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Amphiphilic DNA Organic Hybrids: Functional Materials in Nanoscience and Potential Application in Biomedicine

机译:两亲性DNA有机杂化物:纳米科学中的功能材料及其在生物医学中的潜在应用

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摘要

Due to the addressability and programmability, DNA has been applied not merely in constructing static elegant nanostructures such as two dimensional and three dimensional DNA nanostructures but also in designing dynamic nanodevices. Moreover, DNA could combine with hydrophobic organic molecules to be a new amphiphilic building block and then self-assemble into nanomaterials. Of particular note, a recent state-of-the-art research has turned our attention to the amphiphilic DNA organic hybrids including small molecule modified DNA (lipid-DNA, fluorescent molecule-DNA, etc.), DNA block copolymers, and DNA-dendron hybrids. This review focuses mainly on the development of their self-assembly behavior and their potential application in nanomaterial and biomedicine. The potential challenges regarding of the amphiphilic DNA organic hybrids are also briefly discussed, aiming to advance their practical applications in nanoscience and biomedicine.
机译:由于可寻址性和可编程性,DNA不仅被用于构建静态优雅的纳米结构(例如二维和三维DNA纳米结构),而且还被用于设计动态纳米设备。此外,DNA可以与疏水性有机分子结合成为新的两亲性构建基块,然后自组装成纳米材料。特别值得注意的是,最近的一项最新研究已将我们的注意力转向了两亲性DNA有机杂化物,包括小分子修饰的DNA(脂质DNA,荧光分子DNA等),DNA嵌段共聚物和DNA-树突杂种。这项审查主要侧重于其自组装行为的发展及其在纳米材料和生物医学中的潜在应用。还简要讨论了有关两亲性DNA有机杂合体的潜在挑战,旨在推进其在纳米科学和生物医学中的实际应用。

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