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Folding and Characterization of a Bio-responsive Robot from DNA Origami

机译:DNA折纸的生物响应机器人的折叠和表征

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摘要

The DNA nanorobot is a hollow hexagonal nanometric device, designed to open in response to specific stimuli and present cargo sequestered inside. Both stimuli and cargo can be tailored according to specific needs. Here we describe the DNA nanorobot fabrication protocol, with the use of the DNA origami technique. The procedure initiates by mixing short single-strand DNA staples into a stock mixture which is then added to a long, circular, single-strand DNA scaffold in presence of a folding buffer. A standard thermo cycler is programmed to gradually lower the mixing reaction temperature to facilitate the staples-to-scaffold annealing, which is the guiding force behind the folding of the nanorobot. Once the 60 hr folding reaction is complete, excess staples are discarded using a centrifugal filter, followed by visualization via agarose-gel electrophoresis (AGE). Finally, successful fabrication of the nanorobot is verified by transmission electron microscopy (TEM), with the use of uranyl-formate as negative stain.
机译:DNA纳米机器人是一种中空的六角形纳米装置,旨在根据特定刺激而打开,并将货物隔离在内部。刺激和货物都可以根据特定需求进行定制。在这里,我们使用DNA折纸技术描述了DNA纳米机器人的制造方案。该过程开始于将短的单链DNA短钉混合到储备混合物中,然后在折叠缓冲液存在的情况下将其添加到长的圆形单链DNA支架中。对标准的热循环仪进行编程,以逐渐降低混合反应温度,以促进钉到支架的退火,这是纳米机器人折叠后的引导力。 60小时的折叠反应完成后,使用离心过滤器丢弃多余的订书钉,然后通过琼脂糖凝胶电泳(AGE)进行可视化。最后,使用铀酰甲酸酯作为阴性染色剂,通过透射电子显微镜(TEM)验证了纳米机器人的成功制造。

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