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A Multicolor Fluorescence Nanoprobe Platform Using Two-Dimensional Metal Organic Framework Nanosheets and Double Stirring Bar Assisted Target Replacement for Multiple Bioanalytical Applications

机译:多色荧光纳米骨骨平台,使用二维金属有机框架纳米片和双搅拌棒辅助靶替代多种生物分析应用

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Multicolor fluorescence probes can show fluorescence of different colors when detecting different targets, and the excellent feature can create a highly differentiated multicolor sensing platform. However, most of the previously reported multicolor luminescent materials usually suffer from high toxicity and photobleaching, complex preparation procedures, and poor water solubility, which may not be conducive to bioanalytical applications. Two-dimensional metal organic frameworks (2D MOFs), which have large specific surface areas with long-range fluorescence quenching coupled with biomolecular recognition events, have encouraged innovation in biomolecular probing. Here, we propose a 2D-MOF-based multicolor fluorescent aptamer nanoprobe using a double stirring bar assisted target replacement system for enzyme-free signal amplification. It utilizes the interaction between 2D MOFs and DNA molecules to detect multiple antibiotics quickly, sensitively, and selectively. Since 2D MOFs have excellent quenching efficiency for luminescence of fluorescent-dye-labeled single-strand DNA (ssDNA), the background fluorescence can be largely reduced and the signal-to-noise ratio can be improved. When the adsorbed ssDNA formed double helix double-stranded DNA with its complementary ssDNA, its fluorescence can be almost fully recovered. The assay was tested by detecting chloramphenicol (CAP), oxytocin (OTC), and kanamycin (KANA) in biological samples. The developed aptasensor was sufficiently sensitive to detect the antibiotic residues as low as 1.5 pM CAP, 2.4 pM OTC, and 1 pM KANA (S/N = 3). It has been preliminarily used for multicolor imaging of three different antibiotics in fish tissue slices with satisfactory results.
机译:多色荧光探针可以在检测到不同的目标时显示不同颜色的荧光,并且优异的特征可以产生高度分化的多色传感平台。然而,此前报道的大多数报道的多色发光材料通常患有高毒性和光漂白,复杂的制备程序和不良水溶性,这可能不利于生物分析应用。二维金属有机框架(2D MOFS),具有具有远程荧光猝灭的大型表面积,与生物分子识别事件相结合,鼓励了生物分子探测的创新。在此,我们使用双搅拌棒辅助靶置换靶置换系统提出基于2D-MOF的多色荧光型纳米孔,用于酶联信号放大。它利用2D MOF和DNA分子之间的相互作用快速,敏感,选择性地检测多种抗生素。由于2D MOF具有出色的荧光染料标记的单链DNA(SSDNA)的发光效率,因此可以大大降低背景荧光并且可以提高信噪比。当吸附的SSDNA形成双螺旋双链DNA时,其互补的SSDNA,其荧光几乎可以完全回收。通过检测生物样品中的氯霉素(帽),催产素(OTC)和卡那霉素(Kana)来测试测定。开发的Aptasensor足够敏感,以检测低至1.5μm帽,2.4μmOTc和1pm kana(s / n = 3)的抗生素残留物。预先用于鱼组织切片中三种不同抗生素的多色成像,结果令人满意。

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