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用于即时检测四环素的高稳定性荧光交通灯传感器。

Highly Stable Fluorescent-Traffic-Light Sensor for Point-of-Care Detection of Tetracycline.

机构信息

Hubei Key Laboratory of Pollutant Analysis & Reuse Technology, College of Chemistry and Chemical Engineering of Hubei Normal University, Huangshi, Hubei 435002, China.

出版信息

ACS Sens. 2023 Nov 24;8(11):4272-4280. doi: 10.1021/acssensors.3c01620. Epub 2023 Oct 20.

Abstract

Fluorescent point-of-care (POC) sensors have found great utility in fields like clinical diagnosis, food testing, and environmental monitoring. Herein, we developed a highly stable POC sensor that enabled the visual detection of tetracycline (TC) in a distinct fluorescent-traffic-light manner. In the sensor, a composite material of copper nanoclusters and metal-organic framework (CuNCs@MOF-5) prepared with a facile one-pot synthetic strategy was employed as the core element for target recognition and signal transduction. As evidenced by experiments, the as-prepared CuNCs@MOF-5 exhibited significantly improved fluorescence properties in terms of emission enhancement (about 28-fold) and stability improvement (over 110 days) compared to the CuNCs without confining and protection by MOF-5. More importantly, it was found that TC could uniquely interact with Zn(II) to trigger the disassembly of CuNCs@MOF-5, resulting in green fluorescence emission from the TC-Zn(II) complex and red fluorescence weakening of CuNCs. On the basis of this finding, a simple and stable sensor was proposed for POC detection of TC, which demonstrated high sensitivity, selectivity, and reproducibility. In addition to homogeneous visual detection in a 96-well plate, a CuNCs@MOF-5-contained agarose gel array was easily fabricated to achieve direct detection of TC in milk without any pretreatment, thanks to the size-sieving effect of the gel. Moreover, a test paper array was also put forward for low-cost TC detection, which indicates the extensibility and practicability of this sensing strategy.

摘要

荧光即时检测(POC)传感器在临床诊断、食品检测和环境监测等领域有广泛的应用。在此,我们开发了一种高稳定性的 POC 传感器,可实现四环素(TC)的可视化荧光交通灯式检测。在该传感器中,采用简便的一锅合成策略制备的铜纳米团簇和金属有机骨架(CuNCs@MOF-5)复合材料作为用于目标识别和信号转导的核心元素。实验结果表明,与没有 MOF-5 限制和保护的 CuNCs 相比,所制备的 CuNCs@MOF-5 表现出明显增强的荧光性能(约 28 倍)和稳定性改善(超过 110 天)。更重要的是,发现 TC 可以与 Zn(II) 独特地相互作用,触发 CuNCs@MOF-5 的解体,从而导致 TC-Zn(II) 配合物发出绿色荧光,同时 CuNCs 的红色荧光减弱。基于这一发现,提出了一种用于 TC 的 POC 检测的简单且稳定的传感器,该传感器具有高灵敏度、选择性和重现性。除了在 96 孔板中进行均匀的目视检测外,还可以通过凝胶的筛分作用,轻松制备含有 CuNCs@MOF-5 的琼脂糖凝胶阵列,实现对未经任何预处理的牛奶中 TC 的直接检测。此外,还提出了用于低成本 TC 检测的试纸阵列,这表明了这种传感策略的可扩展性和实用性。

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