Gingival fibroblasts protect against experimental abdominal aortic aneurysm development and rupture through tissue inhibitor of metalloproteinase-1 production
Cardiovascular Research

Abstract
Abdominal aortic aneurysm (AAA), frequently diagnosed in old patients, is characterized by chronic inflammation, vascular cell apoptosis and metalloproteinase-mediated extracellular matrix destruction. Despite improvement in the understanding of the pathophysiology of aortic aneurysm, no pharmacological treatment is yet available to limit dilatation and/or rupture. We previously reported that human gingival fibroblasts (GFs) can reduce carotid artery dilatation in a rabbit model of elastase-induced aneurysm. Here, we sought to investigate the mechanisms of GF-mediated vascular protection in two different models of aortic aneurysm growth and rupture in mice.
GF cell-based therapy is a promising approach to inhibit aneurysm progression and rupture through local production of Timp-1.
Contributors

Andreas Giraud
Author

Lynda Zeboudj
Author

Marie Vandestienne
Author

Jérémie Joffre
Author

Bruno Esposito
Author

Stéphane Potteaux
Author

José Vilar
Author

Daniela Cabuzu
Author

Johannes Kluwe
Author

Sylvie Seguier
Author

Alain Tedgui
Author

Ziad Mallat
Author

Antoine Lafont
Author
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