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Synthesis of human hair fiber-impregnated chitosan beads functionalized with citric acid for the adsorption of lysozyme

机译:柠檬酸官能化的人发纤维浸渍壳聚糖微珠的吸附及溶菌酶的合成

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Chitosan materials have been applied widely in protein separation and purification processes, however, pure chitosan materials generally suffer from inadequate mechanical properties and low densities of active adsorption sites, thereby leading to short service lives, limited actual re-usage counts and unexpected re-absorption capacities as adsorbents. Herein, a novel CA-CS/HHF composite was firstly constructed by impregnating human hair fiber into a CS matrix and then functionalized with citric acid. The structures and morphologies of the thus-produced composites were characterized by FTIR and SEM, respectively. A mechanical stability test showed that the impregnation of HHF into the chitosan matrix could effectively enhance the mechanical stability of the CA-CS/HHF beads in comparison with pure chitosan spheres. The adsorption of proteins and a protein mixture revealed that the product could adsorb positively charged proteins, as ascertained by the method of sodium dodecyl sulfate polyacrylamide gel electrophoresis. The maximum value for LYZ adsorption on the CA-CS/HHF composite was 42.1 mg g?1 with a fast equilibrium time of 3 h. Moreover, the resultant product exhibited good reversibility with respect to lysozyme. This simple and intriguing approach characterized by both environmental conservation and waste recycling strongly extends any future utilization of human hair fiber, and the resultant CA-CS/HHF can potentially be truly applied for the quick and effective adsorption of positively charged lysozyme.
机译:壳聚糖材料已广泛应用于蛋白质分离和纯化过程中,但是,纯壳聚糖材料通常会遇到机械性能不足和活性吸附位点密度低的问题,从而导致使用寿命短,实际重复使用次数有限以及意外的重吸收作为吸附剂的能力。在此,首先通过将人的头发纤维浸入CS基质中,然后用柠檬酸官能化来构造新型的CA-CS / HHF复合物。通过FTIR和SEM分别表征了所得复合材料的结构和形貌。机械稳定性测试表明,与纯壳聚糖球相比,将HHF浸渍到壳聚糖基质中可以有效增强CA-CS / HHF珠的机械稳定性。蛋白质和蛋白质混合物的吸附表明,该产物可以吸附带正电的蛋白质,这是通过十二烷基硫酸钠聚丙烯酰胺凝胶电泳法确定的。 CA-CS / HHF复合材料的LYZ吸附最大值为42.1 mg g ?1 ,平衡时间为3 h。而且,所得产物相对于溶菌酶表现出良好的可逆性。这种简单而有趣的方法既具有环境保护又具有废物回收利用的特性,极大地扩展了人类头发纤维的任何未来利用,并且所得的CA-CS / HHF可以真正地用于快速有效地吸附带正电荷的溶菌酶。

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