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基于靶标特异性静电诱导聚集的纳米酶催化比率型多色检测肝素。

Nanozyme catalysis-assisted ratiometric multicolor sensing of heparin based on target-specific electrostatic-induced aggregation.

机构信息

Institute of Green Chemistry and Chemical Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, 212013, China; Key Laboratory of Functional Molecular Solids of Ministry of Education, Anhui Normal University, Wuhu, 241002, China; State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin, 150090, China.

Institute of Green Chemistry and Chemical Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, 212013, China.

出版信息

Talanta. 2022 Feb 1;238(Pt 1):123003. doi: 10.1016/j.talanta.2021.123003. Epub 2021 Oct 28.

Abstract

Monitoring the level of heparin in clinical matrices is significant because of its pivotal role in preventing thrombosis. Compared to traditional single-signal sensors, multi-signal ratiometric detection can provide anti-interference results especially in complicated environments. However, fabricating an easy-to-operation, low-cost and robust sensor for the ratiometric detection of heparin still remains challenging. Here we propose a novel nanosensor for the ratiometric multicolor sensing of heparin with high performance. The sensor is based on the specific electrostatic interaction between the target and a positively charged species generated from nanozyme catalysis. FeMoO nanorods are explored as an oxidase mimic for the first time, showing a high activity at neutral pH to catalyze the colorless 3,3',5,5'-tetramethylbenzidine (TMB) oxidation to blue TMBox with an absorbance at 652 nm. Heparin can induce the rapid aggregation of the produced TMBox intermediate with rich positive charges due to their strong electrostatic interaction, leading to the formation of a purple Heparin-TMBox complex providing a signal at 565 nm. With the increase of heparin, the color changes from blue to indigo and further purple, enabling the multicolor sensing of the target. As a result, ultrasensitive determination of heparin was obtained with a very low detection limit. The fabricated nanosensor could differentiate heparin from complex species with no interferences, and it provided reliable analytical results for heparin in both serum and plasma. With robust performance, low cost and facile fabrication, the sensor holds great potential in monitoring heparin for clinical applications.

摘要

监测临床基质中肝素的水平非常重要,因为它在预防血栓形成方面起着关键作用。与传统的单信号传感器相比,多信号比率检测可以提供抗干扰的结果,尤其是在复杂环境中。然而,制造一种易于操作、低成本且稳健的传感器,用于肝素的比率检测仍然具有挑战性。在这里,我们提出了一种用于肝素比率多色传感的新型纳米传感器,具有优异的性能。该传感器基于目标与纳米酶催化产生的带正电荷物质之间的特定静电相互作用。首次探索了 FeMoO 纳米棒作为氧化酶模拟物,在中性 pH 下表现出很高的活性,可催化无色 3,3',5,5'-四甲基联苯胺 (TMB) 氧化为蓝色 TMBox,在 652nm 处具有吸光度。由于其强静电相互作用,肝素可以诱导产生的 TMBox 中间体迅速聚集,带正电荷丰富,导致形成带正电荷丰富的紫色肝素-TMBox 复合物,在 565nm 处提供信号。随着肝素的增加,颜色从蓝色变为靛蓝色,再变为紫色,实现了对目标的多色传感。因此,实现了肝素的超灵敏测定,检测限非常低。所制备的纳米传感器可以区分肝素与复杂物质,没有干扰,并且可以为血清和血浆中的肝素提供可靠的分析结果。该传感器具有稳健的性能、低成本和易于制造,在临床应用中监测肝素具有很大的潜力。

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