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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A highly selective and sensitive fluorescent sensor based on Tb3+-functionalized MOFs to determine arginine in urine: a potential application for the diagnosis of cystinuria
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A highly selective and sensitive fluorescent sensor based on Tb3+-functionalized MOFs to determine arginine in urine: a potential application for the diagnosis of cystinuria

机译:基于TB3 +官能化的MOF的高选择性和敏感的荧光传感器,以确定尿液中的精氨酸:诊断胱氨酸尿的潜在应用

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摘要

A unique metal-organic framework with the formula [Cd-4(H2L)(2)(L)center dot H2O]center dot 3H(2)O (H4L = 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 Tb3+ cations, the as-synthesized Tb3+@Cd-MOF demonstrated strong luminescence induced by the efficient energy transfer from the bridging ligands to the Tb3+ cations, with the potential to serve as a chemical sensor. Interestingly, Tb3+@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 Tb3+-functionalized MOF hybrids, which may be a potential candidate for the further development of clinical diagnostic tools.
机译:具有公式[CD-4(H2L)(2)(1)中心点H2O]中心点3H(2)O(H4L = 5,5'(1H-1,2,4-)的独特金属 - 有机骨架。(1H-1,2,4-在溶剂热条件下成功构建三唑-3,5-二基)二苯甲酸。具有多种自由lewis基地和路易斯酸部位的框架易于敏感的性质。在TB3 +阳离子的封装之后,AS合成的TB3 + / @ CD-MOF通过从桥接配体到TB3 +阳离子的有效能量转移来表现出强烈的发光,其可能用作化学传感器。有趣的是,被证明的TB3 + @ CD-MOF是一个非常有前途和高度选择性和敏感的发光平台,用于对精氨酸进行定量检测,这是胱氨酸尿的生物标志物。荧光探针对尿液中的精氨酸具有很高的选择性,具有强烈的发光淬火。此外,制备了一种方便的基于荧光的试验,用于视觉检测应用中的应用。首次,通过基于Tb3 + -Funcilalized MOF杂种的高效可回收荧光传感器量化并在尿液中定量和监测精氨酸,这可能是临床诊断工具进一步发展的潜在候选者。

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