Department of Chemistry and Chemical Biology, Baker Laboratories, Cornell University, Ithaca, New York 14853, United States.
Langmuir. 2011 Jun 7;27(11):7016-23. doi: 10.1021/la200093e. Epub 2011 May 10.
We use patterned poly(acrylic acid) (PAA) polymer brushes to explore the effects of surface chemistry and topography on cell-surface interactions. Most past studies of surface topography effects on cell adhesion have focused on patterned feature sizes that are larger than the dimensions of a cell, and PAA brushes have been characterized as cell repellent. Here we report cell adhesion studies for RBL mast cells incubated on PAA brush surfaces patterned with a variety of different feature sizes. We find that when patterned at subcellular dimensions on silicon surfaces, PAA brushes that are 30 or 15 nm thick facilitate cell adhesion. This appears to be mediated by fibronectin, which is secreted by the cells, adsorbing to the brushes and then engaging cell-surface integrins. The result is detectable accumulation of plasma membrane within the brushes, and this involves cytoskeletal remodeling at the cell-surface interface. By decreasing brush thickness, we find that PAA can be 'tuned' to promote cell adhesion with down-modulated membrane accumulation. We exemplify the utility of patterned PAA brush arrays for spatially controlling the activation of cells by modifying brushes with ligands that specifically engage IgE bound to high-affinity receptors on mast cells.
我们使用图案化的聚(丙烯酸)(PAA)聚合物刷来探索表面化学和形貌对细胞表面相互作用的影响。过去大多数关于表面形貌对细胞黏附影响的研究都集中在大于细胞尺寸的图案特征尺寸上,并且 PAA 刷被表征为细胞排斥物。在这里,我们报告了在各种不同特征尺寸的图案化 PAA 刷表面上孵育 RBL 肥大细胞的细胞黏附研究。我们发现,当在硅表面上以亚细胞尺寸图案化时,30 或 15nm 厚的 PAA 刷促进细胞黏附。这似乎是通过由细胞分泌的纤连蛋白介导的,纤连蛋白吸附在刷上,然后与细胞表面整合素结合。结果是可检测到的质膜在刷内的积累,这涉及细胞表面界面处的细胞骨架重塑。通过减小刷的厚度,我们发现可以通过用特异性结合与高亲和力受体结合的 IgE 的配体修饰刷来“调整”PAA 以促进细胞黏附,同时减少膜的积累。我们通过用特异性结合与高亲和力受体结合的 IgE 的配体修饰刷来证明图案化 PAA 刷阵列在通过修饰刷来空间控制细胞激活方面的实用性。