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Dual-emissive nanoarchitecture of lanthanide-complex-modified silica particles for in vivo ratiometric time-gated luminescence imaging of hypochlorous acid

机译:镧系元素复合修饰的二氧化硅粒子的双发射纳米体系结构用于次氯酸的体内比例时间门控发光成像

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摘要

We have developed a ratiometric time-gated luminescence sensory system for in vivo imaging of hypochlorous acid (HClO) by preparing a dual-emissive nanoarchitecture of europium- and terbium-complex-modified silica nanoparticles. The design of this nanoarchitecture is based on our new finding that the strong, long-lived luminescence of the β-diketonate–Eu3+ complex can be rapidly and selectively quenched by HClO. Therefore, the β-diketonate–Eu3+ complex was decorated on the surface of the silica nanoparticles for responding to HClO, while a HClO-insensitive luminescent terbium complex was immobilized in the inner solid core of the nanoparticles to serve as an internal standard. This nanosensing probe combines the advantages of both ratiometric and time-gated detection modes to afford high accuracy and sensitivity. Upon exposure to HClO, the nanoprobe displayed a remarkable luminescence color change from red to green, and the intensity ratio of the green over the red luminescence (I 539/I 607) showed a rapid, sensitive and selective response to HClO. Additionally, the feasibility of using the nanoprobe for intracellular detection of exogenous and endogenous HClO and for real-time mapping of HClO in small laboratory animals has been demonstrated via ratiometric time-gated luminescence imaging microscopy. The results reveal that the constructed nanoarchitecture cloud is a favorable and useful sensing probe for the real-time imaging of HClO in vivo with high specificity and contrast.
机译:我们已经通过制备preparing和ter络合物改性的二氧化硅纳米粒子的双发射纳米体系结构,开发了一种比例计时的门控发光传感系统,用于次氯酸(HClO)的体内成像。这种纳米结构的设计基于我们的新发现,即可以通过HClO快速选择性地淬灭β-二酮酸酯-Eu 3 + 配合物的强而持久的发光。因此,在二氧化硅纳米粒子的表面修饰了β-二酮酸酯-Eu 3 + 络合物以响应HClO,而HClO不敏感的发光ter络合物被固定在纳米粒子的内部固体核中作为内部标准。这款纳米传感探头结合了比率式和时间门控检测模式的优点,可提供高精度和高灵敏度。暴露于HClO后,纳米探针显示出显着的从红色到绿色的发光颜色变化,绿色与红色发光的强度比(I 539 / I 607)显示出对HClO的快速,敏感和选择性的响应。此外,已通过比例定量门控发光成像显微镜证明了使用纳米探针在细胞内检测外源性和内源性HClO以及实时绘制小型实验动物中HClO的可行性。结果表明,所构建的纳米结构云是一种对体内HClO实时成像具有高特异性和对比度的良好且有用的传感探针。

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