Wang Le, Liu Jianguang, Shen Yan, Yin Yanli, Ni Zifu, Xi Jun, Hu Yuansen, Yuan Qipeng
School of Biological Engineering, National Engineering Research Center of Wheat and Corn Further Processing, Henan University of Technology, Zhengzhou 450001, China.
College of Food Science and Engineering, Henan University of Technology, Zhengzhou 450001, China.
Foods. 2024 Jun 18;13(12):1911. doi: 10.3390/foods13121911.
The preparation of a novel composite carrier of polydopamine-modified carbon fiber/polyurethane foam (PDA-CF/PUF) was proposed to improve cell immobilization and the fermentation of xylitol, which is an important food sweetener and multifunctional food additive. was immobilized on the composite carrier by adsorption and covalent binding. The properties and immobilization mechanism of the composite carrier and its effect on immobilized cells were investigated. It showed that the modification of PDA enhanced the loading of CF on the PUF surface and the adhesion of cells on the composite carrier surface. Also, the biocompatibility of carriers to cells was improved. In addition, the introduction of PDA increased the active groups on the surface of the carrier, enhanced the hydrophilicity, promoted the cells immobilization, and increased the xylitol yield. It was also found that expression of the related gene XYL1 in cells was significantly increased after the immobilization of the PDA-CF/PUF composite carrier during the fermentation. The PDA-CF/PUF was an immobilized carrier with the excellent biocompatibility and immobilization performance, which has great development potential in the industrial production of xylitol.
为了提高细胞固定化效果以及木糖醇的发酵效率,提出了一种新型的聚多巴胺修饰碳纤维/聚氨酯泡沫复合载体(PDA-CF/PUF)的制备方法,木糖醇是一种重要的食品甜味剂和多功能食品添加剂。通过吸附和共价结合将其固定在复合载体上。研究了复合载体的性能、固定化机理及其对固定化细胞的影响。结果表明,聚多巴胺的修饰增强了碳纤维在聚氨酯泡沫表面的负载量以及细胞在复合载体表面的黏附力。此外,载体对细胞的生物相容性也得到了改善。另外,聚多巴胺的引入增加了载体表面的活性基团,增强了亲水性,促进了细胞固定化,并提高了木糖醇产量。还发现,在发酵过程中,PDA-CF/PUF复合载体固定化细胞后,细胞中相关基因XYL1的表达显著增加。PDA-CF/PUF是一种具有优异生物相容性和固定化性能的固定化载体,在木糖醇的工业化生产中具有巨大的发展潜力。