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双增强电化学发光器件用于鱼类、毛发和指甲样品中超痕量铀的可视化监测。

Dual-Enhancement Electrochemiluminescence Device for Ultratrace Uranium Visualized Monitoring in Fish, Hair, and Nail Samples.

机构信息

State Key Laboratory of Radiation Medicine and Protection, School for Radiological and Interdisciplinary Sciences (RAD-X), Collaborative Innovation Center of Radiological Medicine of Jiangsu Higher Education Institutions, Soochow University, 199 Ren'ai Road, Suzhou 215123, China.

Chinese Cultural Teaching Centre, Xi'an Jiaotong-Liverpool University, 111 Ren'ai Road, Suzhou 215123, China.

出版信息

Anal Chem. 2024 Sep 10;96(36):14604-14611. doi: 10.1021/acs.analchem.4c03130. Epub 2024 Aug 27.

Abstract

Uranium is a nuclear fuel but also a hazardous contaminant due to its radioactivity and chemical toxicity. To prevent and mitigate its potential threat, the accurate monitoring of ultratrace uranium (orders of magnitude of pg g) in practical environmental samples has become an important scientific problem. To meet this challenge, we developed an efficient electrochemiluminescence (ECL) UO detection device by a novel dual-enhancement mechanism. In detail, poly[(9,9-dioctylfuor-enyl-2,7-diyl)--co-(1,4-benzo-{2,1,3}-thiadiazole)] polymer dots (Pdots) are modified by the UO DNA aptamer, and rhodamine B (RhB) is combined with dsDNA to quench the ECL signal via a resonance energy transfer (RET) process. UO can cut off the DNA aptamer to release RhB, which generates an ECL enhancement process, and then, UO continuously combines with the DNA chain, inducing another ECL enhancement by the RET process from UO to Pdots. This device achieves an ultralow detection limit (12 pg L) and a wide linear range (113 pg L-11.3 mg L), which can successfully give accurate determination results to the ultratrace uranium in biosamples (<1 pg g) to monitor the uranium simulation of fish. This work presents an efficient strategy for ultratrace uranium determination in the environment, highlighting its significance in public health and environmental fields.

摘要

铀既是核燃料,也是一种危险的污染物,因为它具有放射性和化学毒性。为了预防和减轻其潜在威胁,准确监测实际环境样品中超痕量铀(数量级为 pg g)已成为一个重要的科学问题。为了应对这一挑战,我们通过一种新的双重增强机制开发了一种高效的电致化学发光(ECL)UO 检测装置。具体而言,通过 UO DNA 适体修饰聚[(9,9-二辛基芴-2,7-二基)-共-(1,4-苯并-[2,1,3]-噻二唑)]聚合物点(Pdots),并将吖啶红(RhB)与 dsDNA 结合,通过共振能量转移(RET)过程猝灭 ECL 信号。UO 可以切断 DNA 适体以释放 RhB,从而产生 ECL 增强过程,然后,UO 不断与 DNA 链结合,通过 UO 到 Pdots 的 RET 过程诱导另一个 ECL 增强。该装置实现了超低检测限(12 pg L)和较宽的线性范围(113 pg L-11.3 mg L),可以成功地对生物样品中的超痕量铀(<1 pg g)进行准确测定,以监测鱼类中的铀模拟。这项工作提出了一种在环境中测定超痕量铀的有效策略,突出了其在公共卫生和环境领域的重要性。

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