Andruzzi Luisa, Senaratne Wageesha, Hexemer Alexander, Sheets Erin D, Ilic B, Kramer Edward J, Baird Barbara, Ober Christopher K
Materials Science and Engineering, Cornell University, Ithaca, NY 14853, USA.
Langmuir. 2005 Mar 15;21(6):2495-504. doi: 10.1021/la047574s.
The nitroxide-mediated polymerization of styrenic monomers containing oligo(ethylene glycol) (OEGn) moieties was chosen for the preparation of biocompatible polymer brushes tethered to silicon oxide surfaces due to the broad range of monomer structures available and the use of a nonmetallic initiator. These surfaces were characterized by near-edge X-ray absorption fine structure and water contact angle measurements. The biocompatibility of these grown polymer brushes was studied and compared with deposited assemblies of surface-bound OEGn-terminated silanes with selected chain lengths. Grown polymer brushes with short OEGn side chains suppressed protein adsorption significantly more than the deposited assemblies of short OEGn chains, and this was attributed to higher surface coverage by the brushes. Cell adhesion studies confirmed that OEGn-containing polymer brushes are particularly effective in preventing nonspecific adhesion. Studies of protein adsorption and cell localization carried out with specific ligands on surfaces patterned demonstrated the potential of these surface-tethered polymer brushes for the formation of micro- and nanoscale devices.
由于有多种可用的单体结构且使用了非金属引发剂,因此选择含低聚乙二醇(OEGn)部分的苯乙烯类单体的氮氧化物介导聚合反应来制备连接到氧化硅表面的生物相容性聚合物刷。这些表面通过近边X射线吸收精细结构和水接触角测量进行表征。研究了这些生长的聚合物刷的生物相容性,并与具有选定链长的表面结合的OEGn封端硅烷的沉积组装体进行了比较。具有短OEGn侧链的生长聚合物刷比短OEGn链的沉积组装体更能显著抑制蛋白质吸附,这归因于刷具有更高的表面覆盖率。细胞粘附研究证实,含OEGn的聚合物刷在防止非特异性粘附方面特别有效。在图案化表面上用特定配体进行的蛋白质吸附和细胞定位研究证明了这些表面连接的聚合物刷在形成微米和纳米级器件方面的潜力。