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首页> 外文期刊>Nanoscale >Folding DNA into origami nanostructures enhances resistance to ionizing radiation
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Folding DNA into origami nanostructures enhances resistance to ionizing radiation

机译:折叠DNA折纸纳米结构增强了抗电离辐射

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摘要

We report experimental results on damage induced by ionizing radiation to DNA origami triangles which are commonly used prototypes for scaffolded DNA origami nanostructures. We demonstrate extreme stability of DNA origami upon irradiation, which is caused by (i) the multi-row design holding the shape of the origami even after severe damage to the scaffold DNA and (ii) the reduction of damage to the scaffold DNA due to the protective effect of the folded structure. With respect to damage induced by ionizing radiation, the protective effect of the structure is superior to that of a naturally paired DNA double helix. Present results allow estimating the stability of scaffolded DNA origami nanostructures in applications such as nanotechnology, pharmacy or in singulo molecular studies where they are exposed to ionizing radiation from natural and artificial sources. Additionally, possibilities are opened for scaffolded DNA use in the design of radiation-resistant and radio-sensitive materials.
机译:我们在伤害诱导报告实验结果通过电离辐射DNA折纸三角形这是常用的原型搭建DNA折纸纳米结构。极端稳定的DNA折纸辐照,由于(i)多行设计甚至折纸的形状严重损害后支架DNA和(2)减少损伤DNA由于支架折叠结构的保护作用。对损害引起的电离辐射,结构的保护作用优越的自然DNA配对吗双螺旋结构。搭建稳定的DNA折纸在应用,如纳米结构纳米技术、制药或singulo分子研究他们暴露于电离从自然和人工源辐射。此外,可能性是开放搭建DNA的设计使用防辐射的,radio-sensitive材料。

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