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首页> 外文期刊>Analytica chimica acta >The effectively specific recognition of bovine serum albumin imprinted silica nanoparticles by utilizing a macromolecularly functional monomer to stabilize and imprint template
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The effectively specific recognition of bovine serum albumin imprinted silica nanoparticles by utilizing a macromolecularly functional monomer to stabilize and imprint template

机译:利用大分子功能单体稳定并印迹模板,有效特异性识别牛血清白蛋白印迹二氧化硅纳米颗粒

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摘要

Structural stability of the template is one of the most important considerations during the preparation of protein imprinting technology. To address this limitation, we propose a novel and versatile strategy of utilizing macromolecularly functional monomers to imprint biomacromolecules. Results from circular dichroism and synchronous fluorescence experiments reflect the macromolecularly functional monomers tendency to interact with the protein surface instead of permeating it and destroying the hydrogen bonds that maintain the protein's structural stability, therefore stabilizing the template protein structure during the preparation of imprinted polymers. The imprinted polymers composed of macromolecularly functional monomers or their equivalent micromolecularly functional monomers over silica nanoparticles were characterized and carried out in batch rebinding test and competitive adsorption experiments. In batch rebinding test, the imprinted particles prepared with macromolecularly functional monomers exhibited an imprinting factor of 5.8 compared to those prepared by micromolecularly functional monomers with the imprinting factor of 3.4. The selective and competitive adsorption experiments also demonstrated the imprinted particles made by macromolecularly functional monomers possessed much better selectivity and specific recognition ability for template protein. Therefore, using macromolecularly functional monomers to imprint may overcome the mutability of biomacromolecule typically observed during the preparation of imprinted polymers, and thus promote the further development of imprinting technology. (C) 2015 Elsevier B.V. All rights reserved.
机译:模板的结构稳定性是蛋白质印迹技术制备过程中最重要的考虑因素之一。为了解决这一局限性,我们提出了一种利用大分子功能单体印迹生物大分子的新颖而通用的策略。圆二色性和同步荧光实验的结果反映出大分子功能单体倾向于与蛋白质表面发生相互作用,而不是渗透并破坏保持蛋白质结构稳定性的氢键,从而在印迹聚合物制备过程中稳定了模板蛋白质结构。表征了在二氧化硅纳米颗粒上由大分子功能单体或其等效的微分子功能单体组成的印迹聚合物,并在分批重新结合测试和竞争性吸附实验中进行了表征。在分批重新结合测试中,与通过具有3.4的印迹因子的微分子功能单体制备的印迹颗粒相比,使用大分子功能的单体制备的印迹颗粒表现出5.8的印迹因子。选择性和竞争性吸附实验还表明,由大分子功能单体制备的印迹颗粒对模板蛋白具有更好的选择性和特异性识别能力。因此,使用高分子功能单体进行印迹可以克服在印迹聚合物的制备过程中通常观察到的生物大分子的变异性,从而促进印迹技术的进一步发展。 (C)2015 Elsevier B.V.保留所有权利。

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