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定向制备两性离子分子印迹纳米腔用于高灵敏糖蛋白识别。

Orientationally Fabricated Zwitterionic Molecularly Imprinted Nanocavities for Highly Sensitive Glycoprotein Recognition.

出版信息

Langmuir. 2019 Feb 5;35(5):1320-1326. doi: 10.1021/acs.langmuir.8b01215. Epub 2018 Jul 11.

Abstract

Glycoprotein recognition has recently gained a lot of attention, since glycoproteins play important roles in a diverse range of biological processes. Robustly synthesized glycoprotein receptors, such as molecularly imprinted polymers (MIPs), which can be easily and sustainably handled, are highly attractive as antibody substitutes because of the difficulty in obtaining high-affinity antibodies specific for carbohydrate-containing antigens. Herein, molecularly imprinted nanocavities for glycoproteins have been fabricated via a bottom-up molecular imprinting approach using surface-initiated atom transfer radical polymerization (SI-ATRP). As a model glycoprotein, ovalbumin was immobilized in a specific orientation onto a surface plasmon resonance sensor chip by forming a conventional cyclic diester between boronic acid and cis-diol. Biocompatible polymer matrices were formed around the template molecule, ovalbumin, using SI-ATRP via a hydrophilic comonomer, 2-methacryloyloxyethyl phosphorylcholine, in the presence of pyrrolidyl acrylate (PyA), a functional monomer capable of electrostatically interacting with ovalbumin. The removal of ovalbumin left MIPs with binding cavities containing boronic acid and PyA residues located at suitable positions for specifically binding ovalbumin. Careful analysis revealed that strict control over the polymer significantly improved sensitivity and selectivity for ovalbumin recognition, with a limit of detection of 6.41 ng/mL. Successful detection of ovalbumin in an egg white matrix was demonstrated to confirm the practical utility of this approach. Thus, this strategy of using a polymer-based recognition of a glycoprotein through molecularly imprinted nanocavities precisely prepared using a bottom-up approach provides a potentially powerful approach for detection of other glycoproteins.

摘要

糖蛋白识别最近受到了广泛关注,因为糖蛋白在多种生物过程中发挥着重要作用。由于获得针对含碳水化合物抗原的高亲和力抗体具有一定的难度,因此,合成稳定的糖蛋白受体(如分子印迹聚合物(MIPs))具有很大的吸引力,因为它们可以很容易地、可持续地进行处理,可以作为抗体的替代品。在此,通过使用表面引发原子转移自由基聚合(SI-ATRP)的自下而上分子印迹方法,制备了用于糖蛋白的分子印迹纳米腔。作为一种模型糖蛋白,卵清蛋白通过硼酸和顺二醇之间形成常规的环状二酯,以特定的取向固定在表面等离子体共振传感器芯片上。通过使用亲水性单体 2-(甲基丙烯酰氧基)乙基磷酸胆碱和功能单体吡咯烷基丙烯酰胺(PyA)在其周围形成生物相容性聚合物基质,PyA 是一种能够与卵清蛋白静电相互作用的功能单体。在去除卵清蛋白后,留下的 MIPs 具有结合腔,其中含有硼酸和 PyA 残基,位于与卵清蛋白特异性结合的合适位置。仔细分析表明,对聚合物的严格控制显著提高了对卵清蛋白识别的灵敏度和选择性,检测限为 6.41ng/mL。成功地在蛋清基质中检测到卵清蛋白,证实了该方法的实际应用。因此,这种使用基于聚合物的方法通过自下而上的方法精确制备的分子印迹纳米腔来识别糖蛋白的策略为检测其他糖蛋白提供了一种潜在的强大方法。

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