Wang Yue, Song Hao, Liu Chao, Zhang Ye, Kong Yueqi, Tang Jie, Yang Yannan, Yu Chengzhong
Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, Brisbane, QLD 4072, Australia.
School of Chemistry and Molecular Engineering, East China Normal University, Shanghai 200241, China.
Natl Sci Rev. 2020 Oct 23;8(8):nwaa268. doi: 10.1093/nsr/nwaa268. eCollection 2021 Aug.
Zeolitic imidazolate framework-8 (ZIF-8) and its composites have diverse applications. However, ZIF-8-based nanocomposites are mainly used as carriers in biomolecular delivery, with the functions of metal ions and ligands rarely used to modulate the biofunctions. In this work, dendritic mesoporous organosilica nanoparticles (DMONs) with tetrasulfide bond were used to confine ZIF-8 growth partially inside mesopores as a novel nanocomposite for mRNA delivery. Each component in the resultant DMONs-ZIF-8 contributed to mRNA delivery applications, including high loading benefitting from positively charged ZIF-8 and large mesopores of DMONs, endosomal escape promoted by the imidazole ring of ZIF-8, and long-term glutathione depletion mediated by both zinc ions and tetrasulfide bond. Combined together, DMONs-ZIF-8 demonstrated enhanced mRNA translation and better transfection efficiency than commercial products and toxic polymer-modified DMONs and .
沸石咪唑酯骨架材料-8(ZIF-8)及其复合材料有多种应用。然而,基于ZIF-8的纳米复合材料主要用作生物分子递送的载体,金属离子和配体的功能很少用于调节生物功能。在这项工作中,具有四硫键的树枝状介孔有机硅纳米颗粒(DMONs)被用于将ZIF-8的生长部分限制在介孔内,作为一种用于mRNA递送的新型纳米复合材料。所得的DMONs-ZIF-8中的每个组分都有助于mRNA递送应用,包括受益于带正电荷的ZIF-8和DMONs的大介孔的高负载量、由ZIF-8的咪唑环促进的内体逃逸,以及由锌离子和四硫键介导的长期谷胱甘肽消耗。综合起来,DMONs-ZIF-8表现出比商业产品以及有毒聚合物修饰的DMONs更高的mRNA翻译能力和更好的转染效率。