Department of Chemistry, Capital Normal University, Beijing 100048, China.
Anal Chem. 2020 Mar 17;92(6):4583-4591. doi: 10.1021/acs.analchem.9b05872. Epub 2020 Feb 25.
The continuous detection of glucose is significant for revealing its role in neuron protection and for diagnosis of various diseases. In this study, for the first time, a nonenzymatic online optical detection platform (OODP) for glucose measurement in rat brain utilizing the tandem enzyme activity of VO nanobelts is developed. VO nanobelts were synthesized via a facile solvothermal strategy, and for the first time it is found that the VO nanobelts possess dual enzyme-like activity, i.e., glucose oxidase (GOx)-like and peroxidase-like activity, and can act as a "tandem nanozyme". To investigate the mechanisms of the GOx-like property, we built an adsorption model, and the RPBE density functional calculations indicate that the glucose molecule can be adsorbed on the VO plane. Based on the ability of VO nanobelts to mimick tandem enzymes, a nonenzymatic online optical detection platform (OODP) for the continuous monitoring of glucose in rat brain was designed, which exhibits excellent stability, high selectivity, and a wide linear detection range from 0.2 to 5 mM and records cerebral glucose alterations in the calm/ischemia model. This facile but reliable nonenzymatic online optical glucose measurement compares favorably with natural enzyme-based online electrochemical glucose analytical systems, and its ready adoption by physiologists and pathologists will facilitate the understanding of brain function and the pathogenesis of diabetes.
连续检测葡萄糖对于揭示其在神经元保护中的作用以及诊断各种疾病具有重要意义。在这项研究中,我们首次开发了一种基于串联酶活性的 VO 纳米带的非酶在线光学检测平台(OODP),用于测量大鼠脑内的葡萄糖。通过简便的溶剂热策略合成了 VO 纳米带,首次发现 VO 纳米带具有葡萄糖氧化酶(GOx)样和过氧化物酶样双重酶活性,可以充当“串联纳米酶”。为了研究 GOx 样性质的机制,我们构建了一个吸附模型,RPBE 密度泛函计算表明葡萄糖分子可以吸附在 VO 平面上。基于 VO 纳米带模拟串联酶的能力,设计了一种用于大鼠脑内葡萄糖连续监测的非酶在线光学检测平台(OODP),该平台具有出色的稳定性、高选择性和从 0.2 到 5 mM 的宽线性检测范围,并记录到在安静/缺血模型中的脑内葡萄糖变化。这种简单但可靠的非酶在线光学葡萄糖测量方法优于基于天然酶的在线电化学葡萄糖分析系统,它的广泛采用将有助于生理学家和病理学家更好地理解大脑功能和糖尿病的发病机制。