4.7 Article

MoO2 and N-Doped Carbon Nano-Octahedron Nanozymes for Sensitive Detection of Alkaline Phosphatase

期刊

ACS APPLIED NANO MATERIALS
卷 6, 期 9, 页码 7775-7784

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsanm.3c00846

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carbon-based nanozymes; MoO2@NPC; colorimetric method; detection; ALP

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In this study, a catalytic reaction-based colorimetric method was developed using a nanostructured MoO2@NPC as an oxidase mimetic to monitor ALP activity. The method provides a simple and efficient approach for the determination of ALP.
As a typical biomarker for clinical diagnosis of diseases, alkaline phosphatase (ALP) plays a crucial role in regulating the dephosphorylation of biomolecules. Consequently, it is necessary to develop an effective and simple method for the determination of ALP activity. In this work, we report a catalytic reaction-based colorimetric method to monitor ALP activity by using a nanostructured MoO2@NP-doped carbon nano-octahedron (MoO2@NPC) as a favorable oxidase mimetic. Because the C-O bond generated in the nano octahedron MoO2@NPC regulates the electronic valence state of Mo between +5 and +6, the as-prepared MoO2@NPC regular octahedron with good peroxide-like (POD-like) properties and colorless 3,3 ',5,5 '-tetramethylbenzidine dihydrochloride hydrate (TMB) can be catalyzed to dark-blue oxTMB. When ALP hydrolyzes the substrate AAP, the produced AA with a certain reducing ability can not only reduce oxTMB to TMB but also consume hydroxyl radicals (center dot OH) generated in the MoO2@NPC/H2O2/TMB system, which significantly inhibits the color reaction of TMB. On this basis, a simple and efficient colorimetric method for ALP was constructed based on carbon-based nanozymes. Furthermore, the system goes for the detection of ALP with high sensitivity for the first time. The linearity is good in the range of 0.5-30 U/L, and the detection limit was 0.02 U/L and had good stability and reproducibility. Reliable and accurate measurements of analytes in real samples were also validated by our analytical method, showing that it can provide a reliable, convenient, and efficient nanoplatform for clinical diagnosis of ALP activity.

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