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阳离子纳米凝胶与脂质体复合的 mRNA 有效压缩递送。

Effective mRNA Delivery by Condensation with Cationic Nanogels Incorporated into Liposomes.

机构信息

Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.

Graduate School of Nanoscience and Technology, Korea Advanced Institute of Science and Technology, Daejeon 34141, Republic of Korea.

出版信息

Mol Pharm. 2023 Jun 5;20(6):3088-3099. doi: 10.1021/acs.molpharmaceut.3c00089. Epub 2023 May 15.

Abstract

The challenge in effective delivery of mRNA has been a major hurdle in their development as therapeutics. Herein, we present that the incorporation of cationic nanogels as the condensing material for mRNA into liposomes enables stable and enhanced mRNA delivery to cells . We prepared dextran-based nanogel particles, which were surface functionalized with oligoarginine peptide (DNPR9) and complexed with mRNA for incorporation into liposomes (LipoDNPR9). The use of DNPR9 with the liposomes resulted in enhanced internalization, as well as a 4-fold increase in transfection of luciferase mRNA when treated with A549 cells , compared to control liposomes. The enhancement in transfection efficiency was also observed in various cell lines while causing low cytotoxicity. The versatility of the strategy was also investigated by applying DNPR9 for mRNA condensation to ionizable lipid particles, which resulted in an ∼55% increase in transfection. The current development based on nanogel-incorporated liposomes introduces an effective platform for mRNA delivery, while the condensation strategy using DNPR9 can be widely applied for various lipid-based formulations to enhance their efficacy.

摘要

有效传递 mRNA 的挑战一直是其作为治疗药物开发的主要障碍。在此,我们提出将阳离子纳米凝胶作为 mRNA 的凝聚材料掺入脂质体中,可实现 mRNA 向细胞的稳定和增强传递。我们制备了基于葡聚糖的纳米凝胶颗粒,其表面用聚精氨酸肽(DNPR9)官能化,并与 mRNA 复合以掺入脂质体(LipoDNPR9)。与对照脂质体相比,使用带有脂质体的 DNPR9 可增强内化,以及用 A549 细胞处理时,荧光素酶 mRNA 的转染增加了 4 倍。在各种细胞系中也观察到转染效率的提高,同时导致低细胞毒性。通过将 DNPR9 应用于可离子化脂质颗粒的 mRNA 凝聚来研究该策略的多功能性,结果导致转染增加了约 55%。基于纳米凝胶掺入脂质体的当前开发为 mRNA 传递引入了一个有效的平台,而使用 DNPR9 的凝聚策略可广泛应用于各种基于脂质的制剂,以增强其功效。

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