两亲性
超分子化学
二茂铁
DNA
胶束
非共价相互作用
化学
组合化学
尼罗河红
分子
自组装
疏水效应
纳米技术
材料科学
有机化学
共聚物
水溶液
氢键
生物化学
电化学
物理化学
物理
荧光
量子力学
聚合物
电极
作者
Wei Yuan,Jiahui Ma,Zhiyong Zhao,Simin Liu
标识
DOI:10.1002/marc.202000022
摘要
Abstract Smart DNA nanostructures have found potential application in material science and biomedicine. Most building blocks are DNA amphiphiles covalently synthesized from DNA and hydrophobic molecules. Here, the noncovalent approach based on the host–guest interaction between cucurbit[7]uril (CB[7]) and two hydrophobic guests with different topologies is utilized to modularly construct supramolecular DNA amphiphiles including DNA‐CB[7]/ferrocene derivative and DNA‐CB[7]/adamantine derivative. Both of the supramolecular DNA amphiphiles assemble into uniform spherical micelles, which can encapsulate hydrophobic Nile Red molecules and anchor gold nanoparticles through DNA hybridization. In addition, 1‐adamantanamine hydrochloride, a competitive guest with a strong binding constant with CB[7], induces the dissociation of DNA‐CB[7]/ferrocene derivative micelles. More importantly, the redox properties of ferrocene induce reversible morphology changes between the spherical micelles and the dissociated state. These stimuli‐responsive DNA supra‐amphiphilic micelles, as novel vehicles, expand the family of smart DNA nanostructures.
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