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Assembly of a functional and responsive microstructure by heat bonding of DNA-grafted colloidal brick

机译:通过DNA接枝胶体砖的热粘合组装功能性和响应微观结构

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摘要

Abstract A micromachine constructed to possess various chemical and mechanical functions is one of the ultimate targets of technology. Conventional lithographic processes can be used to form complicated structures. However, they are basically limited to rigid and static structures with poor surface properties. Here, we demonstrate a novel method for assembling responsive and functional microstructures from diverse particles modified with DNA strands. The DNA strands are designed to form hairpins at room temperature and denature when heated. Structures are assembled through the simultaneous manipulation and heating of particles with “hot” optical tweezers, which incorporates the particles one by one. The flexible connection formed by DNA strands allows the responsive deformation of the structures with local controllability of the structural flexibility. We assembled a microscopic robot arm actuated by an external magnet, a hinge structure with a locally controlled connection flexibility and a three-dimensional double helix structure. The method is simple and can also be applied to build complex biological tissues from cells.
机译:摘要构建的微鼠具有各种化学和机械功能是技术的最终目标之一。传统的光刻工艺可用于形成复杂的结构。然而,它们基本上限于具有差的表面性质的刚性和静态结构。在这里,我们证明了一种从DNA链改性的各种颗粒组装响应性和功能性微观结构的新方法。 DNA链设计用于在室温下在室温下在加热时形成发夹。结构通过同时操纵和加热颗粒与“热”光学镊子组装,其逐一将颗粒掺入。通过DNA链形成的柔性连接允许具有结构柔性的局部可控性的结构响应变形。我们组装了由外部磁铁驱动的微观机器人臂,铰链结构具有局部控制的连接柔性和三维双螺旋结构。该方法简单,也可以应用于从细胞构建复杂的生物组织。

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