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人血管内皮细胞在仿生肽表面活性剂聚合物上的整合素依赖性相互作用。

Integrin-dependent interaction of human vascular endothelial cells on biomimetic peptide surfactant polymers.

作者信息

Murugesan Gurunathan, Ruegsegger Mark A, Kligman Faina, Marchant Roger E, Kottke-Marchant Kandice

机构信息

Department of Clinical Pathology, Cleveland Clinic Foundation, Cleveland, OH 44195, USA.

出版信息

Cell Commun Adhes. 2002 Mar-Apr;9(2):59-73. doi: 10.1080/15419060214148.

Abstract

Biomimetic surfactant polymers designed by molecular grafting of pendant RGD peptides (Pep) and dextran oligosaccharides (Dex) in different ratios onto the backbone of poly(vinyl amine) (PVAm) were examined for their ability to promote endothelial cell (EC) growth. Adhesion, formation of focal contacts, and expression of integrin receptors were examined in EC seeded onto a series of novel surfactants containing 100% dextran (PVAm[Pep (0%)]) to 100% peptide (PVAm[Pep (100%)]) compared to fibronectin control. Interaction of EC on polymer was specific, as soluble GRGDSP, but not GRGESP, was able to inhibit both adhesion and spreading of EC. At three hours, EC attachment and spreading were rapid and comparable on fibronectin and PVAm[Pep (100%)], rounded on PVAm[Pep (0%)], and intermediate on PVAm[Pep (25%)], (PVAm[Pep (50%)], and PVAm[Pep (75%)], with increasing peptide ratio favoring more spreading, although all the substrates had similar hydrophilicity. Cells that spread well on fibronectin and PVAm[Pep (100%)] had sharp spikes of vinculin localized at the termination point of actin stress fibers. Formation of stress fibers and focal adhesions on other substrates were correlated with spreading pattern of EC and the peptide content. EC seeded on fibronectin expressed alpha5beta1 integrins all along the stress fibers and throughout the entire cytoskeleton, but this distribution pattern was less prominent on PVAm[Pep (100%)]. However, expression and distribution of vitronectin receptors (alpha(v)beta3) were similar on both fibronectin and PVAm[Pep (100%)], suggesting a strong cell adhesion on PVAm[Pep (100%)]. Viability of EC was also comparable on both fibronectin and PVAm[Pep (100%)] at 24 h. Substrates with high proportion of dextran limited cell adhesion, probably by decreasing protein adsorption. These results suggest that it may be possible to engineer substrates that promote cell adhesion in a receptor-dependent manner while blocking nonspecific protein adsorption, which may have potential as interface materials for prostheses used in cardiovascular system.

摘要

通过将不同比例的侧链RGD肽(Pep)和低聚葡聚糖(Dex)分子接枝到聚乙烯胺(PVAm)主链上设计的仿生表面活性剂聚合物,被检测其促进内皮细胞(EC)生长的能力。将EC接种到一系列新型表面活性剂上,这些表面活性剂含有100%葡聚糖(PVAm[Pep (0%)])至100%肽(PVAm[Pep (100%)]),并与纤连蛋白对照相比,检测其黏附、粘着斑的形成以及整合素受体的表达。EC与聚合物的相互作用具有特异性,因为可溶性GRGDSP而非GRGESP能够抑制EC的黏附和铺展。三小时时,EC在纤连蛋白和PVAm[Pep (100%)]上的附着和铺展迅速且相当,在PVAm[Pep (0%)]上呈圆形,在PVAm[Pep (25%)]、PVAm[Pep (50%)]和PVAm[Pep (75%)]上处于中间状态,随着肽比例增加更有利于铺展,尽管所有底物具有相似的亲水性。在纤连蛋白和PVAm[Pep (100%)]上铺展良好的细胞,其纽蛋白的尖锐棘突位于肌动蛋白应力纤维的末端点。在其他底物上应力纤维和粘着斑的形成与EC的铺展模式和肽含量相关。接种在纤连蛋白上的EC在整个应力纤维和整个细胞骨架上均表达α5β1整合素,但这种分布模式在PVAm[Pep (100%)]上不太明显。然而,玻连蛋白受体(α(v)β3)在纤连蛋白和PVAm[Pep (100%)]上的表达和分布相似,表明在PVAm[Pep (100%)]上细胞黏附较强。24小时时,EC在纤连蛋白和PVAm[Pep (100%)]上的活力也相当。葡聚糖比例高的底物限制细胞黏附,可能是通过减少蛋白质吸附。这些结果表明,有可能设计出以受体依赖方式促进细胞黏附同时阻断非特异性蛋白质吸附的底物,这可能具有作为心血管系统中假体界面材料的潜力。

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