Delivery of engineered extracellular vesicles with miR-29b editing system for muscle atrophy therapy

携带 miR-29b 编辑系统的工程化细胞外囊泡用于肌肉萎缩治疗

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作者:Rui Chen #, Weilin Yuan #, Yongjun Zheng #, Xiaolan Zhu, Bing Jin, Tingting Yang, Yuwei Yan, Wanru Xu, Hongjian Chen, Juan Gao, Guoping Li, Priyanka Gokulnath, Gururaja Vulugundam, Jin Li, Junjie Xiao

Abstract

Muscle atrophy is a frequently observed complication, characterized by the loss of muscle mass and strength, which diminishes the quality of life and survival. No effective therapy except exercise is currently available. In our previous study, repressing miR-29b has been shown to reduce muscle atrophy. In our current study, we have constructed artificially engineered extracellular vesicles for the delivery of CRISPR/Cas9 to target miR-29b (EVs-Cas9-29b). EVs-Cas9-29b has shown a favorable functional effect with respect to miR-29b repression in a specific and rapid manner by gene editing. In in vitro conditions, EVs-Cas9-29b could protect against muscle atrophy induced by dexamethasone (Dex), angiotensin II (AngII), and tumor necrosis factor-alpha (TNF-α). And EVs-Cas9-29b introduced in vivo preserved muscle function in the well-established immobilization and denervation-induced muscle atrophy mice model. Our work demonstrates an engineered extracellular vesicles delivery of the miR-29b editing system, which could be potentially used for muscle atrophy therapy.

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