Ishihara Kazuhiko, Hasegawa Takashi, Watanabe Junji, Iwasaki Yasuhiko
Department of Materials Engineering, School of Engineering, The University of Tokyo, Japan.
Artif Organs. 2002 Dec;26(12):1014-9. doi: 10.1046/j.1525-1594.2002.07039.x.
Nonfouling polysulfone (PSf) hollow fiber membranes resistant to protein adsorption and deposition were newly developed by the addition of 2-methacryloyloxyethyl phosphorylcholine (MPC) polymer. To improve hydrophilicity, permeability, and nonfouling characteristics of the PSf hollow fiber in a hemodialyzer, we synthesized a MPC polymer which can be blended with PSf for preparing the polymer alloy (PSf/MPC polymer). The composition of the MPC polymer blended in the PSf was in the range between 7.0 and 15 wt%. From the PSf/MPC polymer solution, flat membranes and hollow fibers could be prepared. These membranes took an asymmetric structure, and its mechanical strength was good. The surface characterization of the PSf/MPC polymer hollow fiber membrane by X-ray photoelectron spectroscopy revealed that the MPC units were concentrated at the surface. The permeability for solutes through the PSf/MPC polymer membrane was higher, and the amount of protein adsorbed on the PSf/MPC polymer membrane was lower than those of the PSf membrane. Moreover, platelet adhesion was also effectively inhibited on the PSf/MPC polymer membrane.
通过添加2-甲基丙烯酰氧乙基磷酰胆碱(MPC)聚合物,新开发出了具有抗蛋白质吸附和沉积性能的非污染聚砜(PSf)中空纤维膜。为了提高血液透析器中PSf中空纤维的亲水性、渗透性和抗污染特性,我们合成了一种可与PSf共混以制备聚合物合金(PSf/MPC聚合物)的MPC聚合物。混入PSf中的MPC聚合物的组成范围为7.0至15 wt%。由PSf/MPC聚合物溶液可制备出平板膜和中空纤维。这些膜具有不对称结构,且机械强度良好。通过X射线光电子能谱对PSf/MPC聚合物中空纤维膜进行的表面表征显示,MPC单元集中在表面。溶质通过PSf/MPC聚合物膜的渗透率更高,且吸附在PSf/MPC聚合物膜上的蛋白量低于PSf膜。此外,PSf/MPC聚合物膜上的血小板黏附也得到了有效抑制。