CAS Key Laboratory of Soft Matter Chemistry, Hefei National Research Center for Physical Sciences at the Microscale, Department of Chemistry, University of Science and Technology of China, Hefei, Anhui 230026, China.
J Am Chem Soc. 2021 Mar 3;143(8):3065-3069. doi: 10.1021/jacs.1c00568. Epub 2021 Feb 18.
Nanoparticles (NPs) decorated with a high density of DNA strands, also known as spherical nucleic acids (SNAs), are widely used in DNA-programmable assembly, sensing, imaging, and therapeutics. A regular SNA synthesis is very time-consuming, which requires great caution to avoid NP aggregation. Herein we report an extremely simple, efficient, and scalable process to realize instant (in seconds) synthesis of SNAs with record-high DNA density. Our method relies on a rapid water removal from a DNA/NP mixture in contact with a butanol phase. This process generates a dehydrated "solid solution" that greatly accelerates DNA anchorage on NPs via Au-S bonding. Compared to a state-of-the-art DNA conjugation strategy in the literature, up to 3-time increase of DNA density is achieved by the instant dehydration in butanol (INDEBT). The ultradense DNA grafting is accomplished in a few seconds, which is highly hybridizable to form core-satellite assemblies. Our work turns SNA synthesis into an easy job, and enables future explorations of physical, chemical, and biological effects of SNAs with ultrahigh DNA density.
纳米粒子(NPs)表面高密度的 DNA 链,也被称为球形核酸(SNAs),被广泛应用于 DNA 可编程组装、传感、成像和治疗。常规的 SNA 合成非常耗时,需要格外小心以避免 NP 聚集。在此,我们报道了一种非常简单、高效且可扩展的方法,可实现具有超高 DNA 密度的 SNAs 的瞬间(数秒内)合成。我们的方法依赖于将与丁醇相接触的 DNA/NP 混合物中的水迅速去除。该过程生成脱水的“固溶体”,通过 Au-S 键极大地加速 DNA 在 NPs 上的附着。与文献中现有的一种最先进的 DNA 偶联策略相比,通过丁醇中的瞬时脱水(INDEBT)可实现高达 3 倍的 DNA 密度增加。超密集的 DNA 接枝在几秒钟内完成,这高度有利于形成核-卫星组装。我们的工作使 SNA 合成变得轻而易举,为探索具有超高 DNA 密度的 SNAs 的物理、化学和生物学效应开辟了道路。