化学
乙二醇
聚合物
纤维素
吸附
肺表面活性物质
化学工程
生物素化
单体
表面改性
高分子化学
PEG比率
功能性聚合物
涂层
羟乙基纤维素
吸光度
甲基丙烯酸酯
色谱法
有机化学
聚合
生物化学
经济
物理化学
工程类
财务
作者
Kunitake Kaneko,Manami Hara,Takashi Nishino,Tatsuo Maruyama
标识
DOI:10.1021/acs.analchem.9b04373
摘要
Cellulose paper has strong potential as an analytical platform owing to its unique characteristics. In the present study, we investigated a procedure for functionalizing the surface of cellulose paper by dip-coating a mixture of a functional polymer and a perfluoroalkylated surfactant (surfactant 1). The functional polymer comprised a mixture of methyl methacrylate and poly(ethylene glycol) methacrylate monomers. The monomer ratio in the functional polymer affected the hydrophilicity and water absorbance of the cellulose paper after dip-coating. Furthermore, the presence of surfactant 1 during dip-coating promoted the surface segregation of poly(ethylene glycol) (PEG) moieties in the polymer, which enhanced the hydrophilicity, prevented nonspecific protein adsorption, and maintained the water absorbance of the dip-coated cellulose paper. Dip-coating with another functional polymer containing biotin groups produced a cellulose paper with a biotin-decorated surface in a one-step procedure. The displayed biotin groups immobilized avidin on the surface, and the PEG moieties in the polymer prevented nonspecific protein adsorption. We then immobilized a thrombin-binding DNA aptamer on the avidin-immobilized cellulose paper to prepare a paper-based analytical device. It is possible to visualize thrombin in model solutions and serum using the paper-based analytical device.
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