Chen Xiaojiao, Yang Zhiying, Chen Qiong, Zhang Youyu
Changsha Health Vocational College, Changsha, China.
Key Laboratory of Chemical Biology and Traditional Chinese Medicine Research, Ministry of Education, College of Chemistry and Chemical Engineering, Hunan Normal University, Changsha, China.
Front Bioeng Biotechnol. 2023 Apr 10;11:1168086. doi: 10.3389/fbioe.2023.1168086. eCollection 2023.
Accurate blood glucose determination is essential to the clinical diagnosis and management of diabetes. This work establishes an inner filter effect (IFE) strategy between upconversion nanoparticles (UCNPs) and quinone-imine complex for glucose monitoring in human serum simply and efficiently. In this system, the enzyme glucose oxidase (GOx) catalyzes the reaction of glucose into hydrogen peroxide (HO) and gluconic acid when compulsion by oxygen. In the presence of horseradish peroxidase (HRP), the produced HO can catalytically oxidize phenol and 4-amino antipyrine (4-AAP) to generate quinone-imine products. The purple-colored quinone-imine complex effectively absorbed the fluorescence of NaYF:Yb, Er UCNPs, leading to the strong fluorescence quenching of UCNPs through IFE. Thus, a new approach was established for glucose monitoring by determining the fluorescence intensity. Under the optimal condition, this approach shows better linearity to glucose from 2-240 μmol/L with a low detection limit at 1.0 μmol/L. Owing to the excellent fluorescence property and background-free interference of the UCNPs, the biosensor was applied for glucose measurements in human serum and got a satisfactory result. Furthermore, this sensitive and selective biosensor revealed great potential for the quantitative analysis of blood glucose or different kinds of HO-involved biomolecules for the application of clinical diagnosis.
准确测定血糖对于糖尿病的临床诊断和管理至关重要。这项工作建立了一种上转换纳米颗粒(UCNPs)与醌亚胺配合物之间的内滤光效应(IFE)策略,用于简单高效地监测人血清中的葡萄糖。在该系统中,葡萄糖氧化酶(GOx)在氧气存在的情况下催化葡萄糖反应生成过氧化氢(HO)和葡萄糖酸。在辣根过氧化物酶(HRP)存在下,生成的HO可催化氧化苯酚和4-氨基安替比林(4-AAP)生成醌亚胺产物。紫色的醌亚胺配合物有效地吸收了NaYF:Yb, Er UCNPs的荧光,通过IFE导致UCNPs的强烈荧光猝灭。因此,建立了一种通过测定荧光强度来监测葡萄糖的新方法。在最佳条件下,该方法对2-240 μmol/L的葡萄糖具有较好的线性,检测限低至1.0 μmol/L。由于UCNPs具有优异的荧光性能和无背景干扰,该生物传感器用于人血清中的葡萄糖测量并获得了满意的结果。此外,这种灵敏且选择性的生物传感器在血糖或不同种类涉及HO的生物分子的定量分析用于临床诊断应用方面显示出巨大潜力。