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首页> 外文期刊>Nanoscale >DNA density-dependent uptake of DNA origami-based two-or three-dimensional nanostructures by immune cells
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DNA density-dependent uptake of DNA origami-based two-or three-dimensional nanostructures by immune cells

机译:密度依赖的DNA的DNA折纸工艺两个或两个三维纳米结构由免疫细胞

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摘要

DNA nanostructures are expected to be applied for targeted drug delivery to immune cells. However, the structural properties of DNA nanostructures required for the delivery have not fully been elucidated. In this study, we focused on the DNA density that can be important for the their recognition and uptake by immune cells. To examine this, DNA nanostructures with almost identical molecular weights and structural flexibility, but with different shapes and DNA densities, were designed using DNA origami technology. We compared the following five types of DNA nanostructures, all of which consisted of ten DNA helices using an identical circular, single-stranded scaffold and staples. Rec180 had a rectangular-shaped, almost flat structure. Rec90, Rec50 and Rec0 were bent forms of Rec180 at the center by 90, 50 or 0 degrees, respectively. Rec50/50 has two bends of 50 degrees each so that the both ends stick together to form a triangular prism shape. The fluctuation, or flexibility, of these DNA nanostructures under solution conditions was estimated using CanDo software. The DNA density estimated from the average distance between any two of the ten DNA helices in the DNA nanostructures was different among them; Rec50, Rec0 and Rec50/50 had a higher density than Rec180 and Rec90. Agarose gel electrophoresis and atomic force microscopy showed that all of the nanostructures were prepared with high yield. Flow cytometry analysis revealed that the uptake of DNA nanostructures by murine macrophage-like RAW264.7 cells was higher for those with higher DNA density than those with low density. There was a positive correlation between the density and cellular uptake. These results indicate that DNA nanostructures with high DNA density are suitable for delivery to immune cells.
机译:DNA纳米结构将申请靶向药物输送免疫细胞。DNA纳米结构的结构性能交付所需的尚未完全阐明。密度,可以对他们很重要通过免疫细胞识别和吸收。检查这个,DNA纳米结构几乎相同的分子量和结构灵活性,但有不同的形状和DNA密度,设计使用DNA折纸技术。DNA的纳米结构,所有这些都包括十个DNA螺旋使用一个相同的循环,单股的脚手架和主食。一个长方形的,几乎平面结构。Rec90, Rec50和Rec0 Rec180形式中心,到90年,50 0度,分别。度每两头粘在一起形成一个三角棱镜的形状。波动或灵活性,这些DNA纳米结构在溶液条件下估计用诚挚的软件。估计任何之间的平均距离两个十DNA螺旋的DNA其中纳米结构不同;Rec0和Rec50/50密度高于Rec180 Rec90。原子力显微镜显示,所有的纳米结构与高产准备。流式细胞仪分析显示,吸收小鼠macrophage-like DNA纳米结构RAW264.7细胞是更高的DNA密度比低密度。是密度之间的正相关关系和细胞吸收。DNA与高密度DNA纳米结构适合交付的免疫细胞。

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