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首页> 外文期刊>Analytical chemistry >Boronate Affinity Fluorescent Nanoparticles for Forster Resonance Energy Transfer Inhibition Assay of cis-Diol Biomolecules
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Boronate Affinity Fluorescent Nanoparticles for Forster Resonance Energy Transfer Inhibition Assay of cis-Diol Biomolecules

机译:硼酸酯亲和荧光纳米粒子的顺式-二醇生物分子的Forster共振能量转移抑制测定

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摘要

Forster resonance energy transfer (FRET) has been essential for many applications, in which an appropriate donor acceptor pair is the key. Traditional dye-to-dye combinations remain the working horses but are rather nonspecifically susceptive to environmental factors (such as ionic strength, pH, oxygen, etc.). Besides, to obtain desired selectivity, functionalization of the donor or acceptor is essential but usually tedious. Herein, we present fluorescent poly(m-aminophenylboronic acid) nanoparticles (poly-(mAPBA) NPs) synthesized via a simple procedure and demonstrate a FRET scheme with suppressed environmental effects for the selective sensing of cis-diol biomolecules. The NPs exhibited stable fluorescence properties, resistance to environmental factors, and a Forster distance comparable size, making them ideal donor for FRET applications. By using poly(mAPBA) NPs and adenosine 5'-monophosphate modified graphene oxide (AMP-GO) as a donor and an acceptor, respectively, an environmental effects-suppressed boronate affinity mediated FRET system was established. The fluorescence of poly(mAPBA) NPs was quenched by AMP-GO while it was restored when a competing cis-diol compounds was present. The FRET system exhibited excellent selectivity and improved sensitivity toward cis-diol compounds. Quantitative inhibition assay of glucose in human serum was demonstrated. As many cis-diol compounds such as sugars and glycoproteins are biologically and clinically significant, the FRET scheme presented herein could find more promising applications.
机译:对于许多应用来说,Forster共振能量转移(FRET)至关重要,其中关键是合适的供体受体对。传统的染料与染料的组合仍然是工作之马,但对环境因素(例如离子强度,pH,氧气等)的反应非特异性。此外,为了获得所需的选择性,供体或受体的功能化是必不可少的,但通常是乏味的。在这里,我们介绍了通过简单的程序合成的荧光聚(间氨基苯基硼酸)纳米粒子(聚-(mAPBA)NPs),并展示了具有抑制环境效应的FRET方案,用于选择性传感顺式二醇生物分子。 NP表现出稳定的荧光特性,对环境因素的抵抗力以及与Forster距离相当的尺寸,使其成为FRET应用的理想供体。通过使用聚(mAPBA)NPs和腺苷5'-单磷酸修饰的氧化石墨烯(AMP-GO)作为供体和受体,建立了抑制环境效应的硼酸酯亲和介导的FRET系统。聚(mAPBA)NPs的荧光被AMP-GO淬灭,而当存在竞争性顺式-二醇化合物时,荧光得以恢复。 FRET系统显示出极好的选择性,并提高了对顺式二醇化合物的敏感性。证明了对人血清中葡萄糖的定量抑制测定。由于许多顺式-二醇化合物(例如糖和糖蛋白)具有生物学和临床意义,因此本文介绍的FRET方案可能会找到更多有希望的应用。

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