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Digitally encoded DNA nanostructures for multiplexed, single-molecule protein sensing with nanopores

机译:数字编码的DNA纳米结构,用于通过纳米孔进行多重,单分子蛋白质传感

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The simultaneous detection of a large number of different analytes is important in bionanotechnology research and in diagnostic applications. Nanopore sensing is an attractive method in this regard as the approach can be integrated into small, portable device architectures, and there is significant potential for detecting multiple sub-populations in a sample. Here, we show that highly multiplexed sensing of single molecules can be achieved with solid-state nanopores by using digitally encoded DNA nanostructures. Based on the principles of DNA origami, we designed a library of DNA nanostructures in which each member contains a unique barcode; each bit in the barcode is signalled by the presence or absence of multiple DNA dumbbell hairpins. We show that a 3-bit barcode can be assigned with 94% accuracy by electrophoretically driving the DNA structures through a solid-state nanopore. Select members of the library were then functionalized to detect a single, specific antibody through antigen presentation at designed positions on the DNA. This allows us to simultaneously detect four different antibodies of the same isotype at nanomolar concentration levels.
机译:在生物纳米技术研究和诊断应用中,同时检测大量不同的分析物非常重要。在这方面,纳米孔传感是一种有吸引力的方法,因为该方法可以集成到小型便携式设备体系结构中,并且具有检测样品中多个亚群的巨大潜力。在这里,我们表明,通过使用数字编码的DNA纳米结构,固态纳米孔可以实现对单个分子的高度多重传感。根据DNA折纸的原理,我们设计了一个DNA纳米结构库,其中每个成员都包含一个唯一的条形码。条形码中的每一位都通过多个DNA哑铃发夹的存在或不存在来发出信号。我们显示,通过电泳驱动DNA结构通过固态纳米孔,可以分配3位条形码的精度为94%。然后将文库的选定成员功能化,以通过在DNA设计位置上的抗原呈递来检测单个特异性抗体。这使我们可以在纳摩尔浓度水平上同时检测四种同种型的不同抗体。

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