首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Directed Self-organization Of Single Dna Molecules In A Nanoslit Via Embedded Nanopit Arrays
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Directed Self-organization Of Single Dna Molecules In A Nanoslit Via Embedded Nanopit Arrays

机译:通过嵌入式纳米坑阵列的纳米缝中的单个Dna分子的定向自组织。

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摘要

We show that arrays of nanopit structures etched in a nanoslit can control the positioning and conformation of single DNA molecules in nanofluidic devices. By adjusting the spacing, organization and placement of the nanopits it is possible to immobilize DNA at predetermined regions of a device without additional chemical modification and achieve a high degree of control over local DNA conformation. DNA can be extended between two nanopits and in closely spaced arrays will self-assemble into "connect-the-dots" conformations consisting of locally pinned segments joined by fluctuating linkers. These results have broad implications for nanotechnology fields that require methods for the nanoscale positioning and manipulation of DNA.
机译:我们表明,刻蚀在纳缝中的纳坑结构阵列可以控制纳米流体装置中单个DNA分子的定位和构象。通过调整纳米坑的间距,组织和位置,可以将DNA固定在设备的预定区域,而无需进行其他化学修饰,并可以高度控制局部DNA构象。 DNA可以在两个纳米坑之间延伸,并以紧密排列的阵列自组装成“连接点”构象,该构象由通过波动的接头连接的局部固定链段组成。这些结果对于需要对DNA进行纳米级定位和操纵的方法的纳米技术领域具有广泛的意义。

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