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首页> 外文期刊>ACS applied materials & interfaces >Ni2+-BSA Directional Coordination-Assisted Magnetic Molecularly Imprinted Microspheres with Enhanced Specific Rebinding to Target Proteins
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Ni2+-BSA Directional Coordination-Assisted Magnetic Molecularly Imprinted Microspheres with Enhanced Specific Rebinding to Target Proteins

机译:Ni2 + -BSA定向配位辅助磁性分子印迹微球,具有增强的特异性重新靶向靶蛋白

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摘要

Protein imprinting technology is of interest in drug delivery, biosensing, solid-phase extraction, and so forth. However, the efficient recognition and separation of proteins have remained challenging to date. Toward this, under the assistance of Ni2+-bovine serum albumin (BSA) directional coordination strategy, magnetic BSA-imprinted materials had been synthesized via dopamine self-polymerization on hollow Fe3O4@mSiO(2) microspheres (mSiO(2) referred as mesoporous silica). The well-defined imprinted microspheres possessed more satisfactory adsorption capacity (266.99 mg/g), enhanced imprinting factor (5.45), and fast adsorption saturation kinetics (40 min) for BSA, superior to many previous reports. Benefiting from the coordinate interaction between Ni2+ and BSA, these fabricated microspheres exhibited excellent specificity not only in individual and competitive protein rebinding samples but also in bovine serum. Combined with the directional coordination method, the magnetic-imprinted composite materials to selectively capture target proteins could provide promising potential in applications.
机译:蛋白质压印技术对药物递送,生物传感,固相提取等感兴趣。然而,迄今为止,蛋白质的有效识别和分离是挑战。朝向这一点,在Ni2 +-Zovine血清白蛋白(BSA)定向配位策略的辅助下,通过在空心Fe3O4上的多巴胺自聚聚合(MSIO(2)称为中孔二氧化硅(MSIO(2))通过多巴胺自聚合来合成磁性BSA印迹材料)。定义的印迹微球具有更令人满意的吸附容量(266.99mg / g),增强的印迹因子(5.45)和BSA的快速吸附饱和动力学(40分钟),优于上述许多报道。受益于Ni2 +和BSA之间的坐标相互作用,这些制造的微球不仅在个体和竞争性蛋白质重新样品中表现出优异的特异性,而且在牛血清中表现出优异的特异性。结合定向配位方法,磁性压印的复合材料选择性地捕获靶蛋白可以在应用中提供有希望的潜力。

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