Liu Wenjia, Li Yiyang, Ding Xianting
School of Biomedical Engineering, Institute for Personalized Medicine, Shanghai Jiao Tong University, Shanghai 200030, People's Republic of China.
Biofabrication. 2017 Apr 24;9(2):025006. doi: 10.1088/1758-5090/aa669c.
Engineering surfaces with functional polymers is a crucial issue in the field of micro/nanofabrication and cell-material interface studies. For many applications of surface patterning, it does not need cells to attach on the whole surface. Herein, we introduce a novel polymer fabrication protocol of off-stoichiometry thiol-ene (OSTE) polymers to create heterogeneity on the surface by utilizing 3D printing and soft-lithography. By choosing two OSTE polymers with different functional groups, we create a pattern where only parts of the surface can facilitate cell adhesion. We also study the hydrophilic property of OSTE polymers by mixing poly(ethylene glycol) (PEG) directly with pre-polymers and plasma treatments afterwards. Moreover, we investigate the effect of functional groups' excess ratio and hydrophilic property on the cell adhesion ability of OSTE polymers. The results show that the cell adhesion ability of OSTE materials can be tuned within a wide range by the coupling effect of functional groups' excess ratio and hydrophilic property. Meanwhile, by mixing PEG with pre-polymers and undergoing oxygen plasma treatment afterward can significantly improve the hydrophilic property of OSTE polymers.
利用功能聚合物构建工程表面是微纳制造和细胞-材料界面研究领域的关键问题。对于许多表面图案化应用而言,并不需要细胞附着在整个表面上。在此,我们介绍一种非化学计量比硫醇-烯(OSTE)聚合物的新型聚合物制造方案,通过3D打印和软光刻技术在表面产生异质性。通过选择两种具有不同官能团的OSTE聚合物,我们创建了一种图案,其中只有部分表面能够促进细胞粘附。我们还通过将聚乙二醇(PEG)直接与预聚物混合并随后进行等离子体处理来研究OSTE聚合物的亲水性。此外,我们研究了官能团过量比和亲水性对OSTE聚合物细胞粘附能力的影响。结果表明,通过官能团过量比和亲水性的耦合效应,OSTE材料的细胞粘附能力可以在很宽的范围内进行调节。同时,将PEG与预聚物混合并随后进行氧等离子体处理可以显著提高OSTE聚合物的亲水性。