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An organic fluorophore-nanodiamond hybrid sensor for photostable imaging and orthogonal, on-demand biosensing

机译:一种有机荧光团-纳米金刚石混合传感器,用于光稳定成像和正交按需生物传感

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Organic fluorescent probes are widely used to detect key biomolecules; however, they often lack the photostability required for extended intracellular imaging. Here we report a new hybrid nanomaterial (peroxynanosensor, PNS), consisting of an organic fluorescent probe bound to a nanodiamond, that overcomes this limitation to allow concurrent and extended cell-based imaging of the nanodiamond and ratiometric detection of hydrogen peroxide. Far-red fluorescence of the nanodiamond offers continuous monitoring without photobleaching, while the green fluorescence of the organic fluorescent probe attached to the nanodiamond surface detects hydrogen peroxide on demand. PNS detects basal production of hydrogen peroxide within M1 polarised macrophages and does not affect macrophage growth during prolonged co-incubation. This nanosensor can be used for extended bio-imaging not previously possible with an organic fluorescent probe, and is spectrally compatible with both Hoechst 33342 and MitoTracker Orange stains for hyperspectral imaging.
机译:有机荧光探针被广泛用于检测关键生物分子。但是,它们通常缺乏扩展的细胞内成像所需的光稳定性。在这里,我们报告了一种新的杂化纳米材料(过氧纳米传感器,PNS),它由与纳米金刚石结合的有机荧光探针组成,克服了这一局限性,允许同时和扩展基于细胞的纳米金刚石成像和过氧化氢的比例检测。纳米金刚石的远红色荧光可提供连续监测而无需光漂白,而附着在纳米金刚石表面的有机荧光探针的绿色荧光可根据需要检测过氧化氢。 PNS可检测到M1极化巨噬细胞内基础生成的过氧化氢,并且在长时间的共孵育过程中不会影响巨噬细胞的生长。该纳米传感器可用于有机荧光探针无法实现的扩展生物成像,并且与Hoechst 33342和MitoTracker Orange染色剂在光谱上均兼容,可用于高光谱成像。

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