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Real-Time Sensing of Single-Ligand Delivery with Nanoaperture-Integrated Microfluidic Devices

机译:纳米孔集成微流控装置对单配体的实时传感

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摘要

The measurement of biological events on the surface of live cells at the single-molecule level is complicated by several factors including high protein densities that are incompatible with single-molecule imaging, cellular autofluorescence, and protein mobility on the cell surface. Here, we fabricated a device composed of an array of nanoscale apertures coupled with a microfluidic delivery system to quantify single-ligand interactions with proteins on the cell surface. We cultured live cells directly on the device and isolated individual epidermal growth factor receptors (EGFRs) in the apertures while delivering fluorescently labeled epidermal growth factor. We observed single ligands binding to EGFRs, allowing us to quantify the ligand turnover in real time. These results demonstrate that this nanoaperture-coupled microfluidic device allows for the spatial isolation of individual membrane proteins while maintaining them in their cellular environment, providing the capability to monitor single-ligand binding events while maintaining receptors in their physiological environment. These methods should be applicable to a wide range of membrane proteins.
机译:在单分子水平上,活细胞表面的生物事件的测量由于多种因素而变得复杂,包括与单分子成像不兼容的高蛋白密度,细胞自发荧光和细胞表面上的蛋白迁移率。在这里,我们制造了一种装置,该装置由纳米级孔径阵列与微流体传递系统耦合组成,以量化与细胞表面蛋白质的单配体相互作用。我们直接在设备上培养了活细胞,并在传送荧光标记的表皮生长因子的同时在孔中分离了单个表皮生长因子受体(EGFR)。我们观察到单个配体与EGFR结合,使我们能够实时定量配体转换。这些结果表明,这种纳米孔偶联的微流体装置允许空间分离单个膜蛋白,同时将它们保持在其细胞环境中,从而提供了监测单配体结合事件的能力,同时将受体保持在其生理环境中。这些方法应适用于广泛的膜蛋白。

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