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Modular DNA strand-displacement controllers for directing material expansion

机译:模块化DNA链位移控制器用于指导材料扩展

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摘要

Soft materials that swell or change shape in response to external stimuli show extensive promise in regenerative medicine, targeted therapeutics, and soft robotics. Generally, a stimulus for shape change must interact directly with the material, limiting the types of stimuli that may be used and necessitating high stimulus concentrations. Here, we show how DNA strand-displacement controllers within hydrogels can mediate size change by interpreting, amplifying, and integrating stimuli and releasing signals that direct the response. These controllers tune the time scale and degree of DNA-crosslinked hydrogel swelling and can actuate dramatic material size change in response to <100 nM of a specific biomolecular input. Controllers can also direct swelling in response to small molecules or perform logic. The integration of these stimuli-responsive materials with biomolecular circuits is a major step towards autonomous soft robotic systems in which sensing and actuation are implemented by biomolecular reaction networks.
机译:响应于外部刺激而膨胀或改变形状的软材料在再生医学,靶向治疗和软机器人中显示出广阔的前景。通常,用于形状改变的刺激必须与材料直接相互作用,限制了可以使用的刺激的类型,并且需要高的刺激浓度。在这里,我们展示了水凝胶中的DNA链置换控制器如何通过解释,放大和整合刺激并释放指导反应的信号来介导大小变化。这些控制器可以调节DNA交联的水凝胶溶胀的时间尺度和程度,并可以响应特定的生物分子输入<100 nM来激活巨大的材料尺寸变化。控制器还可以响应小分子引导溶胀或执行逻辑。这些刺激响应材料与生物分子电路的整合是朝着自主软机器人系统迈出的重要一步,在该系统中,传感和驱动是通过生物分子反应网络实现的。

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