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限域催化的 MOF-818 纳米酶和心肌肌钙蛋白 I 的比色适体传感

Confined catalysis of MOF-818 nanozyme and colorimetric aptasensing for cardiac troponin I.

机构信息

Jiangsu Key Laboratory of Green Synthetic Chemistry for Functional Materials, School of Chemistry and Materials Science, Jiangsu Normal University, Xuzhou 221116, China.

Jiangsu Key Laboratory of Green Synthetic Chemistry for Functional Materials, School of Chemistry and Materials Science, Jiangsu Normal University, Xuzhou 221116, China.

出版信息

Talanta. 2023 Jan 15;252:123830. doi: 10.1016/j.talanta.2022.123830. Epub 2022 Aug 12.

Abstract

Understanding the catalytic performance of nanozymes assembled in confined environment is an interesting topic. Herein, a three-dimensional nanozyme-catalytic nanoreactor was constructed by confining MOF-818 nanozyme in the pore of macroporous tungsten trioxide (p-WO). The catalytic activity of MOF-818 assembled in-situ for the oxidation of 3,5-Di-tert-butylcatechol (3,5-DTBC) could be regulated by changing the pore size of p-WO. Only when being confined in the pores of p-WO with an appropriate pore size, MOF-818 could exhibit high affinity towards 3,5-DTBC, and excellent catalytic activity for 3,5-DTBC oxidation, the catalytic rate constant k and Michaelis constant K were determined to be 31.47 s and 1.42 mM, respectively, and the maximum yield of 3,5-DTBC oxidation reached 95.2%. Furthermore, the as-constructed nanozyme-catalytic nanoreactor could be designed to construct a colorimetric aptasensor for selective determining cardiac troponin I based on the enzymatic inhibition effect and the exonuclease I-assisted target recycling signal amplification, which exhibited a good linear range of 50 fg mL - 100 ng mL, low detection limit of 18 fg mL, and was applied for human serum analysis with RSD less than 5.2% and the recoveries ranged from 95% to 107%.

摘要

理解限域环境中组装的纳米酶的催化性能是一个有趣的课题。在此,通过将 MOF-818 纳米酶限域在大孔三氧化钨(p-WO)的孔中,构建了一种三维纳米酶催化纳米反应器。通过改变 p-WO 的孔径,可以调节原位组装的 MOF-818 对 3,5-二叔丁基邻苯二酚(3,5-DTBC)氧化的催化活性。只有当 MOF-818 被限域在具有适当孔径的 p-WO 孔中时,它才能对 3,5-DTBC 表现出高亲和力和优异的催化活性,测定的催化速率常数 k 和米氏常数 K 分别为 31.47 s 和 1.42 mM,3,5-DTBC 氧化的最大产率达到 95.2%。此外,所构建的纳米酶催化纳米反应器可用于设计基于酶抑制效应和外切酶 I 辅助靶标循环信号放大的选择性测定心肌肌钙蛋白 I 的比色适体传感器,该传感器表现出良好的线性范围为 50 fg mL - 100 ng mL -1,检测限低至 18 fg mL -1,并且应用于人血清分析,RSD 小于 5.2%,回收率范围为 95%至 107%。

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