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Simple design for DNA nanotubes from a minimal set of unmodified strands: Rapid, room-temperature assembly and readily tunable structure

机译:从最少的未修饰链集中进行DNA纳米管的简单设计:快速的室温组装和易于调节的结构

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摘要

DNA nanotubes have great potential as nanoscale scaffolds for the organization of materials and the templation of nanowires and as drug delivery vehicles. Current methods for making DNA nanotubes either rely on a tile-based step-growth polymerization mechanism or use a large number of component strands and long annealing times. Step-growth polymerization gives little control over length, is sensitive to stoichiometry, and is slow to generate long products. Here, we present a design strategy for DNA nanotubes that uses an alternative, more controlled growth mechanism, while using just five unmodified component strands and a long enzymatically produced backbone. These tubes form rapidly at room temperature and have numerous, orthogonal sites available for the programmable incorporation of arrays of cargo along their length. As a proof-of-concept, cyanine dyes were organized into two distinct patterns by inclusion into these DNA nanotubes.
机译:DNA纳米管具有巨大的潜力,可以作为纳米级的支架用于材料的组织和纳米线的模板化以及作为药物的运输工具。用于制造DNA纳米管的当前方法要么依赖于基于图块的逐步增长聚合机制,要么使用大量的成分链和较长的退火时间。逐步增长聚合对长度几乎没有控制,对化学计量敏感,并且缓慢生成长产物。在这里,我们提出了一种DNA纳米管的设计策略,该策略使用替代的,更受控制的生长机制,同时仅使用5条未修饰的成分链和较长的酶促产生的骨架。这些管在室温下迅速形成,并具有许多正交的位置,可沿其长度以可编程方式合并货物阵列。作为概念证明,通过将花青染料包含在这些DNA纳米管中,可以将它们组织成两种不同的图案。

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