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Assembly of DNA Architectures in a Non-Aqueous Solution

机译:非水溶液中DNA架构的组装

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摘要

In the present work, the procedures for the creation of self-assembled DNA nanostructures in aqueous and non-aqueous media are described. DNA-Surfactant complex formation renders the DNA soluble in organic solvents offering an exciting way to bridge the transition of DNA origami materials electronics applications. The DNA retains its structural features, and these unique geometries provide an interesting candidate for future electronics and nanofabrication applications with potential for new properties. The DNA architectures were first assembled under aqueous conditions, and then characterized in solution (using circular dichroism (CD) spectroscopy) and on the surface (using atomic force microscopy (AFM)). Following aqueous assembly, the DNA nanostructures were transitioned to a non-aqueous environment, where butanol was chosen for optical compatibility and thermal properties. The retention of DNA hierarchical structure and thermal stability in non-aqueous conditions were confirmed via CD spectroscopy. The formation and characterization of these higher order DNA-surfactant complexes is described in this paper.
机译:在本工作中,描述了在水性和非水性介质中创建自组装DNA纳米结构的过程。 DNA表面活性剂复合物的形成使DNA溶于有机溶剂,为桥接DNA折纸材料电子应用的过渡提供了一种令人兴奋的方式。 DNA保留了其结构特征,这些独特的几何结构为未来的电子学和纳米加工应用提供了具有新特性潜力的有趣候选对象。首先在水性条件下组装DNA结构,然后在溶液(使用圆二色性(CD)光谱)和表面(使用原子力显微镜(AFM))中进行表征。水性组装后,DNA纳米结构过渡到非水性环境,在该环境中选择丁醇以提高光学兼容性和热性能。通过CD光谱法确认了DNA分级结构的保留和在非水条件下的热稳定性。本文描述了这些高级DNA表面活性剂复合物的形成和表征。

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