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具有纵向变化的 DNA 纳米管中的货物装载和选择性释放。

Loading and selective release of cargo in DNA nanotubes with longitudinal variation.

机构信息

Department of Chemistry, McGill University, Montreal, QC H3A 2K6, Canada.

出版信息

Nat Chem. 2010 Apr;2(4):319-28. doi: 10.1038/nchem.575. Epub 2010 Mar 14.

Abstract

Nanotubes hold promise for a number of biological and materials applications because of their high aspect ratio and encapsulation potential. A particularly attractive goal is to access nanotubes that exert well-defined control over their cargo, such as selective encapsulation, precise positioning of the guests along the nanotube length and triggered release of this cargo in response to specific external stimuli. Here, we report the construction of DNA nanotubes with longitudinal variation and alternating larger and smaller capsules along the tube length. Size-selective encapsulation of gold nanoparticles into the large capsules of these tubes leads to 'nanopeapod' particle lines with positioning of the particles 65 nm apart. These nanotubes can then be opened when specific DNA strands are added to release their particle cargo spontaneously. This approach could lead to new applications of self-assembled nanotubes, such as in the precise organization of one-dimensional nanomaterials, gene-triggered selective delivery of drugs and biological sensing.

摘要

纳米管由于其高纵横比和封装潜力,在许多生物和材料应用中具有广阔的应用前景。一个特别吸引人的目标是获得能够对其货物进行明确控制的纳米管,例如选择性封装、沿纳米管长度精确定位客货以及在响应特定外部刺激时触发货物释放。在这里,我们报告了具有纵向变化和沿管长交替的较大和较小胶囊的 DNA 纳米管的构建。将金纳米颗粒选择性封装到大胶囊中,会导致纳米管上的“纳米豆荚”颗粒线的颗粒间隔为 65nm。然后,当添加特定的 DNA 链时,这些纳米管可以打开,从而自发释放其颗粒货物。这种方法可能会为自组装纳米管的新应用开辟道路,例如在一维纳米材料的精确组织、基因触发的药物选择性输送和生物传感等方面。

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