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Zwitterionic Sulfobetaine-Grafted Poly(vinylidene fluoride) Membrane with Highly Effective Blood Compatibility via Atmospheric Plasma-Induced Surface Copolymerization

机译:两性离子磺基甜菜碱接枝的聚偏二氟乙烯膜,通过大气等离子体诱导的表面共聚合具有高效的血液相容性

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Development of nonfouling membranes to prevent nonspecific protein adsorption and platelet adhesion is critical for many biomedical applications. It is always a challenge to control the surface graft copolymerization of a highly polar monomer from the highly hydrophobic surface of a fluoropo-lymer membrane. In this work, the blood compatibility of poly(vinylidene fluoride) (PVDF) membranes with surface-grafted electrically neutral zwitterionic poly(sulfobetaine methacrylate) (PSBMA), from atmospheric plasma-induced surface copolymerization, was studied. The effect of surface composition and graft morphology, electrical neutrality, hydrophilicity and hydration capability on blood compatibility of the membranes were determined. Blood compatibility of the zwitterionic PVDF membranes was systematically evaluated by plasma protein adsorption, platelet adhesion, plasma-clotting time, and blood cell hemolysis. It was found that the nonfouling nature and hydration capability of grafted PSBMA polymers can be effectively controlled by regulating the grafting coverage and charge balance of the PSBMA layer on the PVDF membrane surface. Even a slight charge bias in the grafted zwitterionic PSBMA layer can induce electrostatic interactions between proteins and the membrane surfaces, leading to surface protein adsorption, platelet activation, plasma clotting and blood cell hemolysis. Thus, the optimized PSBMA surface graft layer in overall charge neutrality has a high hydration capability and the best antifouling, anticoagulant, and antihemolytic activities when comes into contact with human blood.
机译:开发防污膜以防止非特异性蛋白质吸附和血小板粘附对于许多生物医学应用至关重要。从氟聚合物膜的高疏水性表面控制高极性单体的表面接枝共聚始终是一个挑战。在这项工作中,通过大气等离子体诱导的表面共聚作用,研究了聚偏氟乙烯(PVDF)膜与表面接枝的电中性两性离子聚甲基丙烯酸甜菜碱酯(PSBMA)的血液相容性。确定了表面组成和移植物形态,电中性,亲水性和水合能力对膜血液相容性的影响。两性离子PVDF膜的血液相容性通过血浆蛋白吸附,血小板粘附,血浆凝结时间和血细胞溶血来系统评估。发现通过调节PVDF膜表面上的PSBMA层的接枝覆盖率和电荷平衡,可以有效地控制接枝的PSBMA聚合物的防污性和水合能力。接枝的两性离子PSBMA层中即使有轻微的电荷偏置也会诱导蛋白质与膜表面之间的静电相互作用,从而导致表面蛋白质吸附,血小板活化,血浆凝结和血细胞溶血。因此,在总体电荷中性方面,优化的PSBMA表面接枝层在与人血接触时具有高水合能力和最佳的防污,抗凝和抗溶血活性。

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