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Ratiometric Fluorescent Biosensing of Hydrogen Peroxide and Hydroxyl Radical in Living Cells with Lysozyme-Silver Nanoclusters: Lysozyme as Stabilizing Ligand and Fluorescence Signal Unit

机译:溶菌酶-银纳米团簇在活细胞中过氧化氢和羟​​自由基的比例荧光生物传感:溶菌酶作为稳定配体和荧光信号单元

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Construction of facile ratiometric fluorescent probes which possess sensitive and selective sensing ability for bioactive small molecules is highly desirable and challenging. Herein, silver nanoclusters capped with denatured lysozyme (dLys-AgNCs) were synthesized and proved to be dual emissive. The facility of the dLys-AgNCs ratiometric probe was attributed to the finding that the lysozyme acted not only as stabilizing ligand but also as fluorescence signal unit. In the presence of Fenton reagents, the emission of dLys-AgNCs at 640 nm was quenched by center dot OH, whereas the emission at 450 was enhanced due to center dot OH-induced oxidation of tyrosine in the lysozyme. This probe could be used for highly sensitive detection of H2O2. The fluorescence changes of F450/F640 had fantastic linearity to H2O2 concentrations in the range of 0.8-200 mu mol/L (R2 = 0.9993), with a limit of detection (LOD) as low as 0.2 mu mol/L. Additionally, this probe was also applied to H2O2-generated oxidase-based biosensing. As a proof-of-concept, glucose and acetylcholine chloride were detected with benefical LOD values of 0.6 mu mol/L and 0.8 mu mol/L, respectively. Furthermore, fluorescence confocal imaging demonstrated dLys-AgNCs had a sensitive response to fluctuation of center dot OH levels in living cells, which might have promising application in study of center dot OH-induced oxidative damage to proteins.
机译:具有对生物活性小分子具有灵敏和选择性感测能力的简便的比率式荧光探针的构建是非常需要且具有挑战性的。在此,合成了具有变性溶菌酶(dLys-AgNCs)的银纳米簇,并被证明是双重发射的。 dLys-AgNCs比例探针的便利性归因于溶菌酶不仅起稳定配体的作用,而且还起荧光信号单元的作用。在Fenton试剂存在下,dLys-AgNCs在640 nm处的发射被中心点OH淬灭,而在450 nm处的发射由于中心点OH诱导的溶菌酶氧化酪氨酸而增强。该探针可用于高灵敏度检测H2O2。 F450 / F640的荧光变化与H2O2浓度在0.8-200μmol/ L(R2 = 0.9993)范围内具有极好的线性关系,检出限(LOD)低至0.2μmol/ L。此外,该探针还应用于H2O2生成的基于氧化酶的生物传感。作为概念证明,检测到的葡萄糖和乙酰胆碱氯化物的有益LOD值分别为0.6μmol/ L和0.8μmol/ L。此外,荧光共聚焦成像表明,dLys-AgNCs对活细胞中中心点OH含量的波动具有敏感的响应,这可能在研究中心点OH诱导的蛋白质氧化损伤方面具有广阔的应用前景。

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