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首页> 外文期刊>Macromolecules >New Poly(methyl methacrylate)-Butyl Acrylate/Pentafluorostyrene/Poly(ethylene glycol) (p-MMABA/PFS/PEG) Colloidal Dispersions: Synthesis, Film Formation, and Protein Adsorption
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New Poly(methyl methacrylate)-Butyl Acrylate/Pentafluorostyrene/Poly(ethylene glycol) (p-MMABA/PFS/PEG) Colloidal Dispersions: Synthesis, Film Formation, and Protein Adsorption

机译:新型聚甲基丙烯酸甲酯/丙烯酸正丁酯/五氟苯乙烯/聚乙二醇(p-MMA / nBA / PFS / PEG)胶体分散体:合成,成膜和蛋白质吸附

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A new family of water-dispersible colloidal particles composed of poly(methyl methacrylate-butyl acerylate/pentafluorostyrene/poly(ethylene glycol) dimethacrylate) (p-MMABA/PFS/PEG) copolymers which coalesce at room temperature was developed using free radical emulsion polymerization. These stable colloidal dispersions contain LIP to 30% w/w PEG and 35% w/w PFS and exhibit core-shell morphologies that consist of the p-MMABA/PFS core and the PEG shelf. Incorporation of PFS not only enhances the inhibition of the protein adsorption but also results in mechanically stable solid polymeric films. Solid-state 2D NMR, internal reflection infrared imaging (IRIRI), and atomic force microscopy (AFM) analysis showed that after coalescence the surface contains PEG-rich components which, combined with fluorinated domains, result in hydrophobic,and hydrophilic segments that inhibit protein adsorption. Adsorption of bovine serum albumin (BSA), lipopolysacharide (Lipopoly), and fibrinogen (Fib) on p-MMABA/PFS and p-MMABA/PFS/PEG (5, 10.20, and 30%) film surfaces revealed that the proteins exhibit higher affinity toward p-MMABA/PFS surfaces, whereas PEG incorporated into p-MMABA/PFS colloidal particles counter this behavior, and the compositional balance between PFS and PEG heterogeneities minimizes the protein adsorption, Incorporation of PFS is essential because when copolymerized, not only helps inhibiting protein adsorption but also facilitates mechanical integrity of the films.
机译:使用聚甲基丙烯酸甲酯/丙烯酸正丁酯/五氟苯乙烯/聚乙二醇二甲基丙烯酸酯(p-MMA / nBA / PFS / PEG)共聚物在室温下聚结的新系列水分散性胶体颗粒自由基乳液聚合。这些稳定的胶体分散体包含30%w / w PEG和35%w / w PFS的LIP,并显示出由p-MMA / nBA / PFS核和PEG架子组成的核-壳形态。掺入PFS不仅增强了对蛋白质吸附的抑制作用,而且还产生了机械稳定的固体聚合物薄膜。固态2D NMR,内反射红外成像(IRIRI)和原子力显微镜(AFM)分析表明,聚结后,表面包含富含PEG的成分,这些成分与氟化域结合在一起,形成疏水性和亲水性片段,可抑制蛋白质吸附。牛血清白蛋白(BSA),脂多糖(Lipopoly)和纤维蛋白原(Fib)在p-MMA / nBA / PFS和p-MMA / nBA / PFS / PEG(5、10.20和30%)膜表面的吸附表明蛋白质对p-MMA / nBA / PFS表面表现出更高的亲和力,而掺入p-MMA / nBA / PFS胶体颗粒中的PEG则抵消了这种行为,PFS和PEG异质性之间的组成平衡使蛋白质吸附最小化,PFS的掺入之所以必不可少,是因为当共聚时,不仅有助于抑制蛋白质的吸附,而且还可以促进薄膜的机械完整性。

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