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Delaminated layered double hydroxide delivers DNA molecules as sandwich nanostructure into cells via a non-endocytic pathway

机译:分层层状双氢氧化物通过非内吞的途径将DNA分子作为夹层纳米结构纳入细胞

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摘要

Layered double hydroxides (LDHs) are effective molecular carriers in cytological research, gene therapy, and transgenic applications. Herein, we investigated the internalization behavior of the LDH-DNA bioconjugates via a microscopic approach and analyzed the internalization pathway by dissipative particle dynamics (DPD) simulations. We experimentally found that LDH can efficiently carry DNA into the nucleus of cell in BY-2 suspension cells. Furthermore, atomic force microscopy and X-ray diffraction analysis demonstrated that the LDH-DNA bioconjugates mainly exist as a DNA-LDH-DNA sandwich complex, while the LDH-DNA-LDH sandwich complex and DNA-LDH complex cannot be excluded. The DPD simulations further indicated that only the DNA-LDH-DNA sandwich structure could penetrate the plasma membrane (PM), while PM is impermeable to the LDH-DNA-LDH sandwich complex and the DNA-LDH complex. This work provides novel perspective for understanding the membrane penetration mechanism of LDH nano-sheets and new insights into the design of novel molecular delivery systems.
机译:层状双氢氧化物(水滑石)是细胞学研究,基因治疗,和转基因的应用有效分子的载体。在此,我们通过微观的方法调查了LDH-DNA生物缀合物的内化行为,并通过耗散粒子动力学(DPD)模拟的内化通路。我们实验发现,LDH可以有效地进行DNA导入细胞的在BY-2悬浮细胞细胞核。此外,原子力显微镜和X射线衍射分析表明,LDH-DNA生物缀合物主要存在作为DNA-LDH-DNA夹心复合,而LDH-DNA-LDH夹心复合和DNA-LDH复杂不能排除。该DPD模拟进一步表明,只有在DNA-LDH-DNA夹层结构可以穿透质膜(PM),而PM不渗透LDH-DNA-LDH夹心复合物和DNA-LDH复杂。这项工作提供了新颖的角度为理解LDH纳米片和新的见解的膜渗透机制引入新的分子递送系统的设计。

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