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Tunable Fluorescent Silica-Coated Carbon Dots: A Synergistic Effect for Enhancing the Fluorescence Sensing of Extracellular Cu2+ in Rat Brain

机译:可调式荧光二氧化硅涂层碳点:增强大鼠脑中细胞外Cu2 +的荧光传感的协同效应。

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Carbon quantum dots (CDs) combined with self-assembly strategy have created an innovative way to fabricate novel hybrids for biological analysis. This study demonstrates a new fluorescence platform with enhanced selectivity for copper ion sensing in the striatum of the rat brain following the cerebral calm/sepsis process. Here, the fabrication of silica coated CDs probes is based on the efficient hybridization of APTES which act as a precursor of organosilane self-assembly, with CDs to form silica-coated CDs probes. The fluorescent properties including intensity, fluorescence quantum yield, excitation-independent region, and red/blue shift of the emission wavelength of the probe are tunable through reliable regulation of the ratio of CDs and APTES, realizing selectivity and sensitivity-oriented Cu2+ sensing. The as-prepared probes (i.e., 3.33% APTES-0.9 mg mL(-1) CDs probe) show a synergistic amplification effect of CDs and APTES on enhancing the fluorescence signal of Cu2+ detection through fluorescent self-quenching. The underlying mechanism can be ascribed to the stronger interaction including chelation and electrostatic attraction between Cu2+ and N and O atoms-containing as well as negatively charged silica-coated CDs than other interference. Interestingly, colorimetric assay and Tyndall effect can be observed and applied to directly distinguish the concentration of Cu2+ by the naked eye. The proposed fluorescent platform here has been successfully applied to monitor the alteration of striatum Cu2+ in rat brain during the cerebral calm/sepsis process. The versatile properties of the probe provide a new and effective fluorescent platform for the sensing method in vivo sampled from the rat brain.
机译:碳量子点(CD)与自组装策略相结合,创造了一种创新的方法来制造用于生物学分析的新型杂交体。这项研究展示了一种新的荧光平台,该平台具有增强的选择性,可在大脑平静/败血症过程后对大鼠大脑纹状体中的铜离子感测。在此,二氧化硅涂层的CD探针的制造基于APTES的有效杂交,该APTES是有机硅烷自组装的前体,与CD形成了二氧化硅涂层的CD探针。通过可靠地调节CD和APTES的比例,实现选择性和面向灵敏度的Cu2 +传感,可以调节包括强度,荧光量子产率,激发无关区域和探针发射波长的红/蓝偏移在内的荧光特性。所制备的探针(即3.33%APTES-0.9 mg mL(-1)CD探针)显示CD和APTES对通过荧光自猝灭增强Cu2 +检测的荧光信号具有协同放大作用。潜在的机理可以归因于比其他干扰更强的相互作用,包括Cu2 +与含N和O原子以及带负电荷的二氧化硅涂层CD之间的螯合和静电吸引。有趣的是,可以观察比色法和丁道尔效应,并用肉眼直接区分出Cu2 +的浓度。本文提出的荧光平台已成功应用于监测大脑平静/败血症过程中大鼠脑中纹状体Cu2 +的变化。该探针的多用途特性为从大鼠脑中体内采样的体内传感方法提供了一种新的有效荧光平台。

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