首页 | 本学科首页   官方微博 | 高级检索  
     


VEGF‐Functionalized Polyelectrolyte Multilayers as Proangiogenic Prosthetic Coatings
Authors:Sabine Müller  Géraldine Koenig  Anne Charpiot  Christian Debry  Jean‐Claude Voegel  Philippe Lavalle  Dominique Vautier
Affiliation:1. Institut National de la Santé et de la Recherche Médicale INSERM Unité 595 11, rue Humann, 67085 Strasbourg Cedex (France);2. Odontology Faculty, Louis Pasteur University 1, Place de L'h?pital, 67000 Strasbourg (France);3. Department of Otolaryngology‐Head and Neck Surgery Hautepierre Hospital Avenue Molière, BP49, 67098 Strasbourg Cedex (France);4. Equipe de Recherche Technologique ERT 10‐61 11, rue Humann, 67085 Strasbourg Cedex (France)
Abstract:Stimulation of transprosthetic vascularization represents an interesting strategy in implantology to allow rapid tissue integration and finally to avoid prosthetic rejection. To achieve this goal, we modified the surface of porous titanium implants with polyelectrolyte multilayer (PEM) films functionalized with vascular endothelial growth factor (VEGF). Among the two PEM systems investigated, poly(L‐lysine)/poly(L‐glutamic acid) (PLL/PGA) and poly(allylamine hydrochloride)/poly(sodium 4‐styrenesulfonate) (PAH/PSS), the (PAH/PSS)4 architecture was selected to functionalize porous titanium, both for its high efficiency to adsorb VEGF and for its biocompatibility toward endothelial cells. In an original way, we unambiguously demonstrated that VEGF adsorbed on (PAH/PSS)4 maintains its bioactivity in vitro and stimulates endothelial cells proliferation. This effect was correlated with specific activation of intracellular signaling pathways induced by successive phosphorylation of the endothelial VEGF receptor VEGFR2 and mitogen‐activated protein kinases (MAPK) ERK1/2. By clearly demonstrating the proangiogenic activity of the VEGF‐PEM coating in vitro, the present study constitutes a first step toward in vivo application.
Keywords:Biofunctionalization  Polyelectrolyte multilayers  Titanium  Porous materials  Biocompatible materials
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号