Shaanxi Provincial Key Laboratory of Papermaking Technology and Specialty Paper Development, National Demonstration Center for Experimental Light Chemistry Engineering Education, Key Laboratory of Paper Based Functional Materials of China National Light Industry, Shaanxi University of Science and Technology, Xian, 710021, China.
Shaanxi Provincial Key Laboratory of Papermaking Technology and Specialty Paper Development, National Demonstration Center for Experimental Light Chemistry Engineering Education, Key Laboratory of Paper Based Functional Materials of China National Light Industry, Shaanxi University of Science and Technology, Xian, 710021, China.
Carbohydr Polym. 2021 Aug 1;265:118082. doi: 10.1016/j.carbpol.2021.118082. Epub 2021 Apr 17.
Surfaces engineered to identify and enrich glycoproteins are of considerable interest in the diagnostic and detection fields. A boronate affinity (BA) material was proposed as a potential candidate for the isolation of glycoproteins. However, this material has the disadvantages of low efficiency and non-degradability. Herein, a novel dendrimer-amplified BA cellulose foam (PEI-PBA-CF) was fabricated via a mild two-step approach. The as-prepared PEI-PBA-CF exhibited a rapid adsorption equilibrium rate (within 60 min) and outstanding adsorption capacity for horseradish peroxidase (537.4 mg g) and ovalbumin (495.5 mg g). Furthermore, competitive adsorption experiments demonstrated that PEI-PBA-CF could achieve selective separation and purification of glycoproteins from complex biological samples due to the synergistic effect of the improved BA capacity by the dendrimer and the well-interconnected porous structure of the biomass matrix. Consequently, these cellulose foams might present new application opportunities in analytical and biomedical fields.
表面工程旨在识别和富集糖蛋白,在诊断和检测领域引起了相当大的兴趣。硼酸亲和(BA)材料被提议作为分离糖蛋白的潜在候选物。然而,这种材料存在效率低和不可降解的缺点。本文通过温和的两步法制备了一种新型的树枝状大分子放大的 BA 纤维素泡沫(PEI-PBA-CF)。所制备的 PEI-PBA-CF 表现出快速的吸附平衡速率(在 60 分钟内)和对辣根过氧化物酶(537.4mg/g)和卵清蛋白(495.5mg/g)的出色吸附能力。此外,竞争吸附实验表明,由于树枝状大分子增强的 BA 能力和生物质基质的良好互联多孔结构的协同作用,PEI-PBA-CF 可以实现从复杂生物样品中选择性分离和纯化糖蛋白。因此,这些纤维素泡沫可能在分析和生物医学领域提供新的应用机会。