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A simple method of creating a nanopore-terminated probe for single-molecule enantiomer discrimination

机译:创建用于单分子对映体识别的纳米孔末端探针的简单方法

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摘要

Nanopores are increasingly utilized as tools for single-molecule detection in biotechnology. Many nanopores are fabricated through procedures that require special materials, expensive facilities and experienced operators, which limiting their usefulness on a wide-scale. We have developed a simple method of fabricating a robust, low-noise nanopore by externally penetrating a nanocavity enclosed in the terminal of a capillary pipette. The nanocavity was shown to have a pore size on the scale of a single molecule, verified by translocation of molecules of known sizes, including double-stranded DNA (2 nm), gold nanoparticles (10 nm) and ring-shaped cyclodextrin (1.5 nm). The small pore size allows entrapment of a single cyclodextrin molecule. Cyclodextrin in the nanopore may prove useful as a molecular adapter for chiral enantiomer discrimination.
机译:纳米孔被越来越多地用作生物技术中单分子检测的工具。许多纳米孔是通过需要特殊材料,昂贵的设备和经验丰富的操作人员的程序来制造的,这限制了它们的广泛使用。我们已经开发出一种简单的方法,可以通过从外部穿透封闭在毛细管移液器末端的纳米腔来制造坚固,低噪声的纳米孔。纳米腔被证明具有单个分子大小的孔径,这通过已知大小的分子的易位来验证,包括双链DNA(2 nm),金纳米颗粒(10 nm)和环状环糊精(1.5 nm) )。小孔径允许截留单个环糊精分子。纳米孔中的环糊精可能被证明可用作手性对映体鉴别的分子适配器。

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