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Subcellular resolution mapping of endogenous cytokine secretion by nano-plasmonic-resonator sensor array

机译:纳米等离子体共振传感器阵列对内源性细胞因子分泌的亚细胞分辨率定位

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摘要

Local extracellular signaling is central for cellular interactions and organizations. We report a novel sensing technique to interrogate extracellular signaling at the subcellular level. We developed an in situ immunoassay based on giant optical enhancement of a tunable nano-plasmonic-resonator array fabricated by nanoimprint lithography. Our nanoplasmonic device significantly increases the signal-to-noise ratio to enable the first time submicrometer resolution quantitative mapping of endogenous cytokine secretion. Our study shows a markedly high local interleukin-2 (IL-2) concentration within the immediate vicinity of the cell which finally validates a decades-old hypothesis on autocrine physiological concentration and spatial range. This general sensing technique can be applied for a broad range of cellular communication studies to improve our understanding of subcellular signaling and function.
机译:局部细胞外信号对于细胞相互作用和组织至关重要。我们报告了一种新颖的传感技术,可以在亚细胞水平上询问细胞外信号。我们开发了一种基于纳米压印光刻技术制造的可调谐纳米等离子体共振器阵列的巨大光学增强的原位免疫测定法。我们的纳米等离子体设备可显着提高信噪比,从而首次实现亚微米分辨率的内源性细胞因子分泌定量定位。我们的研究表明,在细胞紧邻区域内局部白介素2(IL-2)的浓度明显较高,这最终证实了数十年来关于自分泌生理浓度和空间范围的假说。这种通用的传感技术可以应用于广泛的细胞通讯研究,以增进我们对亚细胞信号传导和功能的理解。

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