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Assembly of a tile-based multilayered DNA nanostructure

机译:基于题目的组装的多层DNA奈米结构

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The Watson-Crick complementarity of DNA is exploited to construct periodically patterned nanostructures, and we herein demonstrate tile-based three dimensional (3D) multilayered DNA nanostructures that incorporate two design strategies: vertical growth and horizontal layer stacking with substrate-assisted growth. To this end, we have designed a periodically holed double-double crossover (DDX) template that can be used to examine the growth of the multilayer structures in both the vertical and horizontal directions. For vertical growth, the traditional 2D double crossover (DX) DNA lattice is seeded and grown vertically from periodic holes in the DDX template. For horizontal stacking, the DDX layers are stacked by binding the connector tiles between each layer. Although both types of multilayers exhibited successful formation, the observations with an atomic force microscope indicated that the DDX layer growth achieved with the horizontal stacking approach could be considered to be slightly better relative to the vertical growth of the DX layers in terms of uniformity, layer size, and discreteness. In particular, the newly designed DDX template layer provided a parallel arrangement between each domain with substrate-assisted growth. This kind of layer arrangement suggests a possibility of using our design scheme in the construction of other periodic structures.
机译:沃森克里克互补的DNA利用构造周期性的图案纳米结构,我们在此证明基于题目的三维(3 d)多层DNA纳米结构包含两个设计增长策略:垂直和水平层与substrate-assisted增长堆积。最后,我们设计了一种定期进洞两双交叉(DDX)模板,可以被用来检查多层的增长结构在垂直和水平的方向。2 d双交叉(DX) DNA晶格播种和垂直生长周期的洞里DDX模板。绑定层堆叠的连接器瓷砖每一层之间。多层膜表现出成功的形成用原子力显微镜观察表明DDX层增长来实现水平叠加的方法认为是相对略好垂直增长的DX层均匀性、层大小和不连续性。具体来说,新设计的DDX模板层提供每个之间的平行排列与substrate-assisted增长领域。层的安排建议的可能性在建设中使用我们的设计方案其他周期性结构。

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