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Preparation of Superparamagnetic Ribonuclease A Surface-Imprinted Submicrometer Particles for Protein Recognition in Aqueous Media

机译:超顺磁性核糖核酸酶A表面印记的亚微米级颗粒在水性介质中蛋白质识别的制备。

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Superparamagnetic ribonuclease A surface-imprinted polymeric particles that can preferentially bind the template protein in an aqueous environment were prepared in this study. Methyl methacrylate and ethylene glycol dimethacrylate were employed as the functional and cross-linker monomers, respectively. Regularly shaped submicrometer (700-800 nm) particles imprinted with ribonuclease A were successfully prepared using redox-initiated miniemulsion polymerization. Nanosized Fe_(3)O_(4) magnetite was encapsulated in the imprinted particles with good encapsulation efficiency (17.5 wt percent) for the incorporation of the superparamagnetic property. Good selectivity toward the template over the control protein in an aqueous environment was demonstrated by the imprinted particles in the batchwise and competitive rebinding tests with the highest template loading, Q_(max), of 127.7 mg/g observed in the batch rebinding test. Given the small sizes of the imprinted particles and the presence of the binding sites on the surface, the rebinding process was kinetically favorable despite the sheer bulk of the macromolecules. In the desorption study, it was found that the more hydrophobic solvent was more effective for ribonuclease A desorption from the imprinted particles. This indicated that the hydrophobic effect was probably the main form of interaction responsible for the template rebinding to the imprinted sites in an aqueous media.
机译:超顺磁性核糖核酸酶本研究制备了可在水性环境中优先结合模板蛋白的表面印迹聚合物颗粒。分别使用甲基丙烯酸甲酯和乙二醇二甲基丙烯酸酯作为官能单体和交联剂单体。使用氧化还原引发的细乳液聚合成功制备了印有核糖核酸酶A的规则形状亚微米级(700-800 nm)颗粒。纳米尺寸的Fe_(3)O_(4)磁铁矿以良好的包封效率(17.5 wt%)被包埋在压印颗粒中,从而具有超顺磁性能。在分批的和竞争性的重新结合测试中,印迹颗粒显示了在水性环境中对模板相对于模板的良好选​​择性,在批量重新结合测试中观察到最高的模板负载Q_(max)为127.7 mg / g。考虑到印迹颗粒的小尺寸和表面上结合位点的存在,尽管大分子的体积很大,但重新结合过程在动力学上是有利的。在解吸研究中,发现疏水性更高的溶剂对于核糖核酸酶A从印迹颗粒上的解吸更有效。这表明疏水作用可能是相互作用的主要形式,其负责模板重新结合至水性介质中的印迹部位。

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