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Fabrication of DNA nanotubes using origami-based nanostructures with sticky ends

机译:使用具有粘性末端的基于折纸的纳米结构制造DNA纳米管

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Described here is a simplified method for fabrication of DNA nanotubes using a minimum numbers of staple oligomers for DNA origami. For this purpose, the cylindrical nanotemplates with two sticky ends have been designed using caDNAno software. Then, the nanostructures were shaped in an optimized experimental condition via an origami-based self-assembly reaction. Finally, the produced nanostructures were joined together through their sticky ends using a ligase enzyme. Transmission electron microscope confirmed fabrication of these elongated nanotubes. In addition, high-resolution microscopy of DNA nanotubes by scanning tunnelling microscope indicated efficient attachments of the primarily DNA nanostructures via their sticky ends. The results demonstrated that a ligase treatment of cylindrical DNA nanostructures with the sticky ends made DNA nanotubes with standard shapes using minimum numbers of staples.
机译:在此描述的是一种用于DNA纳米管的简化方法,该方法使用最少数量的用于DNA折纸的短钉低聚物。为此,已使用caDNAno软件设计了具有两个粘性末端的圆柱形纳米模板。然后,通过基于折纸的自组装反应,在优化的实验条件下对纳米结构进行成形。最后,使用连接酶将产生的纳米结构通过其粘性末端连接在一起。透射电子显微镜证实了这些细长纳米管的制造。此外,通过扫描隧道显微镜对DNA纳米管进行的高分辨率显微镜观察表明,主要的DNA纳米结构通过其粘性末端有效附着。结果表明,使用粘性末端对圆柱状DNA纳米结构进行连接酶处理,可以使用最少数量的订书钉制成具有标准形状的DNA纳米管。

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