| Literature DB >> 23592806 |
Kim Van der Heiden1, Frank J H Gijsen, Andrew Narracott, Sarah Hsiao, Ian Halliday, Julian Gunn, Jolanda J Wentzel, Paul C Evans.
Abstract
Stent deployment following balloon angioplasty is used routinely to treat coronary artery disease. These interventions cause damage and loss of endothelial cells (EC), and thus promote in-stent thrombosis and restenosis. Injured arteries are repaired (intrinsically) by locally derived EC and by circulating endothelial progenitor cells which migrate and proliferate to re-populate denuded regions. However, re-endothelialization is not always complete and often dysfunctional. Moreover, the molecular and biomechanical mechanisms that control EC repair and function in stented segments are poorly understood. Here, we propose that stents modify endothelial repair processes, in part, by altering fluid shear stress, a mechanical force that influences EC migration and proliferation. A more detailed understanding of the biomechanical processes that control endothelial healing would provide a platform for the development of novel therapeutic approaches to minimize damage and promote vascular repair in stented arteries.Entities:
Keywords: Endothelial cell; Shear stress; Stent; Vascular repair
Mesh:
Year: 2013 PMID: 23592806 DOI: 10.1093/cvr/cvt090
Source DB: PubMed Journal: Cardiovasc Res ISSN: 0008-6363 Impact factor: 10.787