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Preparation and characterization of highly porous cellulose-agarose composite chromatographic microspheres for enhanced selective separation of histidine-rich proteins

机译:高孔纤维素 - 琼脂糖复合色谱微球的制备与表征,增强富含组氨酸蛋白的选择性分离

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In this work, the porous cellulose-agarose microspheres with high specific surface area and enhanced mechanical strength are prepared by a novel chemical crosslinking method. The crosslinking reaction homogeneously proceeds between polysaccharides, and the covalent bonding network is generated to replace the inherent hydrogen bonding network of cellulose. The prepared microspheres exhibit low crystallinity of 12.45%, which means high content of amorphous regions. The micro-meso-macroporous structure of microspheres in morphology is conducive to high permeability and adsorption capacity, and the microspheres possess high specific surface area of 183.81 m(2)/g. The affinity chromatographic microspheres are prepared by immobilizing Cu2+, which exhibits high adsorption capacity of 197.65 mg/g for bovine hemoglobin (BHb), fast adsorption rate wihin 40 minutes, well-selectivity, and excellent recyclability in ten cycles. We expect that this work to provide an outstanding candidate for the high performance of biomacromolecular purification. (C) 2020 Elsevier B.V. All rights reserved.
机译:本研究采用一种新的化学交联方法制备了具有高比表面积和增强机械强度的多孔纤维素琼脂糖微球。交联反应在多糖之间均匀进行,产生共价键网络以取代纤维素固有的氢键网络。制备的微球结晶度较低,为12.45%,这意味着非晶区含量较高。微球的微-中-大孔结构在形态上有利于提高渗透性和吸附能力,微球具有183.81 m(2)/g的高比表面积。亲和色谱微球是通过固定化Cu2+制备的,对牛血红蛋白(BHb)具有197.65 mg/g的高吸附能力,40分钟内的快速吸附速率,选择性好,在十个循环中具有良好的可回收性。我们期望这项工作为生物大分子纯化的高性能提供一个杰出的候选。(C) 2020爱思唯尔B.V.版权所有。

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