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首页> 外文期刊>ACS Omega >Fluorescent Porous Silica Microspheres for Highly and Selectively Detecting Hg2+ and Pb2+ Ions and Imaging in Living Cells
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Fluorescent Porous Silica Microspheres for Highly and Selectively Detecting Hg2+ and Pb2+ Ions and Imaging in Living Cells

机译:荧光多孔二氧化硅微球,用于高度选择性地检测活细胞中的Hg2 +和Pb2 +离子及成像

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摘要

In this work, SiO2 microspheres were first prepared by a conventional St?ber method and then etched by NaOH solution to obtain porous ones. By tuning the degree of etching, specific surface area of SiO2 microspheres could be controlled. Then, small fluorescent molecules are synthesized and incorporated onto the surface and/or pores of the SiO2 via layer-by-layer reaction to obtain fluorescent microspheres, namely, SiO2–NH2–BODIPY (SiNBB), SiO2–NH2–BODIPY–indole–benzothiazole (SiNBIT), and SiO2–NH2–BODIPY–indole–benzoxazole (SiNBIO). The as-prepared microspheres SiNBB exhibit highly sensitive and selective recognition ability for Hg2+ and Pb2+. When SiNBB encounters Hg2+ and Pb2+, the fluorescence intensity of SiNBB is increased up to fivefold. SiNBIT and SiNBIO are solely sensitive to Hg2+, and both have a single high sensitivity to recognize Hg2+. The adsorption efficiency of Hg2+ by the three fluorescent microspheres SiNBB, SiNBIT, and SiNBIO reached 2.91, 0.99, and 0.98 g/g of microspheres, respectively. Experimental results of A549 cells and zebrafish indicate that the fluorescent microspheres are permeable to cell membranes and organisms. The distribution of Hg2+ in the brain of zebrafish was obtained by the fluorescence confocal imaging technique, and Hg2+ was successfully detected in A549 cells and zebrafish.
机译:在这项工作中,首先通过常规的Stber方法制备SiO2微球,然后用NaOH溶液蚀刻以获得多孔微球。通过调整蚀刻程度,可以控制SiO2微球的比表面积。然后,合成小的荧光分子,并通过逐层反应将其掺入SiO2的表面和/或孔中,从而获得荧光微球,即SiO2-NH2-BODIPY(SiNBB),SiO2-NH2-BODIPY-吲哚-苯并噻唑(SiNBIT)和SiO2-NH2-BODIPY-吲哚-苯并恶唑(SiNBIO)。所制备的微球SiNBB对Hg2 +和Pb2 +表现出高度敏感和选择性的识别能力。当SiNBB遇到Hg2 +和Pb2 +时,SiNBB的荧光强度增加到五倍。 SiNBIT和SiNBIO仅对Hg2 +敏感,并且都具有识别Hg2 +的单一高灵敏度。三个荧光微球SiNBB,SiNBIT和SiNBIO对Hg2 +的吸附效率分别达到2.91、0.99和0.98 g / g。 A549细胞和斑马鱼的实验结果表明,荧光微球可渗透细胞膜和生物。通过荧光共聚焦成像技术获得了斑马鱼大脑中Hg2 +的分布,并成功地在A549细胞和斑马鱼中检测到了Hg2 +。

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