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Surface functionalized microfiltration membranes for affinity separation

机译:用于亲和分离的表面功能化微滤膜

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摘要

For affinity separation filtration we developed a tailored membrane based on covalently bound receptors such as proteins like recombinant Protein A (rPA). Microfiltration membrane pores were grafted with thin layers containing epoxy groups using photopolymerization. We compared two types of membranes based on polypropylene, an unmodified one (PP) and a hydrophilized one (GHPP). With photo-grafting a similar amount of functional groups was introduced to both membranes. We characterized the grafted membranes with respect to their hydrophilicity, total porosity and water permeability obtaining similar data for PP and GHPP. However, a different pore surface structure seemed to be present for the two types of membranes. The immobilization capacity of bovine serum albumine as a reference protein was about 10-fold higher for the grafted PP compared to the grafted GHPP. Therefore, only the Protein A-membrane, based on unmodified PP, was further evaluated with respect to the isolation and concentration of immunoglobulins.
机译:对于亲和分离过滤,我们开发了一种基于共价结合受体(例如重组蛋白A(rPA)等蛋白)的定制膜。使用光聚合作用将微滤膜孔接枝有环氧基的薄层。我们比较了两种基于聚丙烯的膜,未改性的膜(PP)和亲水的膜(GHPP)。通过光接枝将相似量的官能团引入两个膜。我们对接枝膜的亲水性,总孔隙率和透水性进行了表征,从而获得了PP和GHPP的相似数据。然而,对于两种类型的膜似乎存在不同的孔表面结构。与嫁接的GHPP相比,嫁接的PP的牛血清白蛋白作为参考蛋白的固定能力高约10倍。因此,就免疫球蛋白的分离和浓度而言,仅对基于未修饰PP的蛋白A膜进行了进一步评估。

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