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Stochastic sensing of proteins with receptor-modified solid-state nanopores

机译:具有受体修饰的固态纳米孔的蛋白质的随机传感

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Solid-state nanopores are capable of the label-free analysis of single molecules. It is possible to add biochemical selectivity by anchoring a molecular receptor inside the nanopore, but it is difficult to maintain single-molecule sensitivity in these modified nanopores. Here, we show that metallized silicon nitride nanopores chemically modified with nitrilotriacetic acid receptors can be used for the stochastic sensing of proteins. The reversible binding and unbinding of the proteins to the receptors is observed in real time, and the interaction parameters are statistically analysed from single-molecule binding events. To demonstrate the versatile nature of this approach, we detect His-tagged proteins and discriminate between the subclasses of rodent IgG antibodies.
机译:固态纳米孔能够对单个分子进行无标记分析。通过将分子受体锚定在纳米孔内可以增加生物化学选择性,但是在这些修饰的纳米孔中难以维持单分子敏感性。在这里,我们显示了用次氮基三乙酸受体化学修饰的金属化氮化硅纳米孔可用于蛋白质的随机感测。实时观察到蛋白质与受体的可逆结合和解结合,并且从单分子结合事件统计分析相互作用参数。为了证明这种方法的通用性,我们检测了带有His标签的蛋白并区分了啮齿类IgG抗体的亚类。

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