity.


Related Papers

No related papers found

Powered by citation graph analysis