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Flow-pattern Guided Fabrication of High-density Barcode Antibody Microarray

机译:高密度条形码抗体微阵列的流式引导制备

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摘要

Antibody microarray as a well-developed technology is currently challenged by a few other established or emerging high-throughput technologies. In this report, we renovate the antibody microarray technology by using a novel approach for manufacturing and by introducing new features. The fabrication of our high-density antibody microarray is accomplished through perpendicularly oriented flow-patterning of single stranded DNAs and subsequent conversion mediated by DNA-antibody conjugates. This protocol outlines the critical steps in flow-patterning DNA, producing and purifying DNA-antibody conjugates, and assessing the quality of the fabricated microarray. The uniformity and sensitivity are comparable with conventional microarrays, while our microarray fabrication does not require the assistance of an array printer and can be performed in most research laboratories. The other major advantage is that the size of our microarray units is 10 times smaller than that of printed arrays, offering the unique capability of analyzing functional proteins from single cells when interfacing with generic microchip designs. This barcode technology can be widely employed in biomarker detection, cell signaling studies, tissue engineering, and a variety of clinical applications.
机译:抗体微阵列作为一种发达的技术,目前正受到其他一些成熟或新兴的高通量技术的挑战。在本报告中,我们通过使用新颖的制造方法并引入了新功能来革新抗体微阵列技术。我们的高密度抗体微阵列的制造是通过单链DNA的垂直定向流式成像以及随后由DNA-抗体偶联物介导的转化来完成的。该协议概述了DNA流动模式分析,生产和纯化DNA抗体结合物以及评估所制备微阵列质量的关键步骤。均匀性和灵敏度可与常规微阵列相媲美,而我们的微阵列制造不需要阵列打印机的帮助,并且可以在大多数研究实验室中进行。另一个主要优点是,我们的微阵列单元的尺寸比印刷阵列的尺寸小10倍,当与通用微芯片设计接口时,可提供分析单个细胞功能蛋白的独特功能。该条形码技术可广泛用于生物标志物检测,细胞信号研究,组织工程和各种临床应用。

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