Centre de Recherche sur les Matériaux Avancés, Département de génie des mines, de la métallurgie et des matériaux, Université Laval, Québec G1V 0A6, Canada; Centre de recherche du CHU de Québec, Hôpital Saint-François d'Assise, Québec G1L 3L5, Canada; PROTEO Research Center and Département de génie chimique, Université Laval, Québec G1V 0A6, Canada.
Biomaterials. 2014 Jan;35(3):879-90. doi: 10.1016/j.biomaterials.2013.09.076. Epub 2013 Oct 31.
The long-term patency rates of vascular grafts and stents are limited by the lack of surface endothelialisation of the implanted materials. We have previously reported that GRGDS and WQPPRARI peptide micropatterns increase the endothelialisation of prosthetic materials in vitro. To investigate the mechanisms by which the peptide micropatterns affect endothelial cell adhesion and proliferation, a TAMRA fluorophore-tagged RGD peptide was designed. Live cell imaging revealed that the micropatterned surfaces led to directional cell spreading dependent on the location of the RGD-TAMRA spots. Focal adhesions formed within 3 h on the micropatterned surfaces near RGD-TAMRA spot edges, as expected for cell regions experiencing high tension. Similar levels of focal adhesion kinase phosphorylation were observed after 3 h on the micropatterned surfaces and on surfaces treated with RGD-TAMRA alone, suggesting that partial RGD surface coverage is sufficient to elicit integrin signaling. Lastly, endothelial cell expansion was achieved in serum-free conditions on gelatin-coated, RGD-TAMRA treated or micropatterned surfaces. These results show that these peptide micropatterns mainly impacted cell adhesion kinetics rather than cell proliferation. This insight will be useful for the optimization of micropatterning strategies to improve vascular biomaterials.
血管移植物和支架的长期通畅率受到植入材料表面缺乏内皮化的限制。我们之前曾报道过 GRGDS 和 WQPPRARI 肽微图案可增加体外人工合成材料的内皮化。为了研究肽微图案影响内皮细胞黏附和增殖的机制,设计了一个 TAMRA 荧光标记的 RGD 肽。活细胞成像显示,微图案表面导致细胞的定向扩展,这取决于 RGD-TAMRA 斑点的位置。在微图案表面附近的 RGD-TAMRA 斑点边缘,预计会出现高张力的细胞区域,3 小时内就形成了粘着斑。在微图案表面和单独用 RGD-TAMRA 处理的表面上,3 小时后观察到粘着斑激酶磷酸化水平相似,这表明部分 RGD 表面覆盖足以引发整合素信号。最后,在无血清条件下,在明胶包被、RGD-TAMRA 处理或微图案化表面上实现了内皮细胞的扩展。这些结果表明,这些肽微图案主要影响细胞黏附动力学,而不是细胞增殖。这一见解将有助于优化微图案化策略,以改善血管生物材料。