多核苷酸
刷子
纳米技术
DNA折纸
DNA
纳米结构
材料科学
生物
遗传学
复合材料
作者
Yunqi Yang,Qinyi Lu,Yu Chen,Marcello DeLuca,Gaurav Arya,Yonggang Ke,Stefan Zauscher
标识
DOI:10.1002/anie.202311727
摘要
Abstract DNA nanotechnology provides an approach to create precise, tunable, and biocompatible nanostructures for biomedical applications. However, the stability of these structures is severely compromised in biological milieu due to their fast degradation by nucleases. Recently, we showed how enzymatic polymerization could be harnessed to grow polynucleotide brushes of tunable length and location on the surface of DNA origami nanostructures, which greatly enhances their nuclease stability. Here, we report on strategies that allow for both spatial and temporal control over polymerization through activatable initiation, cleavage, and regeneration of polynucleotide brushes using restriction enzymes. The ability to site‐specifically decorate DNA origami nanostructures with polynucleotide brushes in a spatiotemporally controlled way provides access to “smart” functionalized DNA architectures with potential applications in drug delivery and supramolecular assembly.
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