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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Coverage percentage and raman measurement of cross-tile and scaffold cross-tile based DNA nanostructures
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Coverage percentage and raman measurement of cross-tile and scaffold cross-tile based DNA nanostructures

机译:基于交叉拼块和脚手架交叉拼块的DNA纳米结构的覆盖率和拉曼测量

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We present two free-solution annealed DNA nanostructures consisting of either cross-tile CT1 or CT2. The proposed nanostructures exhibit two distinct structural morphologies, with one-dimensional (1D) nanotubes for CT1 and 2D nanolattices for CT2. When we perform mica-assisted growth annealing with CT1, a dramatic dimensional change occurs where the 1D nanotubes transform into 2D nanolattices due to the presence of the substrate. We assessed the coverage percentage of the 2D nanolattices grown on the mica substrate with CT1 and CT2 as a function of the concentration of the DNA monomer. Furthermore, we fabricated a scaffold cross-tile (SCT), which is a new design of a modified cross-tile that consists of four four-arm junctions with a square aspect ratio. For SCT, eight oligonucleotides are designed in such a way that adjacent strands with sticky ends can produce continuous arms in both the horizontal and vertical directions. The SCT was fabricated via free-solution annealing, and self-assembled SCT produces 2D nanolattices with periodic square cavities. All structures were observed via atomic force microscopy. Finally, we fabricated divalent nickel ion (Ni2+)-and trivalent dysprosium ion (Dy3+)-modified 2D nanolattices constructed with CT2 on a quartz substrate, and the ion coordinations were examined via Raman spectroscopy. (c) 2015 Elsevier B.V. All rights reserved.
机译:我们提出了两个由交叉瓷砖CT1或CT2组成的自由溶液退火的DNA纳米结构。所提出的纳米结构表现出两种不同的结构形态,其中CT1具有一维(1D)纳米管,CT2具有2D纳米晶格。当我们用CT1进行云母辅助生长退火时,由于基材的存在,一维纳米管转变为二维纳米晶格会发生剧烈的尺寸变化。我们评估了在CT1和CT2的云母基底上生长的2D纳米晶格的覆盖百分比,作为DNA单体浓度的函数。此外,我们制造了一种脚手架横梁(SCT),这是一种改进的横梁的新设计,该横梁由四个具有方形长宽比的四臂结组成。对于SCT,以这样一种方式设计八个寡核苷酸,使得具有粘性末端的相邻链可以在水平和垂直方向上产生连续的臂。通过自由溶液退火制造SCT,并且自组装SCT产生具有周期性方腔的2D纳米晶格。通过原子力显微镜观察所有结构。最后,我们在石英基板上制备了由CT2构成的二价镍离子(Ni2 +)和三价离子(Dy3 +)修饰的2D纳米晶格,并通过拉曼光谱检查了离子配位。 (c)2015 Elsevier B.V.保留所有权利。

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