Wireframe DNA origami nanostructure with the controlled opening of edges

IF 3.2 3区 工程技术 Q2 CHEMISTRY, PHYSICAL Molecular Systems Design & Engineering Pub Date : 2024-10-21 DOI:10.1039/D4ME00144C
Maryam Mogheiseh and Reza Hasanzadeh Ghasemi
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Abstract

Wireframe DNA origami nanostructures present significant potential for a variety of applications in nanotechnology, primarily due to their straightforward design and construction processes. The precise control afforded by these nanostructures renders them exceptionally suitable for executing specific tasks. This study introduces innovative designs by altering short strands (staples) in wireframe DNA origami nanostructures, leading to different behaviors at human body temperature. These behaviors include the selective opening of certain parts of the structure while keeping other parts closed. Our research demonstrates that wireframe DNA origami nanostructures, with their numerous edges, can be engineered to allow selective opening of specific edges. This capability facilitates precise control over the structural configuration, enabling designers to customize these nanostructures to fulfill specific functional requirements. Consequently, the use of these controllable nanostructures opens up new avenues for developing nanorobots. By leveraging the unique properties of wireframe DNA origami, this study paves the way for advancements in the field of nanotechnology, particularly in the creation of versatile and adaptable nanoscale devices.

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线框DNA折纸纳米结构与控制边缘的开放
线框DNA折纸纳米结构在纳米技术的各种应用中表现出巨大的潜力,主要是因为它们的设计和构造过程简单。这些纳米结构提供的精确控制使它们非常适合执行特定任务。本研究通过改变线框DNA折纸纳米结构中的短链(订书钉)来引入创新设计,从而导致在人体温度下的不同行为。这些行为包括有选择地打开结构的某些部分,同时保持其他部分关闭。我们的研究表明,具有众多边缘的线框DNA折纸纳米结构可以被设计成允许选择性打开特定边缘。这种能力有助于对结构配置的精确控制,使设计人员能够定制这些纳米结构以满足特定的功能要求。因此,这些可控纳米结构的使用为开发纳米机器人开辟了新的途径。通过利用线框DNA折纸的独特特性,本研究为纳米技术领域的进步铺平了道路,特别是在创造多功能和适应性纳米级设备方面。
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来源期刊
Molecular Systems Design & Engineering
Molecular Systems Design & Engineering Engineering-Biomedical Engineering
CiteScore
6.40
自引率
2.80%
发文量
144
期刊介绍: Molecular Systems Design & Engineering provides a hub for cutting-edge research into how understanding of molecular properties, behaviour and interactions can be used to design and assemble better materials, systems, and processes to achieve specific functions. These may have applications of technological significance and help address global challenges.
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