Nucleic acid therapeutics are used for silencing, expressing or editing genes in vivo. However, their systemic stability and targeted delivery to bone marrow resident cells remains a challenge. In this study we present a nanotechnology platform based on natural lipoproteins, designed for delivering small interfering RNA (siRNA), antisense oligonucleotides and messenger RNA to myeloid cells and haematopoietic stem and progenitor cells in the bone marrow. We developed a prototype apolipoprotein nanoparticle (aNP) that stably incorporates siRNA into its core. We then created a comprehensive library of aNP formulations and extensively characterized their physicochemical properties and in vitro performance. From this library, we selected eight representative aNP-siRNA formulations and evaluated their ability to silence lysosomal-associated membrane protein 1 (Lamp1) expression in immune cell subsets in mice after intravenous administration. Using the most effective aNP identified from the screening process, we tested the platform's potential for therapeutic gene silencing in a syngeneic murine tumour model. We also demonstrated the aNP platform's suitability for splice-switching with antisense oligonucleotides and for protein production with messenger RNA by myeloid progenitor cells in the bone marrow. Our data indicate that the aNP platform holds translational potential for delivering various types of nucleic acid therapeutics to myeloid cells and their progenitors.
Nature-inspired platform nanotechnology for RNA delivery to myeloid cells and their bone marrow progenitors.
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作者:Hofstraat Stijn R J, Anbergen Tom, Zwolsman Robby, Deckers Jeroen, van Elsas Yuri, Trines Mirre M, Versteeg Iris, Hoorn Daniek, Ros Gijs W B, Bartelet Branca M, Hendrikx Merel M A, Darwish Youssef B, Kleuskens Teun, Borges Francisca, Maas Rianne J F, Verhalle Lars M, Tielemans Willem, Vader Pieter, de Jong Olivier G, Tabaglio Tommaso, Wee Dave Keng Boon, Teunissen Abraham J P, Brechbühl Eliane, Janssen Henk M, Fransen P Michel, de Dreu Anne, Schrijver David P, Priem Bram, Toner Yohana C, Beldman Thijs J, Netea Mihai G, Mulder Willem J M, Kluza Ewelina, van der Meel Roy
| 期刊: | Nature Nanotechnology | 影响因子: | 34.900 |
| 时间: | 2025 | 起止号: | 2025 Apr;20(4):532-542 |
| doi: | 10.1038/s41565-024-01847-3 | ||
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