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Visualizing dopamine released from living cells using a nanoplasmonic probe

机译:活细胞观察多巴胺释放使用nanoplasmonic探针

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We report the development of an ultrasensitive nanoplasmonic probe for discriminative detection and imaging of dopamine released from living cells. The sensing mechanism is based on the dopamine-induced seeded-growth of Au nanoparticles (Au NPs) that leads to the shift of the plasmon band. This platform allows for the detection of dopamine with a detection limit down to 0.25 pM within 1 min. This nanoplasmonic assay is further applied to visualize the release of dopamine from living rat pheochromocytoma (PC12) cells under ATP-stimulation with dark-field microscopy (DFM). The DFM results together with real time fluorescence imaging of PC12 cells stained with the Fluo calcium indicator, suggested that ATP stimulated-release of dopamine is concomitant with the Ca2+ influx, and the influx of Ca2+ is through ATP-activated channels instead of the voltage-gated Ca2+ channel (VGC).
机译:我们报告一个超灵敏的发展nanoplasmonic区别的检测探针和成像的多巴胺释放生活细胞。由多巴胺带来的对seeded-growth的盟纳米颗粒(Au NPs)导致的转变等离子体的乐队。检测多巴胺的检测极限1分钟内,至0.25点。这nanoplasmonic化验进一步应用到可视化的释放多巴胺从生活大鼠嗜铬细胞瘤(PC12)细胞在ATP-stimulation暗视野显微镜(DFM)。实时PC12细胞的荧光成像技术沾氟钙指标,建议ATP stimulated-release的多巴胺伴随Ca2 +的涌入,通过ATP-activated渠道涌入Ca2 +的而不是电压门控钙离子通道(VGC)。

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