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基于发光 MOF 的非酶探针用于体液中尿酸的比色/光热/荧光三模式测定。

A luminescent MOF-based nonenzymatic probe for colorimetric/photothermal/fluorescence triple-mode assay of uric acid in body fluids.

机构信息

College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, Hunan, China.

College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, Hunan, China.

出版信息

Talanta. 2024 Jan 15;267:125201. doi: 10.1016/j.talanta.2023.125201. Epub 2023 Sep 15.

DOI:10.1016/j.talanta.2023.125201
PMID:37722345
Abstract

Monitoring the levels of uric acid (UA) in body fluids is of great significance in the clinical diagnosis and therapy of related diseases. Herein, a novel nanocomposite R6G@Fe-MOF based nonenzymatic probe is presented to provide a ratiometric fluorescent, colorimetric, and photothermal triple read-out signal for the visual, sensitive, and convenient assay of UA. The framework structure of the in situ encapsulated R6G@Fe-MOF is found to decompose upon the addition of UA, resulting in the reduction of Fe to Fe. This reduction will lead to a rapid increase in fluorescence emission (FL) at 430 nm. Simultaneously, the FL at 573 nm will decrease remarkably due to the inner filter effect (IFE) between UA and R6G@Fe-MOF. Furthermore, the reaction of the generated Fe with potassium ferricyanide (K [Fe(CN)]) can in situ generate Prussian blue (PBNPs) with outstanding color and photothermal properties, which allow for easy colorimetric and photothermal signal readout. The detection limits (LOD) for the colorimetric, fluorometric and photothermal detection are low at 1.68 μM, 0.236 μM, and 1.32 μM respectively. Ultimately, it is successfully employed to determine UA in urine, serum, and saliva, yielding satisfactory results. The constructed R6G@Fe-MOF sensor provides a simple, sensitive, and accurate determination of UA that can be tailored to meet the needs of various applications, and also provides new perspectives for the design and development of versatile sensors for diverse uses.

摘要

监测体液中的尿酸 (UA) 水平对于相关疾病的临床诊断和治疗具有重要意义。在此,提出了一种新型的基于纳米复合 R6G@Fe-MOF 的非酶探针,为 UA 的可视化、灵敏和方便测定提供了比率荧光、比色和光热三重读出信号。发现原位封装的 R6G@Fe-MOF 的框架结构在加入 UA 后会分解,导致 Fe 还原为 Fe。这种还原会导致在 430nm 处的荧光发射 (FL) 迅速增加。同时,由于 UA 和 R6G@Fe-MOF 之间的内滤效应 (IFE),在 573nm 处的 FL 会显著降低。此外,生成的 Fe 与铁氰化钾 (K[Fe(CN)]) 的反应可以原位生成具有出色颜色和光热性能的普鲁士蓝 (PBNPs),从而可以轻松进行比色和光热信号读出。比色、荧光和光热检测的检测限 (LOD) 分别低至 1.68μM、0.236μM 和 1.32μM。最终,它成功地用于测定尿液、血清和唾液中的 UA,结果令人满意。所构建的 R6G@Fe-MOF 传感器提供了一种简单、灵敏和准确的 UA 测定方法,可以根据需要进行定制,以满足各种应用的需求,并为多功能传感器的设计和开发提供了新的视角,以满足各种用途的需求。

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