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Efficient intracellular delivery of biomacromolecules employing clusters of zinc oxide nanowires

机译:有效的细胞内交货《雇佣的锌氧化物纳米线

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摘要

Zinc oxide (ZnO) nanocomposites have been widely applied in biomedical fields due to their multifunctionality and biocompatibility. However, the physicochemical properties of ZnO nanocomposite involved in nano-bio interactions are poorly defined. To assess the potential applicability of ZnO nanowires for intracellular delivery of biomolecules, we examined the dynamics of cellular activity of cells growing on densely packed ZnO nanowire arrays with two different physical conformations, vertical (VNW) or fan-shaped (FNW) nanowires. Although a fraction of human embryonic kidney cells cultured on VNW or FNW underwent rapid apoptosis, peaking at 6 h after incubation, cells could survive and replicate without significant apoptosis on the foreign substrate after 12 h of lag phase. In addition, the cells formed lamellipodia to wrap FNW, and efficiently took up peptides non-covalently coated on VNW and FNW within 30 min of incubation. Moreover, FNW could mediate intracellular delivery of associated DNAs and their gene expression, suggesting that ZnO nanowires transiently penetrate membranes to mediate intranuclear delivery of exogenous DNA. These results indicate that ZnO nanowire arrays can serve as nanocomposites for manipulating nano-bio interfaces if appropriately modified in a 3-dimensional conformation.
机译:氧化锌纳米复合材料已经广泛由于其在生物医学领域应用多功能性和生物相容性。氧化锌的物理化学性质纳米复合材料参与nano-bio交互不定义。细胞内的适用性的氧化锌纳米线提供生物分子,我们检查了细胞活性的细胞生长动力学密集的氧化锌纳米线阵列和两个不同的物理构象,垂直(VNW)或扇形(FNW)纳米线。部分人类胚胎肾细胞培养VNW或FNW经历了快速的细胞凋亡,见顶在孵化后6 h,细胞生存和复制没有明显的细胞凋亡外国衬底后12 h的停滞阶段。此外,细胞形成板状伪足包装FNW,有效地拿起肽非共价涂布VNW和FNW 30最小的孵化。相关的dna和细胞内交货他们的基因表达,这表明氧化锌纳米线是暂时性的渗透膜调解在细胞核内的外源DNA。这些结果表明,氧化锌纳米线阵列可以作为纳米复合材料用于操作吗如果适当地修改nano-bio接口一个三维构象。

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