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基于 Tb 功能化 MOFs 的高选择性和高灵敏度荧光传感器用于测定尿液中的精氨酸:胱氨酸尿症诊断的潜在应用。

A highly selective and sensitive fluorescent sensor based on Tb-functionalized MOFs to determine arginine in urine: a potential application for the diagnosis of cystinuria.

机构信息

Inner Mongolia Key Laboratory of Chemistry and Physics of Rare Earth Materials, School of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, P.R. China.

出版信息

Analyst. 2019 Oct 7;144(19):5875-5881. doi: 10.1039/c9an01204d. Epub 2019 Sep 5.

Abstract

A unique metal-organic framework with the formula [Cd(HL)(L)·HO]·3HO (HL = 5,5'-(1H-1,2,4-triazole-3,5-diyl)diisophthalic acid) was successfully constructed under solvothermal conditions. The frameworks with multiple free Lewis base sites and Lewis acid sites exhibited easily sensitized properties. After the encapsulation of Tb cations, the as-synthesized Tb@Cd-MOF demonstrated strong luminescence induced by the efficient energy transfer from the bridging ligands to the Tb cations, with the potential to serve as a chemical sensor. Interestingly, Tb@Cd-MOF was proven to be a very promising and highly selective and sensitive luminescent platform for the quantitative detection of arginine, which is the biomarker of cystinuria. The fluorescent probe presented high selectivity to arginine in urine with strong luminescence quenching. Furthermore, a convenient fluorescence-based test paper for the visual detection of arginine in applications was prepared. For the first time, arginine was quantified and monitored in urine by a highly efficient recyclable fluorescent sensor based on Tb-functionalized MOF hybrids, which may be a potential candidate for the further development of clinical diagnostic tools.

摘要

在溶剂热条件下成功构建了具有化学式[Cd(HL)(L)·HO]·3HO(HL=5,5'-(1H-1,2,4-三唑-3,5-二基)二异苯二甲酸)的独特金属有机骨架。该骨架具有多个游离路易斯碱位点和路易斯酸位点,表现出易于敏化的特性。在封装Tb 阳离子后,所合成的Tb@Cd-MOF 表现出由桥连配体向 Tb 阳离子的高效能量转移诱导的强发光,有望作为化学传感器。有趣的是,Tb@Cd-MOF 被证明是一种非常有前途的、高度选择性和灵敏的发光平台,可用于定量检测精氨酸,精氨酸是胱氨酸尿症的生物标志物。荧光探针在尿液中对精氨酸表现出高选择性和强烈的荧光猝灭。此外,还制备了一种用于应用中精氨酸可视化检测的便捷荧光测试纸条。首次基于 Tb 功能化 MOF 杂化物的高效可回收荧光传感器对尿液中的精氨酸进行了定量和监测,这可能是进一步开发临床诊断工具的潜在候选者。

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