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Reconfigurable DNA Origami Nanocapsule for pH-Controlled Encapsulation and Display of Cargo

机译:可重新配置的DNA折纸纳米粉刺用于pH控制的封装和展示货物

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摘要

DNA nanotechnology provides a toolbox for creating custom and precise nanostructures with nanometer-level accuracy. These nano-objects are often static by nature and serve as versatile templates for assembling various molecular components in a user-defined way. In addition to the static structures, the intrinsic programmability of DNA nanostructures allows the design of dynamic devices that can perform predefined tasks when triggered with external stimuli, such as drug delivery vehicles whose cargo display or release can be triggered with a specified physical or chemical cue in the biological environment. Here, we present a DNA origami nanocapsule that can be loaded with cargo and reversibly opened and closed by changing the pH of the surrounding solution. Moreover, the threshold pH value for opening/closing can be rationally designed. We characterize the reversible switching and a rapid opening of "pH-latch"-equipped nanocapsules using Forster resonance energy transfer. Furthermore, we demonstrate the full cycle of capsule loading, encapsulation, and displaying the payload using metal nanoparticles and functional enzymes as cargo mimics at physiologically relevant ion concentrations.
机译:DNA纳米技术提供一种工具箱,用于创建具有纳米级精度的定制和精确纳米结构。这些纳米物体通常是静态的,并且用作以用户定义的方式组装各种分子组分的多功能模板。除了静态结构之外,DNA纳米结构的内在可编程性允许设计能够在用外部刺激触发时执行预定义任务的动态设备,例如可以用指定的物理或化学性能触发货物显示器或释放的药物输送车辆在生物环境中。在这里,我们介绍了可以装载货物的DNA折纸纳米胶囊,并通过改变周围溶液的pH来装配货物并可逆地打开和关闭。此外,可以合理设计开/关阈值的阈值pH值。我们将可逆切换和快速打开的“PH-LATCH” - 使用福利​​谐振能量转移的纳米胶囊进行了快速打开。此外,我们证明了使用金属纳米粒子和功能性酶作为货物相关的离子浓度的货物模拟所呈现的胶囊装载,包封和显示有效载荷。

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