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Research Article Free access | 10.1172/JCI119148

Impaired arterial neointima formation in mice with disruption of the plasminogen gene.

P Carmeliet, L Moons, V Ploplis, E Plow, and D Collen

Center for Transgene Technology and Gene Therapy, Flanders Interuniversity Institute for Biotechnology, Leuven, Belgium.

Find articles by Carmeliet, P. in: JCI | PubMed | Google Scholar

Center for Transgene Technology and Gene Therapy, Flanders Interuniversity Institute for Biotechnology, Leuven, Belgium.

Find articles by Moons, L. in: JCI | PubMed | Google Scholar

Center for Transgene Technology and Gene Therapy, Flanders Interuniversity Institute for Biotechnology, Leuven, Belgium.

Find articles by Ploplis, V. in: JCI | PubMed | Google Scholar

Center for Transgene Technology and Gene Therapy, Flanders Interuniversity Institute for Biotechnology, Leuven, Belgium.

Find articles by Plow, E. in: JCI | PubMed | Google Scholar

Center for Transgene Technology and Gene Therapy, Flanders Interuniversity Institute for Biotechnology, Leuven, Belgium.

Find articles by Collen, D. in: JCI | PubMed | Google Scholar

Published January 15, 1997 - More info

Published in Volume 99, Issue 2 on January 15, 1997
J Clin Invest. 1997;99(2):200–208. https://doi.org/10.1172/JCI119148.
© 1997 The American Society for Clinical Investigation
Published January 15, 1997 - Version history
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Abstract

To define the role of plasminogen (Plg) in the smooth muscle cell response after arterial wall injury, neointima formation was evaluated after electric injury of the femoral artery in plasminogen-deficient (Plg-/-) mice. The injury destroyed all medial smooth muscle cells, denuded the injured segment of intact endothelium, and induced transient platelet-rich mural thrombosis. In wild-type (Plg+/+) mice, vascular wound healing was characterized by lysis of the thrombus, transient infiltration of inflammatory cells, and progressive removal of necrotic debris and thrombosis. Topographic analysis revealed repopulation of the media and accumulation in the neointima of smooth muscle cells originating from the noninjured borders, which progressed into the necrotic center. In Plg-/- mice, wound healing was significantly impaired with delayed removal of necrotic debris, reduced leucocyte infiltration and smooth muscle cell accumulation, and decreased neointima formation. Smooth muscle cells accumulated at the uninjured borders, but failed to migrate into the necrotic center. Proliferation of smooth muscle cells was not affected by Plg deficiency. Evans blue staining revealed no genotypic differences in reendothelialization. Thus, Plg plays a significant role in vascular wound healing and arterial neointima formation after injury, most likely by affecting cellular migration.

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Referenced in 3 patents
20 readers on Mendeley
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