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SERS Nanoimaging Probes for Characterizing Extracellular Surfaces

机译:用于表征细胞外表面的SERS纳米成像探针

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Across extracellular surfaces, lipid rafts are believed to be an important organizing membrane microdomain component, facilitating specific protein-protein interactions by selectively excluding or including proteins into them. The lipid-based sorting mechanism of these microdomains has been implicated in many cellular processes including; membrane trafficking, signal transduction and cell growth regulation. However, since individual rafts are estimated to range in size from the nanoscale to the microscale, in many cases, they cannot be easily monitored by conventional imaging techniques. We have developed surface enhanced Raman scattering (SERS)-based nanoimaging probes for nanoscale imaging of biochemical species on and within extracellular environments. These probes synergistically combine the qualitative and quantitative information of SERS with the nanoscale imaging capabilities of tapered fiber optic bundles, potentially allowing for chemical imaging of extracellular components and chemical exchange events across cellular surfaces. These probes are fabricated from coherent fiber optic bundles containing 30,000 individual fiber elements that have been tapered to have diameters as small as 140 run, thus allowing for image magnification and submicron spatial resolution. Due to the uniformly roughened surface features across the probe's imaging surface onto which silver island arrays are fabricated, these probes exhibit less than 3% RSD in SERS signal across the imaging area. In this work, tunability, multiplex detection capabilities and an application of these SERS nanoimaging probes to biological systems are demonstrated.
机译:在整个细胞外表面,脂质筏被认为是重要的组织膜微结构域成分,通过选择性地将蛋白质排除或包括在内,从而促进了特定的蛋白质-蛋白质相互作用。这些微区的基于脂质的分选机制已涉及许多细胞过程,包括:膜运输,信号转导和细胞生长调节。然而,由于估计单个筏的尺寸范围是从纳米级到微米级,因此在许多情况下,它们不能通过常规成像技术容易地监测。我们已经开发了基于表面增强拉曼散射(SERS)的纳米成像探针,用于在细胞外环境上和细胞内对生化物种进行纳米级成像。这些探针协同地将SERS的定性和定量信息与锥形光纤束的纳米级成像功能结合在一起,潜在地允许对细胞外成分进行化学成像以及对整个细胞表面进行化学交换事件。这些探头是由相干的光纤束制成的,该光纤束包含30,000个单独的光纤元件,这些光纤元件已逐渐变细以使其直径小至140游程,因此可实现图像放大和亚微米空间分辨率。由于在要在其上制造银岛阵列的探头成像表面上均匀地粗糙化了表面特征,因此这些探头在整个成像区域的SERS信号中显示不到3%的RSD。在这项工作中,展示了可调性,多重检测能力以及这些SERS纳米成像探针在生物系统中的应用。

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