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Core–shell structured phosphorescent nanoparticles for detection of exogenous and endogenous hypochlorite in live cells via ratiometric imaging and photoluminescence lifetime imaging microscopy

机译:核壳结构磷光纳米粒子,用于通过比例成像和光致发光寿命显微镜检测活细胞中外源和内源性次氯酸盐

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摘要

We report a ratiometric phosphorescence sensory system for hypochlorite (ClO ~(?) ) based on core–shell structured silica nanoparticles. Two phosphorescent iridium( III ) complexes were immobilised in the inner solid core and outer mesoporous layer of the nanoparticles, respectively. The former is insensitive to ClO ~(?) and thus serves as an internal standard to increase the accuracy and precision, while the latter exhibits a specific and significant luminogenic response to ClO ~(?) , providing high selectivity and sensitivity. Upon exposure to ClO ~(?) , the nanoparticles display a sharp luminescence colour change from blue to red. Additionally, intracellular detection of exogenous and endogenous ClO ~(?) has been demonstrated via ratiometric imaging and photoluminescence lifetime imaging microscopy. Compared to intensity-based sensing, ratiometric and lifetime-based measurements are independent of the probe concentration and are thus less affected by external influences, especially in intracellular applications.
机译:我们报告了基于核 - 壳结构二氧化硅纳米粒子的次氯酸盐(ClO〜(α))的比例磷光感觉系统。将两个磷光铱(III)配合物固定在纳米颗粒的内固核和外部介孔层中。前者对ClO〜(?)不敏感,因此用作内部标准,以提高精度和精度,而后者表现出对ClO〜(?)的特异性和显着的发光响应,提供高选择性和灵敏度。在接触ClO〜(α)后,纳米颗粒从蓝色到红色显示尖锐的发光颜色变化。另外,通过比例成像和光致发光寿命显微镜显微镜证明了外源和内源ClO〜(α)的细胞内检测。与基于强度的感测相比,​​比率和基于寿命的测量与探针浓度无关,因此受到外部影响的损伤,特别是在细胞内应用中的影响。

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