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基于高活性烟酰胺腺嘌呤二核苷酸(NADH)氧化酶模拟物的底物竞争和仿生级联反应的创新比色 NQO1 检测策略。

Innovative Colorimetric NQO1 Detection Strategy via Substrate Competitive and Biomimetic Cascade Reactions with a Highly Active NADH Oxidase Mimic.

机构信息

Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China.

School of Applied Chemistry and Engineering, University of Science and Technology of China, Hefei 230026, China.

出版信息

Anal Chem. 2024 Aug 13;96(32):13308-13316. doi: 10.1021/acs.analchem.4c03003. Epub 2024 Jul 30.

Abstract

NAD(P)H: quinone oxidoreductase-1 (NQO1) plays critical roles in antioxidation and abnormally overexpresses in tumors. Developing a fast and sensitive method of monitoring NQO1 will greatly promote cancer diagnosis in clinical practice. This study introduces a transformative colorimetric detection strategy for NQO1, harnessing an innovative competitive substrate mechanism between NQO1 and a new NADH oxidase (NOX) mimic, cobalt-nitrogen-doped carbon nanozyme (CoNC). This method ingeniously exploits the differential consumption of NADH in the presence of NQO1 to modulate the generation of HO from CoNC catalysis, which is then quantified through a secondary, peroxidase-mimetic cascade reaction involving Prussian blue (PB) nanoparticles. This dual-stage reaction framework not only enhances the sensitivity of NQO1 detection, achieving a limit of detection as low as 0.67 μg mL, but also enables the differentiation between cancerous and noncancerous cells by their enzymatic activity profiles. Moreover, CoNC exhibits exceptional catalytic efficiency, with a specific activity reaching 5.2 U mg, significantly outperforming existing NOX mimics. Beyond mere detection, CoNC serves a dual role, acting as both a robust mimic of cytochrome c reductase (Cyt c) and a cornerstone for enzymatic regeneration, thereby broadening the scope of its biological applications. This study not only marks a significant step forward in the bioanalytical application of nanozymes but also sets the stage for their expanded use in clinical diagnostics and therapeutic monitoring.

摘要

NAD(P)H:醌氧化还原酶-1(NQO1)在抗氧化中起着关键作用,并且在肿瘤中异常过表达。开发一种快速、灵敏的 NQO1 监测方法将极大地促进临床实践中的癌症诊断。本研究介绍了一种用于 NQO1 的变革性比色检测策略,利用 NQO1 与新型 NADH 氧化酶(NOX)模拟物——钴氮掺杂碳纳米酶(CoNC)之间的创新竞争底物机制。该方法巧妙地利用了存在 NQO1 时 NADH 的差异消耗来调节 CoNC 催化产生的 HO,然后通过涉及普鲁士蓝(PB)纳米粒子的二次过氧化物酶模拟级联反应来定量。这种双级反应框架不仅增强了 NQO1 检测的灵敏度,实现了低至 0.67 μg mL 的检测限,而且还可以通过其酶活性谱来区分癌细胞和非癌细胞。此外,CoNC 表现出出色的催化效率,其比活性达到 5.2 U mg,明显优于现有的 NOX 模拟物。CoNC 不仅可以作为细胞色素 c 还原酶(Cyt c)的强大模拟物,而且还可以作为酶再生的基石,从而拓宽了其生物应用范围。这项研究不仅标志着纳米酶在生物分析应用方面的重大进展,而且为其在临床诊断和治疗监测中的广泛应用奠定了基础。

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