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仿生双血红素键合 G-四链体和组氨酸功能化金属有机骨架用于灵敏生物传感。

Bioinspired Dual Hemin-Bonded G-Quadruplex and Histidine-Functionalized Metal-Organic Framework for Sensitive Biosensing.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, PR China.

Chongqing Key Laboratory of Speciality Food Co-Built by Sichuan and Chongqing, College of Food Science, Southwest University, Chongqing 400715, PR China.

出版信息

Anal Chem. 2024 Aug 20;96(33):13371-13378. doi: 10.1021/acs.analchem.4c00010. Epub 2024 Aug 8.

Abstract

Biomimetic enzymes have emerged as ideal alternatives to natural enzymes, and there is considerable interest in designing biomimetic enzymes with enhanced catalytic performance to address the low activity of the current biomimetic enzymes. In this study, we proposed a meaningful strategy for constructing an efficient peroxidase-mimicking catalyst, called HhG-MOF, by anchoring histidine (H) and dual hemin-G-quadruplex DNAzyme (double hemin covalently linked to 3' and 5' terminals of G-quadruplex DNA, short as hG) to a mesoporous metal-organic framework (MOF). This design aims to mimic the microenvironment of natural peroxidase. Remarkably, taking a terbium MOF as a typical model, the initial rate of the resulting catalyst was found to be 21.1 and 4.3 times higher than that of Hh-MOF and hG-MOF, respectively. The exceptional catalytic properties of HhG-MOF can be attributed to its strong affinity for substrates. Based on the inhibitory effect of thiocholine (TCh) produced by the reaction between acetylcholinesterase (AChE) and acetylthiocholine, a facile, cost-effective, and sensitive colorimetric method was designed based on HhG-MOF for the measurement of AChE, a marker of several neurological diseases, and its inhibitor. This allowed a linear response in the 0.002 to 1 U L range, with a detection limit of 0.001 U L. Furthermore, the prepared sensor demonstrated great selectivity and performed well in real blood samples, suggesting that it holds promise for applications in the clinical field.

摘要

仿生酶已成为天然酶的理想替代品,设计具有增强催化性能的仿生酶以解决当前仿生酶活性低的问题引起了相当大的兴趣。在这项研究中,我们提出了一种构建高效过氧化物酶模拟催化剂的有意义策略,称为 HhG-MOF,方法是将组氨酸(H)和双血红素 G-四链体 DNA 酶(双血红素共价连接到 G-四链体 DNA 的 3'和 5'末端,简称 hG)固定在介孔金属有机骨架(MOF)上。这种设计旨在模拟天然过氧化物酶的微环境。值得注意的是,以铽 MOF 为典型模型,发现所得催化剂的初始速率分别比 Hh-MOF 和 hG-MOF 高 21.1 倍和 4.3 倍。HhG-MOF 的出色催化性能可归因于其对底物的强亲和力。基于乙酰胆碱酯酶(AChE)与乙酰硫代胆碱反应生成的硫代胆碱(TCh)的抑制作用,基于 HhG-MOF 设计了一种简便、经济且灵敏的比色法来测量 AChE,AChE 是几种神经疾病的标志物及其抑制剂。这使得在 0.002 至 1 U L 的范围内呈现线性响应,检测限为 0.001 U L。此外,制备的传感器表现出出色的选择性,在实际血液样本中表现良好,表明其在临床领域具有应用前景。

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