Department of Chemical Engineering, Indian Institute of Technology Bombay, Powai, Mumbai, India.
Biomaterials. 2011 Jan;32(2):352-65. doi: 10.1016/j.biomaterials.2010.09.005.
The extended interaction of blood with certain materials like hemodialysis membranes results in the activation of cellular element as well as inflammatory response. This results in hypersensitive reactions and increased reactive oxygen species, which occurs during or immediately after dialysis. Although polysulfone (Psf) hollow fiber has been commercially used for acute and chronic hemodialysis, its biocompatibility remains a major concern. To overcome this, we have successfully made composite Psf hollow fiber membrane consisting of hydrophilic/hydrophobic micro-domains of Psf and Vitamin E TPGS (TPGS). These were prepared by dry-wet spinning using 5, 10, 15, 20 wt% TPGS as an additive in dope solution. TPGS was successfully entrapped in Psf hollow fiber, as confirmed by ATR-FTIR and TGA. The selective skin was formed at inner side of hollow fibers, as confirmed by SEM study. In vitro biocompatibility and performance of the Psf/TPGS composite membranes were examined, with cytotoxicity, ROS generation, hemolysis, platelet adhesion, contact and complement activation, protein adsorption, ultrafiltration coefficient, solute rejection and urea clearance. We show that antioxidative composite Psf exhibits enhanced biocompatibility, and the membranes show high flux and high urea clearance, about two orders of magnitude better than commercial hemodialysis membranes on a unit area basis.
血液与某些材料(如血液透析膜)的长时间相互作用会导致细胞成分的激活和炎症反应。这会导致超敏反应和活性氧物质的增加,这种情况发生在透析期间或之后立即。虽然聚砜(Psf)空心纤维已被商业用于急性和慢性血液透析,但它的生物相容性仍然是一个主要问题。为了克服这个问题,我们已经成功地制备了由亲水性/疏水性 Psf 和维生素 E TPGS(TPGS)微区组成的复合 Psf 空心纤维膜。这些膜是通过干湿纺丝法制备的,在纺丝液中添加 5wt%、10wt%、15wt%和 20wt%的 TPGS 作为添加剂。ATR-FTIR 和 TGA 证实 TPGS 成功地被包埋在 Psf 空心纤维中。通过 SEM 研究证实,选择性皮层形成于空心纤维的内侧。我们研究了 Psf/TPGS 复合膜的体外生物相容性和性能,包括细胞毒性、ROS 生成、溶血、血小板黏附、接触和补体激活、蛋白吸附、超滤系数、溶质截留和尿素清除率。我们表明,抗氧化复合 Psf 表现出增强的生物相容性,并且该膜表现出高通量和高尿素清除率,在单位面积基础上比商业血液透析膜高两个数量级。