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Facile and green synthesis of polysaccharide-based magnetic molecularly imprinted nanoparticles for protein recognition

机译:基于多糖的磁性分子印迹纳米粒子的简便和绿色合成,用于蛋白质识别

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摘要

In this study, a facile and green approach to prepare core-shell magnetic molecularly imprinted nanoparticles based on a layer-by-layer assembly and surface imprinting technique was developed. Two types of natural polysaccharides (sodium alginate and chitosan) were firstly employed as hydrophilic double-monomers to synthesize water-compatible imprinted nanomaterials via a two-step self-assembly strategy for recognizing protein ovalbumin. The obtained products exhibited a desired level of magnetic susceptibility (45.30 emu g(-1)), resulting in the convenient and highly efficient separation process. The imprinted layer with thickness about 8 nm was homogeneously coated on the surface of Fe3O4, which was favorable for the fast mass transfer and rapid binding kinetics. The results of adsorption experiments showed that the saturation adsorption capacity of imprinted products could reach 92.22 mg g(-1) within 40 min, which illustrated the high binding capacity. Meanwhile, the imprinting factor was as high as 4.07, demonstrating the potential selectivity of the prepared products. More importantly, the test of validation suggested that the proposed strategy would be a general method for imprinting different proteins in aqueous media by virtue of the peculiarity of polysaccharides as well as the efficient preparation process.
机译:在这项研究中,开发了一种简便,绿色的方法,该方法基于逐层组装和表面压印技术来制备核-壳磁性分子印迹纳米颗粒。两种天然多糖(海藻酸钠和壳聚糖)首先被用作亲水性双单体,通过两步自组装策略识别蛋白卵清蛋白,从而合成了水相容性印迹纳米材料。获得的产物表现出所需水平的磁化率(45.30 emu g(-1)),从而导致了方便,高效的分离过程。 Fe3O4的表面均匀印有厚度约为8 nm的压印层,有利于快速传质和快速结合动力学。吸附实验结果表明,印迹产物的饱和吸附容量在40 min内可达到92.22 mg g(-1),说明其高吸附力。同时,印迹因子高达4.07,证明了所制备产品的潜在选择性。更重要的是,验证测试表明,由于多糖的独特性和有效的制备过程,所提出的策略将是在水性介质中印迹不同蛋白质的通用方法。

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