Ji Haofei, Zhu Qubo
Xiangya School of Pharmaceutical Sciences in Central South University, Changsha 410013, Hunan, China.
J Control Release. 2023 Sep;361:803-818. doi: 10.1016/j.jconrel.2023.08.036. Epub 2023 Aug 23.
Smart nanomaterials are nano-scaled materials that respond in a controllable and reversible way to external physical or chemical stimuli. DNA self-assembly is an effective way to construct smart nanomaterials with precise structure, diverse functions and wide applications. Among them, static structures such as DNA polyhedron, DNA nanocages and DNA hydrogels, as well as dynamic reactions such as catalytic hairpin reaction, hybridization chain reaction and rolling circle amplification, can serve as the basis for building smart nanomaterials. Due to the advantages of DNA, such as good biocompatibility, simple synthesis, rational design, and good stability, these materials have attracted increasing attention in the fields of pharmaceuticals and biology. Based on their specific response design, DNA self-assembled smart nanomaterials can deliver a variety of drugs, including small molecules, nucleic acids, proteins and other drugs; and they play important roles in enhancing cellular uptake, resisting enzymatic degradation, controlling drug release, and so on. This review focuses on different assembly methods of DNA self-assembled smart nanomaterials, therapeutic strategies based on various intelligent responses, and their applications in drug delivery. Finally, the opportunities and challenges of smart nanomaterials based on DNA self-assembly are summarized.
智能纳米材料是指那些能以可控且可逆的方式对外界物理或化学刺激做出响应的纳米级材料。DNA自组装是构建具有精确结构、多样功能及广泛应用的智能纳米材料的有效方法。其中,诸如DNA多面体、DNA纳米笼和DNA水凝胶等静态结构,以及诸如催化发夹反应、杂交链式反应和滚环扩增等动态反应,都可作为构建智能纳米材料的基础。由于DNA具有良好的生物相容性、合成简单、设计合理以及稳定性好等优点,这些材料在制药和生物学领域受到了越来越多的关注。基于其特定的响应设计,DNA自组装智能纳米材料能够递送多种药物,包括小分子、核酸、蛋白质及其他药物;并且它们在增强细胞摄取、抵抗酶降解、控制药物释放等方面发挥着重要作用。本综述聚焦于DNA自组装智能纳米材料的不同组装方法、基于各种智能响应的治疗策略及其在药物递送中的应用。最后,总结了基于DNA自组装的智能纳米材料所面临的机遇与挑战。