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Sensitive Readout for Microfluidic High-Throughput Applications using Scanning SQUID Microscopy

机译:使用扫描鱿鱼显微镜进行微流体高通量应用的敏感读数

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摘要

Microfluidic chips provide a powerful platform for high-throughput screening of diverse biophysical systems. The most prevalent detection methods are fluorescence based. Developing new readout techniques for microfluidics focusing on quantitative information in the low signal regime is desirable. In this work, we combine the well-established immunoassay approach, with magnetic nanoparticles, with a highly sensitive magnetic imaging technique. We offer to integrate a microfluidic array into a scanning superconducting quantum interference device (SQUID) microscope, to image nanoparticles that were moved through the microfluidic device. We demonstrate the technique on protein-protein interactions (PPI). We compare sensitivity to that of a conventional readout, quantify the amount of interactions, and demonstrate 0.1 atto-mole sensitivity. Our work serves as a proof of concept that will promote the development of a new set of eyes, a stable usable microfluidic-scanning SQUID microscopy.
机译:微流体芯片为各种生物物理系统的高通量筛选提供了强大的平台。最普遍的检测方法是基于荧光的。为聚焦在低信号制度中的定量信息的微流体开发新的读数技术是理想的。在这项工作中,我们将良好的免疫测定方法与磁性纳米颗粒结合起来,具有高敏感的磁性成像技术。我们提供将微流体阵列集成到扫描超导量子干扰装置(鱿鱼)显微镜中,以通过微流体装置移动的图像纳米颗粒。我们证明了蛋白质 - 蛋白质相互作用(PPI)的技术。我们将敏感性与传统读数的敏感性进行比较,量化相互作用的量,并证明0.1型摩尔灵敏度。我们的工作是概念证明,可以促进新的眼睛的发展,是一种稳定的可用的微流体扫描鱿鱼显微镜。

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