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首页> 外文期刊>Biomacromolecules >Novel Thymine-Functionalized Polystyrenes for Applications in Biotechnology.2.Adsorption of Model Proteins
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Novel Thymine-Functionalized Polystyrenes for Applications in Biotechnology.2.Adsorption of Model Proteins

机译:用于生物技术的新型胸腺嘧啶功能化聚苯乙烯2.模型蛋白质的吸附

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This paper investigates the adsorption of bovine serum albumin(BSA)and bovine hemoglobin(BHb)model proteins onto novel thymine-functionalized polystyrene(PS-VBT)microspheres,in comparison with polystyrene(PS)microspheres.Maximum adsorption was obtained for both proteins near their corresponding isoelectric points(p/ at pH=4.7 for BSA and 7.1 for BHb).FTIR and adsorption isotherm analysis demonstrated that,although both proteins were physisorbed onto PS through nonspecific hydrophobic interactions,adsorption onto the functionalized copolymers occurred by both physisorption and chemisorption via hydrogen bonding.FTIR analysis also indicated conformational changes in the secondary structure of BSA and BHb adsorbed onto PS,whereas little or no conformation change was seen in the case of adsorption onto PS-VBT.Atomic force microscopy(AFM),consistent with the isotherm results,also demonstrated monolayer adsorption for both proteins.AFM images of BSA adsorbed onto copolymers with 20 mol % surface VBT loading showed exclusively end-on orientation.Adsorption onto copolymers with lower functionality showed mixed end-on and side-on orientation modes of BSA,and only the side-on orientation was observed on PS.The AFM results agreed well with theoretically calculated and experimentally obtained adsorption capacities.AFM together with calculated and observed adsorption capacity data for BHb indicated that this protein might be highly compressed on the copolymer surface.Adsorption from a binary mixture of BSA and BHb onto PS-VBT showed good separation at pH=7.0;~ 90% of the adsorbed protein was BHb.The novel copolymers have potential applications in biotechnology.
机译:与聚苯乙烯(PS)微球相比,本文研究了牛血清白蛋白(BSA)和牛血红蛋白(BHb)模型蛋白在新型胸腺嘧啶官能化聚苯乙烯(PS-VBT)微球上的吸附作用。 FTIR和吸附等温线分析表明,尽管两种蛋白质都是通过非特异性疏水相互作用而被物理吸附在PS上,但是通过物理吸附和化学吸附都发生在官能化共聚物上的吸附。 FTIR分析还表明,吸附到PS上的BSA和BHb的二级结构发生构象变化,而吸附到PS-VBT上几乎没有或没有构象变化。原子力显微镜(AFM)与等温线的结果,也证明了两种蛋白质的单层吸附。BSA的AFM图像吸附在20 mol%sur的共聚物上面VBT负载仅显示端基取向。在较低官能度的共聚物上的吸附显示BSA的端基取向和侧向取向混合模式,在PS上仅观察到侧向取向.AFM结果与理论计算吻合良好AFM以及计算和观察到的BHb吸附容量数据表明该蛋白可能在共聚物表面上高度压缩.BSA和BHb的二元混合物在PS-VBT上的吸附在pH = 7.0时显示出良好的分离;〜90%的吸附蛋白为BHb。这种新型共聚物在生物技术中具有潜在的应用。

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