State Key Laboratory of Coordination Chemistry, School of Chemistry and Chemical Engineering, Nanjing University, 22 Hankou Road, Nanjing 210093, People's Republic of China.
J Phys Chem B. 2010 Mar 25;114(11):3999-4004. doi: 10.1021/jp910060c.
A simple method for the preparation of core-shell micro/nanostructured magnetic molecularly imprinted polymers (MIPs) for protein recognition is described. Magnetic MIPs were synthesized by copolymering gamma-aminopropyltrimethoxysilane and tetraethyl orthosilicate at the surface of Fe(3)O(4) nanospheres, which were directly covalently bound with template molecule, bovine hemoglobin (BHb), through imine bond. Transmission electron microscopy and scanning electron microscopy images showed that the Fe(3)O(4) nanospheres with diameter about 50-150 nm were coated with the MIPs layer with average thickness about 10 nm, which enabled the magnetic MIPs to have a sensitive and fast magnetic response. The proximity between the thickness of MIPs layer and the spatial size of BHb indicated that the imprinted sites almost situated at the surface of magnetic MIPs, leading a rapid adsorption saturation within 1 h. And the adsorption amounts of magnetic MIPs toward BHb were estimated to be 10.52 mg/g at pH 6.5, which was 4.6 times higher than that of magnetic nonmolecularly imprinted polymers. Meanwhile, the result of selective test showed that the magnetic MIPs had an excellent recognition capacity to BHb compared to the other nontemplate proteins. Except for the spatial size complementary between BHb and the binding sites in magnetic MIPs, the electrostatic interaction also was proven to be an important factor for recognizing the imprinting molecule.
一种用于制备用于蛋白质识别的核壳型微/纳米结构磁性分子印迹聚合物(MIPs)的简单方法。通过在 Fe(3)O(4)纳米球表面共聚γ-氨丙基三甲氧基硅烷和四乙氧基硅烷,将磁性 MIPs 合成,其通过亚胺键直接与模板分子牛血红蛋白(BHb)共价结合。透射电子显微镜和扫描电子显微镜图像表明,直径约为 50-150nm 的 Fe(3)O(4)纳米球被 MIPs 层包覆,平均厚度约为 10nm,这使得磁性 MIPs 具有灵敏快速的磁响应。MIPs 层的厚度与 BHb 的空间尺寸之间的接近表明印迹位点几乎位于磁性 MIPs 的表面,导致在 1h 内达到快速吸附饱和。在 pH 6.5 时,磁性 MIPs 对 BHb 的吸附量估计为 10.52mg/g,是磁性非分子印迹聚合物的 4.6 倍。同时,选择性测试结果表明,与其他非模板蛋白相比,磁性 MIPs 对 BHb 具有出色的识别能力。除了 BHb 与磁性 MIPs 中的结合位点之间的空间尺寸互补外,静电相互作用也被证明是识别印迹分子的重要因素。