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Rebinding and recognition properties of protein-macromolecularly imprinted calcium phosphate/alginate hybrid polymer microspheres

机译:蛋白质-大分子印迹的磷酸钙/藻酸盐杂化聚合物微球的重新结合和识别特性

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Calcium phosphate/alginate hybrid polymer microspheres with bovine serum albumin (BSA) embedded and coated on the surface were prepared with sodium alginate (SA) and (NH_4)_2HPO_4 by using CaCl_2 as the gelling agent in an inverse suspension. The morphology and pore structure of imprinted hybrid polymer microspheres was observed by optical microscopy, ESEM, TEM and SEM. Infrared spectrum analysis demonstrated that new hybrid components were produced in the polymer microspheres. Rebinding dynamic and thermodynamic behaviors of the two imprinted microspheres were evaluated, resulting in a higher BSA affinity for imprinted microspheres relative to non-imprinted ones. The factors influencing the imprinting efficiency (IE) of imprinted microspheres were also studied, including the concentration of CaCl_2, template content and pH in rebinding solution, etc. All the results indicated that the surface imprinted microspheres exhibited better imprinting efficiency and higher rebinding capacity. Selectivity tests showed that the imprinted beads exhibited good recognition properties for the template protein versus others.
机译:通过在反向悬浮液中用CaCl_2作为胶凝剂,用藻酸钠(SA)和(NH_4)_2HPO_4制备表面包埋并包被有牛血清白蛋白(BSA)的磷酸钙/藻酸盐杂化聚合物微球。通过光学显微镜,ESEM,TEM和SEM观察了印迹杂化聚合物微球的形貌和孔结构。红外光谱分析表明,在聚合物微球中产生了新的杂化组分。评估了两个印迹微球的重新结合动力学和热力学行为,从而导致相对于非印迹微球,BSA对印迹微球的亲和力更高。还研究了影响印迹微球印迹效率的因素,包括再结合溶液中CaCl_2的浓度,模板含量和pH值等。所有结果表明,表面印迹微球具有较好的印迹效率和更高的再结合能力。选择性测试表明,印迹珠对模板蛋白表现出良好的识别特性。

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