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设计了 Tb(III)-功能化 MOF-808 作为可见荧光探针,用于监测胆红素和识别指纹。

Designed Tb(III)-Functionalized MOF-808 as Visible Fluorescent Probes for Monitoring Bilirubin and Identifying Fingerprints.

机构信息

College of Chemistry, Liaoning University, 66 Chongshan Middle Road, Shenyang, Liaoning 110036, People's Republic of China.

出版信息

Inorg Chem. 2021 Mar 1;60(5):3172-3180. doi: 10.1021/acs.inorgchem.0c03312. Epub 2021 Feb 18.

Abstract

Abnormal bilirubin (BR) level is a sign of several fatal diseases, so it is of great significance and challenge to develop a facile and effective family routine strategy for BR sensing. Herein, novel water-stable Tb@MOF-808 has been synthesized using a coordinated postsynthetic modification strategy and designed as a convenient and efficient fluorescence probe. The fabricated fluorescent probe exhibits a remarkable fluorescence quenching effect with the successive addition of BR, which displays fascinating features, such as fast response time, high sensitivity, and excellent selectivity. The quenching mechanism between the fluorescent probe and BR was also illustrated in detail. Importantly, the devised fluorescent probe successfully achieved the determination of BR in serum and urine, which has also been successfully used in the design of portable BR test paper. The developed monitoring platform for BR levels in vivo provides promising application potential for the prevention and early diagnosis of fatal diseases. Additionally, a molecular logic gate device that performs intelligent fluorescent sensing of BR was constructed. More interestingly, Tb@MOF-808 is used for development of latent fingerprints on different guest surfaces. The lines of the fluorescent fingerprints are clear and coherent, the details are obvious, and even sweat pores can be observed by naked eyes, which provides new means for tracking the criminal clue and handling cases efficiently.

摘要

胆红素(BR)水平异常是几种致命疾病的征兆,因此开发一种简便有效的 BR 感测家庭常规策略具有重要意义和挑战。在此,我们采用配位后合成修饰策略合成了新型水稳定的 Tb@MOF-808,并将其设计为一种方便、高效的荧光探针。所制备的荧光探针对 BR 的连续加入表现出显著的荧光猝灭效应,具有快速响应时间、高灵敏度和优异选择性等迷人特征。还详细说明了荧光探针与 BR 之间的猝灭机制。重要的是,设计的荧光探针成功实现了血清和尿液中 BR 的测定,并且已经成功用于便携式 BR 试纸的设计。体内 BR 水平的监测平台为致命疾病的预防和早期诊断提供了有前途的应用潜力。此外,构建了用于 BR 智能荧光传感的分子逻辑门器件。更有趣的是,Tb@MOF-808 用于开发不同客体表面上的潜伏指纹。荧光指纹的线条清晰连贯,细节明显,甚至可以用肉眼观察到汗孔,为追踪犯罪线索和高效办案提供了新手段。

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