Lv Chuhan, Yang Xuewei, Wang Zongkang, Ying Ming, Han Qingguo, Li Shuangfei
Guangdong Technology Research Center for Marine Algal Bioengineering, Guangdong Key Laboratory of Plant Epigenetics, College of Life Sciences and Oceanography, Shenzhen University, Shenzhen 518060, China.
Shenzhen Batian Ecological Engineering Co., Ltd., Shenzhen 518055, China.
Nanomaterials (Basel). 2021 Nov 16;11(11):3086. doi: 10.3390/nano11113086.
This research reveals the improved performance of bioelectrodes made with amination-modified glucose oxidase (GOx-NH) and carboxyl-functionalized mesoporous carbon (OMC-COOH). Results showed that when applied with 10 mM EDC amination, the functional groups of NH were successfully added to GOx, according to the analysis of H-NMR, elemental composition, and FTIR spectra. Moreover, after the aminated modification, increased enzyme immobilization (124.01 ± 1.49 mg GOx-NH/g OMC-COOH; 2.77-fold increase) and enzyme activity (1.17-fold increase) were achieved, compared with those of non-modified GOx. Electrochemical analysis showed that aminated modification enhanced the peak current intensity of Nafion/GOx-NH/OMC-COOH (1.32-fold increase), with increases in the charge transfer coefficient (0.54), the apparent electron transfer rate constant (2.54 s), and the surface coverage (2.91 × 10 mol·cm). Results showed that GOx-NH/OMC-COOH exhibited impressive electro-activity and a favorable anodic reaction.
本研究揭示了用胺化修饰的葡萄糖氧化酶(GOx-NH)和羧基功能化介孔碳(OMC-COOH)制成的生物电极性能得到了改善。结果表明,通过10 mM EDC胺化处理后,根据H-NMR、元素组成和FTIR光谱分析,NH官能团成功添加到了GOx中。此外,与未修饰的GOx相比,胺化修饰后实现了酶固定化增加(124.01±1.49 mg GOx-NH/g OMC-COOH;增加了2.77倍)和酶活性增加(增加了1.17倍)。电化学分析表明,胺化修饰增强了Nafion/GOx-NH/OMC-COOH的峰值电流强度(增加了1.32倍),电荷转移系数(0.54)、表观电子转移速率常数(2.54 s)和表面覆盖率(2.91×10 mol·cm)均有所增加。结果表明,GOx-NH/OMC-COOH表现出令人印象深刻的电活性和良好的阳极反应。