首页> 外文期刊>Journal of Applied Polymer Science >Optimization of sulfonated polyethyleneimine zwitterionic coating mediated by polydopamine for poly(vinyl chloride) antifouling
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Optimization of sulfonated polyethyleneimine zwitterionic coating mediated by polydopamine for poly(vinyl chloride) antifouling

机译:聚二胺用于聚二胺介导的磺化聚乙烯亚胺两性离子涂层的优化,用于聚(氯乙烯)防污

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Although poly(vinyl chloride) (PVC) has been widely used as blood-contacting materials in extracorporeal circuits and indwelling medical devices, its hydrophobicity also is a limitation due to the adsorption of plasma proteins and the immediately followed thrombosis cascade and bacterial infections. Herein, we developed a mild and simple strategy for improving the hydrophilicity and antifouling properties of the surface via mussel-inspired chemistry. Different amounts of 1,3-Propanesultone (1,3-PS) were attached onto the polyethyleneimine (PEI), so as to modify it into the zwitterion, called PESX. Two layer-by-layer approaches about PES(X)grafting on PVC substrates were designed. One strategy was by coating PES(X)after coating polydopamine (PDA) on PVC surface, obtaining PDA-PES(X)coatings. The other was by grafting PES(X)after co-deposition treatment of PDA and PES(X)with appropriate feeding ratio on PVC, obtaining PDA/PESX-PES(X)coatings. The study results indicated that the PDA/PES0.5-PES(0.5)coatings with optimized PEI molecular weight and sulfonation degree, presented about 2.5-3 times reduction in BSA adsorption (0.77 mu g/cm(2)) compared with PDA/PES0.5(1.93 mu g/cm(2)) and PDA-PES0.5(2.26 mu g/cm(2)), and kept long time antifouling stability. Moreover, the more excellent antifouling performance of PDA/PES0.5-PES(0.5)was also seen on fibrinogen (Fg), gamma-globulin (gamma-GL), and the mixture of these proteins. Meanwhile, PDA/PES0.5-PES(0.5)could prevent the adhesion of blood components and bacteria on the surface as well as maintain excellent hemocompatibility and cytocompatibility. We had hopes that our simple and mild strategy will find practical application in surface engineering of clinical use in blood-contacting medical devices.
机译:尽管聚氯乙烯(PVC)已被广泛用作体外电路和留置医疗设备中的血液接触材料,但由于血浆蛋白的吸附以及随后的血栓级联和细菌感染,其疏水性也受到限制。在此,我们开发了一种温和而简单的策略,通过贻贝激发的化学反应来改善表面的亲水性和防污性能。将不同量的1,3-丙砜(1,3-PS)连接到聚乙烯亚胺(PEI)上,以便将其改性成两性离子,称为PESX。设计了PES(X)在PVC基体上的两层接枝方法。一种策略是在PVC表面涂覆聚多巴胺(PDA)后再涂覆PES(X),获得PDA-PES(X)涂层。另一种方法是将PDA和PES(X)以适当的投料比共沉积处理后,在PVC上接枝PES(X),得到PDA/PESX-PES(X)涂层。研究结果表明,PDA/PES0。与PDA/PES0相比,具有优化PEI分子量和磺化度的5-PES(0.5)涂层的BSA吸附量(0.77μg/cm(2))降低了约2.5-3倍。5(1.93μg/cm(2))和PDA-PES0。5(2.26μg/cm(2)),并保持长时间的防污稳定性。此外,PDA/PES0具有更优异的防污性能。纤维蛋白原(Fg)、丙种球蛋白(gamma GL)以及这些蛋白质的混合物中也发现了5-PES(0.5)。与此同时,PDA/PES0。5-PES(0.5)能防止血液成分和细菌粘附在表面,并保持良好的血液相容性和细胞相容性。我们曾希望,我们简单而温和的策略将在接触血液的医疗设备的临床表面工程中得到实际应用。

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