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A two-photon ratiometric fluorescence probe for Cupric Ions in Live Cells and Tissues

机译:两光子比例荧光探针用于活细胞和组织中的铜离子

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摘要

Development of sensitive and selective probes for cupric ions (Cu2+) at cell and tissue level is a challenging work for progress in understanding the biological effects of Cu2+. Here, we report a ratiometric two-photon probe for Cu2+ based on the organic-inorganic hybrids of graphene quantum dots (GQDs) and Nile Blue dye. Meanwhile, Cu-free derivative of copper-zinc superoxide dismutase (SOD) – E2Zn2SOD is designed as the unique receptor for Cu2+ and conjugated on the surface of GQDs. This probe shows a blue-to-yellow color change in repose to Cu2+, good selectivity, low cytotoxicity, long-term photostability, and insensitivity to pH over the biologically relevant pH range. The developed probe allows the direct visualization of Cu2+ levels in live cells as well as in deep-tissues at 90–180 μm depth through the use of two-photon microscopy. Furthermore, the effect of ascorbic acid is also evaluated on intracellular Cu2+ binding to E2Zn2SOD by this probe.
机译:在细胞和组织水平上开发铜离子(Cu 2 + )灵敏且选择性的探针对于理解Cu 2 + 的生物学效应是一项艰巨的工作。在此,我们报告了基于石墨烯量子点(GQDs)和尼罗蓝染料的有机-无机杂化体的Cu 2 + 比例双光子探针。同时,铜锌超氧化物歧化酶(SOD)的无铜衍生物-E2Zn2SOD被设计为Cu 2 + 的独特受体,并共轭在GQD表面。该探针显示出对Cu 2 + 呈蓝色至黄色的变化,选择性好,细胞毒性低,长期光稳定性以及在生物学相关pH范围内对pH不敏感。通过使用双光子显微镜,开发的探针可以直接观察活细胞以及90-180μm深度深层组织中Cu 2 + 的水平。此外,还通过该探针评估了抗坏血酸对细胞内Cu 2 + 与E2Zn2SOD结合的影响。

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