State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, People's Republic of China.
Institut de Chimie Moléculaire (ICMUB), CNRS UMR 6302, UBFC, Dijon 21078, France.
Anal Chem. 2022 May 24;94(20):7295-7302. doi: 10.1021/acs.analchem.2c00600. Epub 2022 May 13.
A high catalytic efficiency associated with a robust chemical structure are among the ultimate goals when developing new biocatalytic systems for biosensing applications. To get ever closer to these goals, we report here on a combination of metal-organic framework (MOF)-based nanozymes and a G-quadruplex (G4)-based catalytic system known as G4-DNAzyme. This approach aims at combining the advantages of both partners (chiefly, the robustness of the former and the modularity of the latter). To this end, we used MIL-53(Fe) MOF and linked it covalently to a G4-forming sequence (F3TC), itself covalently linked to its cofactor hemin. The resulting complex (referred to as MIL-53(Fe)/G4-hemin) exhibited exquisite peroxidase-mimicking oxidation activity and an excellent robustness (being stored in water for weeks). These properties were exploited to devise a new biosensing system based on a cascade of reactions catalyzed by the nanozyme (ABTS oxidation) and an enzyme, the alkaline phosphatase (or ALP, ascorbic acid 2-phosphate dephosphorylation). The product of the latter poisoning the former, we thus designed a biosensor for ALP (a marker of bone diseases and cancers), with a very low limit of detection (LOD, 0.02 U L), which is operative in human plasma samples.
当开发用于生物传感应用的新生物催化系统时,高催化效率和稳健的化学结构是最终目标之一。为了更接近这些目标,我们在此报告了一种基于金属有机骨架(MOF)的纳米酶和一种称为 G4-DNA 酶的基于 G-四链体(G4)的催化系统的组合。这种方法旨在结合两者的优势(主要是前者的稳健性和后者的模块化)。为此,我们使用了 MIL-53(Fe) MOF,并将其共价连接到形成 G4 的序列(F3TC)上,该序列本身又与辅因子血红素共价连接。所得复合物(称为 MIL-53(Fe)/G4-血红素)表现出出色的过氧化物酶模拟氧化活性和极好的稳健性(在水中储存数周)。这些特性被用于设计一种新的生物传感系统,该系统基于纳米酶(ABTS 氧化)和一种酶(碱性磷酸酶(或 ALP,抗坏血酸 2-磷酸去磷酸化)催化的级联反应。后者的产物抑制了前者,因此我们设计了一种用于 ALP(骨病和癌症的标志物)的生物传感器,其检测限(LOD,0.02 U L)非常低,可在人血浆样本中使用。