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ADAM-17 regulates endothelial cell morphology, proliferation, and in vitro angiogenesis.


ABSTRACT: Modulation of angiogenesis is a promising approach for treating a wide variety of human diseases including ischemic heart disease and cancer. In this study, we show that ADAM-17 is an important regulator of several key steps during angiogenesis. Knocking down ADAM-17 expression using lentivirus-delivered siRNA in HUVECs inhibited cell proliferation and the ability of cells to form close contact in two-dimensional cultures. Similarly, ADAM-17 depletion inhibited the ability of HUVECs to form capillary-like networks on top of three-dimensional Matrigel as well as in co-culture with fibroblasts within a three-dimensional scaffold. In mechanistic studies, both baseline and VEGF-induced MMP-2 activation and Matrigel invasion were inhibited by ADAM-17 depletion. Based on our findings we propose that ADAM-17 is part of a novel pro-angiogenic pathway leading to MMP-2 activation and vessel formation.

SUBMITTER: Gooz P 

PROVIDER: S-EPMC2875258 | biostudies-other | 2009 Feb

REPOSITORIES: biostudies-other

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ADAM-17 regulates endothelial cell morphology, proliferation, and in vitro angiogenesis.

Göoz Pal P   Göoz Monika M   Baldys Aleksander A   Hoffman Stanley S  

Biochemical and biophysical research communications 20090114 1


Modulation of angiogenesis is a promising approach for treating a wide variety of human diseases including ischemic heart disease and cancer. In this study, we show that ADAM-17 is an important regulator of several key steps during angiogenesis. Knocking down ADAM-17 expression using lentivirus-delivered siRNA in HUVECs inhibited cell proliferation and the ability of cells to form close contact in two-dimensional cultures. Similarly, ADAM-17 depletion inhibited the ability of HUVECs to form capi  ...[more]

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