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DNAjig: A New Approach for Building DNA Nanostructures

机译:DNAjig:构建DNA纳米结构的新方法

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DNA self-assembly is an emerging technique in DNA nanotechnology that holds promise for high impact applications such as in the synthesis of DNA-based nanodevices in medicine, robotics and electronics. Recent advancements in technologies and ideas have spurred new growth in the area. The most significant challenge faced by designers in the field is the lack of algorithmic and software options to aid in the design process, and as a result the scope of synthesis has been restricted to modeling a limited set of shapes in 2D. In this paper, we propose a new design methodology called DNAjig to build DNA nanostructures. The highlights of this method are as follows: i) The construction procedure is based on a novel application of space-filling curves to model the shape of an arbitrary user-specified 2D or 3D object. ii) The method results in a simple, yet recursively constructable design layout that is inherently interlocked. iii) Almost all steps within the proposed design procedure can be automated and we present algorithms and a base-version implementation for the same. Wetlab validation showing the results of self-assembly of our first batch of computer generated 2D models is presented.
机译:DNA自组装是DNA纳米技术中的一种新兴技术,有望在制药,机器人技术和电子领域中的基于DNA的纳米器件的合成等高影响力应用中发挥作用。技术和思想的最新发展刺激了该地区的新增长。设计人员在该领域面临的最重大挑战是,缺乏算法和软件选项来辅助设计过程,因此,合成范围已被限制为只能在2D模型中对有限的一组形状进行建模。在本文中,我们提出了一种称为DNAjig的新设计方法来构建DNA纳米结构。此方法的重点如下:i)构建过程基于空间填充曲线的新颖应用,以对任意用户指定的2D或3D对象的形状进行建模。 ii)该方法产生了一个本质上互锁的简单但可递归构造的设计布局。 iii)提议的设计过程中的几乎所有步骤都可以自动化,并且我们提供相同的算法和基本版本的实现。 Wetlab验证显示了我们第一批计算机生成的2D模型的自组装结果。

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