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首页> 外文期刊>Nano letters >Rapid cytosolic delivery of luminescent nanocrystals in live cells with endosome-disrupting polymer colloids
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Rapid cytosolic delivery of luminescent nanocrystals in live cells with endosome-disrupting polymer colloids

机译:破坏内体的聚合物胶体在活细胞中快速发光纳米晶体的胞质传递

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摘要

Luminescent nanocrystals hold great potential for bioimaging because of their exceptional optical properties, but their use in live cells has been limited. When nanocrystals enter live cells, they are taken up in vesicles. This vesicular sequestration is persistent and precludes nanocrystals from reaching intracellular targets. Here, we describe a unique, cationic core-shell polymer colloid that translocates nanocrystals to the cytosol by disrupting endosomal membranes via a low-pH triggered mechanism. Confocal fluorescence microscopy and flow cytometry indicate that picomolar concentrations of quantum dots are sufficient for cytosolic labeling, with the process occurring within a few hours of incubation. We anticipate a host of advanced applications arising from efficient cytosolic delivery of nanocrystal imaging probes: from single particle tracking experiments to monitoring protein-protein interactions in live cells for extended periods.
机译:发光纳米晶体由于其卓越的光学性能而具有巨大的生物成像潜力,但在活细胞中的使用受到限制。当纳米晶体进入活细胞时,它们被囊泡吸收。这种囊泡螯合是持久的,并阻止纳米晶体到达细胞内靶标。在这里,我们描述了一种独特的阳离子核-壳聚合物胶体,它通过低pH触发机制破坏内体膜,从而将纳米晶体转移到细胞质中。共聚焦荧光显微镜和流式细胞术表明,皮摩尔浓度的量子点足以进行细胞溶质标记,该过程在孵育的几个小时内发生。我们预期纳米颗粒成像探针的有效胞质递送将产生许多先进的应用:从单颗粒跟踪实验到长期监测活细胞中的蛋白质相互作用。

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