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具有焦磷酸根介导过氧化物酶样活性和氧化刺激荧光开关的双功能 MIL-53(Fe) 用于碱性磷酸酶检测。

Bifunctional MIL-53(Fe) with pyrophosphate-mediated peroxidase-like activity and oxidation-stimulated fluorescence switching for alkaline phosphatase detection.

机构信息

Institute of Green Chemistry and Chemical Technology, School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang 212013, China.

出版信息

J Mater Chem B. 2019 Aug 7;7(31):4794-4800. doi: 10.1039/c9tb00951e.

Abstract

Alkaline phosphatase (ALP) is extensively used as a clinical biomarker because of its close relevance with a variety of diseases. Thus, exploring reliable and practical methods for ALP analysis is of great significance. In the present work, we explored MIL-53(Fe) as a bifunctional platform with pyrophosphate (PPi)-mediated peroxidase-like activity and oxidation-stimulated fluorescence switching for ALP sensing. The proposed MIL-53(Fe) could exhibit favorable peroxidase-mimicking activity to catalytically decompose H2O2 to hydroxyl radicals, which had strong oxidizing ability to oxidize the terephthalic acid bridging ligand, resulting in the oxidation-stimulated turn-on fluorescence of MIL-53(Fe) itself. Due to the strong coordination interaction between PPi and Fe3+, the former with a relatively large molecular structure was able to inhibit the catalytic activity of MIL-53(Fe) via capping active Fe3+ sites, leading to the suppression of its self-fluorescence response. When ALP was present, it could hydrolyze the PPi inhibitor and restore the dual functions of MIL-53(Fe) to provide fluorescence again. With the above principle, highly sensitive and selective determination of ALP with a linear scope of 2-80 U L-1 and a detection limit down to 0.7 U L-1 was achieved. The MIL-53(Fe) was also demonstrated to be very reliable in measuring the target in human serum, indicating its great promise as an integrated tool for ALP detection in clinical practice.

摘要

碱性磷酸酶(ALP)因其与多种疾病密切相关,被广泛用作临床生物标志物。因此,探索可靠实用的 ALP 分析方法具有重要意义。在本工作中,我们探索了 MIL-53(Fe) 作为一种具有焦磷酸(PPi)介导的过氧化物酶样活性和氧化刺激荧光开关的双功能平台,用于 ALP 传感。所提出的 MIL-53(Fe) 可以表现出良好的过氧化物酶模拟活性,催化分解 H2O2 产生羟基自由基,具有很强的氧化能力,可以氧化间苯二甲酸桥联配体,导致 MIL-53(Fe) 自身的氧化刺激荧光开启。由于 PPi 与 Fe3+之间具有很强的配位相互作用,前者具有相对较大的分子结构,能够通过封闭活性 Fe3+位点来抑制 MIL-53(Fe) 的催化活性,从而抑制其自身荧光响应。当存在 ALP 时,它可以水解 PPi 抑制剂并恢复 MIL-53(Fe) 的双重功能,再次提供荧光。基于上述原理,实现了对 ALP 的高灵敏度和选择性测定,线性范围为 2-80 U L-1,检测限低至 0.7 U L-1。MIL-53(Fe) 还被证明在测量人血清中的目标物时非常可靠,表明其在临床实践中作为 ALP 检测的综合工具具有很大的应用前景。

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