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A robotics platform for automated batch fabrication of high density, microfluidics-based DNA microarrays, with applications to single cell, multiplex assays of secreted proteins

机译:一个机器人平台,用于自动批量制造高密度,基于微流体的DNA微阵列,可应用于分泌蛋白的单细胞,多重测定

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摘要

Microfluidics flow-patterning has been utilized for the construction of chip-scale miniaturized DNA and protein barcode arrays. Such arrays have been used for specific clinical and fundamental investigations in which many proteins are assayed from single cells or other small sample sizes. However, flow-patterned arrays are hand-prepared, and so are impractical for broad applications. We describe an integrated robotics/microfluidics platform for the automated preparation of such arrays, and we apply it to the batch fabrication of up to eighteen chips of flow-patterned DNA barcodes. The resulting substrates are comparable in quality with hand-made arrays and exhibit excellent substrate-to-substrate consistency. We demonstrate the utility and reproducibility of robotics-patterned barcodes by utilizing two flow-patterned chips for highly parallel assays of a panel of secreted proteins from single macrophage cells.
机译:微流模式已被用于构建芯片规模的微型化DNA和蛋白质条形码阵列。此类阵列已用于特定的临床和基础研究,其中从单个细胞或其他小样本量分析了许多蛋白质。但是,流模式阵列是手工准备的,因此对于广泛的应用来说是不切实际的。我们描述了用于自动制备此类阵列的集成机器人/微流体平台,并将其应用于多达18个流式DNA条形码芯片的批量生产。所得的基材在质量上可与手工阵列媲美,并表现出优异的基材间一致性。我们通过利用两个流模式芯片对单个巨噬细胞分泌蛋白的面板进行高度平行测定,证明了机器人模式条形码的实用性和可重复性。

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