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Visual and Fluorescent Detection of Tyrosinase Activity by Using a Dual-Emission Ratiometric Fluorescence Probe

机译:视觉和荧光检测酪氨酸酶活性的双发射比率荧光探针。

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In this work, we designed a dual-emission ratiometric fluorescence probe by hybridizing two differently colored quantum dots (QDs), which possess a built-in correction that eliminates the environmental effects and increases sensor accuracy. Red emissive QDs were embedded in the silica nanoparticle as reference while the green emissive QDs were covalently linked to the silica nanoparticle surface to form ratiometric fluorescence probes (RP-QDs). Dopamine (DA) was then conjugated to the surface of RF-QDs via covalent bonding. The ratiometric fluorescence probe functionalized with dopamine (DA) was highly reactive toward tyrosinase (TYR), which can catalyze the oxidization of DA to dopamine quinine and therefore quenched the fluorescence of the green QDs on the surface of ratiometric fluorescence probe. With the addition of different amounts of TYR, the ratiometric fluorescence intensity of the probe continually varied, leading to color changes from yellow-green to red. So the ratiometric fluorescence probe could be utilized for sensitive and selective detection of TYR activity. There was a good linear relationship between the ratiometric fluorescence intensity and TYR concentration in the range of 0.05-5.0 mu g mL(-1), with the detection limit of 0.02 mu g mL(-1). Significantly, the ratiometric fluorescence probe has been used to fabricate paper-based test strips for visual detection of TYR activity, which validates the potential on-site application.
机译:在这项工作中,我们通过混合两个不同颜色的量子点(QD)设计了一种双发射比率荧光探针,该量子点具有内置校正功能,可以消除环境影响并提高传感器精度。将红色发光QD嵌入二氧化硅纳米颗粒中作为参考,而绿色发光QD共价连接到二氧化硅纳米颗粒表面以形成比例荧光探针(RP-QD)。然后通过共价键将多巴胺(DA)偶联到RF-QD的表面。用多巴胺(DA)功能化的比例荧光探针对酪氨酸酶(TYR)具有高反应活性,可催化DA氧化为多巴胺奎宁,因此淬灭了比例荧光探针表面绿色QD的荧光。通过添加不同量的TYR,探针的比例荧光强度不断变化,导致颜色从黄绿色变为红色。因此,比例荧光探针可用于灵敏和选择性检测TYR活性。比例荧光强度与TYR浓度在0.05-5.0μg mL(-1)范围内具有良好的线性关系,检出限为0.02μg mL(-1)。重要的是,比例荧光探针已被用于制造纸基测试条,用于目测TYR活性,从而验证了潜在的现场应用。

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