Intracellular delivery of protein and RNA therapeutics represents a major challenge. Here, we develop highly potent engineered extracellular vesicles (EVs) by incorporating bio-inspired attributes required for effective delivery. These comprise an engineered mini-intein protein with self-cleavage activity for active cargo loading and release, and fusogenic VSV-G protein for endosomal escape. Combining these components allows high efficiency recombination and genome editing in vitro following EV-mediated delivery of Cre recombinase and Cas9/sgRNA RNP cargoes, respectively. In vivo, infusion of a single dose Cre loaded EVs into the lateral ventricle in brain of Cre-LoxP R26-LSL-tdTomato reporter mice results in greater than 40% and 30% recombined cells in hippocampus and cortex respectively. In addition, we demonstrate therapeutic potential of this platform by showing inhibition of LPS-induced systemic inflammation via delivery of a super-repressor of NF-ĸB activity. Our data establish these engineered EVs as a platform for effective delivery of multimodal therapeutic cargoes, including for efficient genome editing.
Engineering of extracellular vesicles for efficient intracellular delivery of multimodal therapeutics including genome editors.
改造细胞外囊泡,以实现包括基因组编辑器在内的多模式治疗药物的高效细胞内递送
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作者:Liang Xiuming, Gupta Dhanu, Xie Junhua, Van Wonterghem Elien, Van Hoecke Lien, Hean Justin, Niu Zheyu, Ghaeidamini Marziyeh, Wiklander Oscar P B, Zheng Wenyi, Wiklander Rim Jawad, He Rui, Mamand Doste R, Bost Jeremy, Zhou Guannan, Zhou Houze, Roudi Samantha, Estupiñán H Yesid, Rädler Julia, Zickler Antje M, Görgens André, Hou Vicky W Q, Slovak Radka, Hagey Daniel W, de Jong Olivier G, Uy Aileen Geobee, Zong Yuanyuan, Mäger Imre, Perez Carla Martin, Roberts Thomas C, Carter Dave, Vader Pieter, Esbjörner Elin K, de Fougerolles Antonin, Wood Matthew J A, Vandenbroucke Roosmarijn E, Nordin Joel Z, El Andaloussi Samir
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Apr 29; 16(1):4028 |
| doi: | 10.1038/s41467-025-59377-y | 研究方向: | 细胞生物学 |
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