DNA折纸
模块化设计
纳米机器人学
控制重构
转化(遗传学)
纳米技术
DNA
DNA纳米技术
自重构模块化机器人
计算机科学
化学
人工智能
嵌入式系统
材料科学
机器人
基因
操作系统
机器人控制
生物化学
移动机器人
作者
Dongfang Wang,Lei Yu,Chao‐Min Huang,Gaurav Arya,Shuai Chang,Yonggang Ke
摘要
Dynamic DNA origami has been employed for generating a rich repository of molecular nanomachines that are capable of sensing various cues and changing their conformations accordingly. The common design principle of the existing DNA origami nanomachines is that each dynamic DNA origami is programmed to transform in a specific manner, and the nanomachine needs to be redesigned to achieve a different form of transformation. However, it remains challenging to enable a multitude of controlled transformations in a single design of dynamic DNA nanomachine. Here we report a modular design method to programmatically tune the shapes of a DNA origami nanomachine. The DNA origami consists of small, modular DNA units, and the length of each unit can be selectively changed by toehold-mediated strand displacement. By use of different combinations of trigger DNA strands, modular DNA units can be selectively transformed, leading to the programmable reconfiguration of the overall dimensions and curvatures of DNA origami. The modular design of programmable shape transformation of DNA origami can find potential applications in more sophisticated molecular nanorobots and smart drug delivery nanocarriers.
科研通智能强力驱动
Strongly Powered by AbleSci AI