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来自纤连蛋白羧基末端肝素结合结构域的肽FN-C/H-V的光反应类似物支持内皮细胞在生物材料表面的黏附和铺展。

Photoreactive analog of peptide FN-C/H-V from the carboxy-terminal heparin-binding domains of fibronectin supports endothelial cell adhesion and spreading on biomaterial surfaces.

作者信息

Huebsch J B, Fields G B, Triebes T G, Mooradian D L

机构信息

University of Minnesota, Department of Laboratory Medicine, Minneapolis 55455, USA.

出版信息

J Biomed Mater Res. 1996 Aug;31(4):555-67. doi: 10.1002/(SICI)1097-4636(199608)31:4<555::AID-JBM16>3.0.CO;2-F.

Abstract

The extracellular matrix protein fibronectin (FN) plays an important role in cell adhesion, spreading, and motility. Several cell-adhesion promoting domains exist within fibronectin, and peptide sequences from these domains have been shown to play an important role in cell interactions with fibronectin. Recently, a peptide sequence (FN-C/H-V) from the 33/66 kD carboxy-terminal heparin-binding domains of fibronectin was shown to promote the adhesion and spreading of vascular endothelial cells in vitro. Endothelial cell spreading on this peptide was followed by cytoskeletal reorganization, focal contact formation, and, ultimately, cell migration. In the current study, a photoreactive analog of FN-C/H-V (ASD-V) was generated using a heterobifunctional photoreactive crosslinking agent, sulfosuccinimidyl 2-(pazidosalicylamido) ethyl-1,3'-dithio-propionate. ASD-V was then covalently coupled to polystyrene (PS) and polyethylene terephthalate film (PET) in order to assess the utility of ASD-V for preparing biomaterial surfaces with endothelial cell-adhesion promoting properties. The effects of pre-adsorption time and initial coating concentration on the efficiency of ASD-V coupling to PS and to PET were examined. Contact angle measurements and atomic force microscopy were used to characterize ASD-V-modified surfaces. Finally, the adhesion and spreading of vascular endothelial cells on ASD-V-modified surfaces was assessed. Our results suggest that photoreactive peptides are an effective and convenient means of modifying biomaterial surfaces to impart adhesion-promoting properties and that ASD-V, when coupled to PS and PET, promotes endothelial cell adhesion and spreading and may therefore be useful as a biomaterial surface modification in applications where re-endothelialization is desired (e.g., autologous endothelial seeding of vascular grafts, or transplantation of genetically engineered endothelial cells via polymer-coated stents.

摘要

细胞外基质蛋白纤连蛋白(FN)在细胞黏附、铺展和迁移中发挥着重要作用。纤连蛋白内存在多个促进细胞黏附的结构域,这些结构域的肽序列已被证明在细胞与纤连蛋白的相互作用中发挥重要作用。最近,来自纤连蛋白33/66 kD羧基末端肝素结合结构域的一个肽序列(FN-C/H-V)被证明在体外可促进血管内皮细胞的黏附与铺展。内皮细胞在该肽上铺展后会发生细胞骨架重排、粘着斑形成,最终导致细胞迁移。在本研究中,使用异双功能光反应性交联剂磺基琥珀酰亚胺2-(对叠氮水杨酰胺基)乙基-1,3'-二硫代丙酸酯制备了FN-C/H-V的光反应类似物(ASD-V)。然后将ASD-V共价偶联到聚苯乙烯(PS)和聚对苯二甲酸乙二酯薄膜(PET)上,以评估ASD-V在制备具有促进内皮细胞黏附特性的生物材料表面方面的效用。研究了预吸附时间和初始包被浓度对ASD-V与PS及PET偶联效率的影响。通过接触角测量和原子力显微镜对ASD-V修饰的表面进行表征。最后,评估了血管内皮细胞在ASD-V修饰表面上的黏附与铺展情况。我们的结果表明,光反应性肽是修饰生物材料表面以赋予其促进黏附特性的一种有效且便捷的手段,并且当ASD-V与PS和PET偶联时,可促进内皮细胞的黏附与铺展,因此在需要重新内皮化的应用中(例如血管移植物的自体内皮接种,或通过聚合物包被支架移植基因工程化内皮细胞),可能作为一种生物材料表面修饰剂而有用。

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