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基于生物质活性炭的多硼酸基印迹聚合物用于糖蛋白的选择性捕获。

Biomass activated carbon-derived imprinted polymer with multi-boronic acid sites for selective capture of glycoprotein.

机构信息

College of Chemical and Biological Engineering, Shandong University of Science and Technology, Qingdao, Shandong 266590, China.

College of Chemical and Biological Engineering, Shandong University of Science and Technology, Qingdao, Shandong 266590, China.

出版信息

J Colloid Interface Sci. 2021 Aug 15;596:225-232. doi: 10.1016/j.jcis.2021.03.151. Epub 2021 Mar 29.

Abstract

Glycoproteins play crucial roles in many biological events such as protein folding, information transmission, nerve conduction, and molecular recognition. Some glycoproteins serve as disease biomarkers in clinical settings. However, selective detection of glycoprotein often faces great challenges, owing to its low abundance in complex biological samples. In this case, develop a highly sensitive and selective approach for glycoprotein detection is urgently needed. Molecularly imprinted polymers (MIPs) have proved to be an ideal absorbent material in detection and separation science. Herein, a novel biomass activated carbon-derived imprinted polymer (BAC@PEI/PBA/MIPs) was fabricated for selective recognition of glycoprotein. The as-prepared BAC@PEI/PBA/MIPs was synthesized using waste tea derived carbon as matrix, albumin chicken egg (OVA) as template, and dopamine as functional monomer. Branched polyethyleneimine (PEI) was covalently bonded on the BAC surface to increase the number of boronic acid moieties. Benefiting from the self-polymerization of dopamine and multi-boronic acid sites, a great number of recognition sites were presented under mild conditions. The static adsorption experiment showed that the BAC@PEI/PBA/MIPs exhibited a high binding capacity of 196.2 mg/g, rapid adsorption dynamics of 40 min, excellent selectivity and satisfactory reusability for OVA. Furthermore, the practicability of BAC@PEI/PBA/MIPs was verified by isolation of OVA from egg white. The good binding performance and facile preparation process make BAC@PEI/PBA/MIPs attractive for glycoprotein recognition, indicating its potential applications in biomedical research and clinical diagnostics.

摘要

糖蛋白在许多生物事件中发挥着关键作用,如蛋白质折叠、信息传递、神经传导和分子识别。一些糖蛋白在临床环境中作为疾病生物标志物。然而,由于其在复杂生物样品中的丰度较低,对糖蛋白的选择性检测往往面临巨大挑战。在这种情况下,迫切需要开发一种高灵敏度和选择性的糖蛋白检测方法。分子印迹聚合物 (MIPs) 已被证明是检测和分离科学中一种理想的吸收材料。本文制备了一种新型生物质活性炭衍生印迹聚合物 (BAC@PEI/PBA/MIPs),用于选择性识别糖蛋白。所制备的 BAC@PEI/PBA/MIPs 以废茶衍生碳为基质、卵清蛋白鸡卵 (OVA) 为模板、多巴胺为功能单体合成。支化聚乙烯亚胺 (PEI) 通过共价键合在 BAC 表面上,以增加硼酸基的数量。受益于多巴胺的自聚合和多硼酸位点,在温和条件下呈现出大量的识别位点。静态吸附实验表明,BAC@PEI/PBA/MIPs 表现出 196.2 mg/g 的高结合能力、40 min 的快速吸附动力学、对 OVA 的优异选择性和令人满意的可重复使用性。此外,通过从蛋清中分离 OVA 验证了 BAC@PEI/PBA/MIPs 的实用性。良好的结合性能和简便的制备工艺使 BAC@PEI/PBA/MIPs 成为糖蛋白识别的有吸引力的选择,表明其在生物医学研究和临床诊断中的潜在应用。

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