Exploring the potential of cell-derived vesicles for transient delivery of gene editing payloads

[Display omitted] Gene editing technologies have the potential to correct genetic disorders by modifying, inserting, or deleting specific DNA sequences or genes, paving the way for a new class of genetic therapies. While gene editing tools continue to be improved to increase their precision and effi...

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Veröffentlicht in:Advanced drug delivery reviews 2024-08, Vol.211, p.115346-115346, Article 115346
Hauptverfasser: Leandro, Kevin, Rufino-Ramos, David, Breyne, Koen, Di Ianni, Emilio, Lopes, Sara M., Jorge Nobre, Rui, Kleinstiver, Benjamin P., Perdigão, Pedro R.L., Breakefield, Xandra O., Pereira de Almeida, Luís
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Sprache:eng
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Zusammenfassung:[Display omitted] Gene editing technologies have the potential to correct genetic disorders by modifying, inserting, or deleting specific DNA sequences or genes, paving the way for a new class of genetic therapies. While gene editing tools continue to be improved to increase their precision and efficiency, the limited efficacy of in vivo delivery remains a major hurdle for clinical use. An ideal delivery vehicle should be able to target a sufficient number of diseased cells in a transient time window to maximize on-target editing and mitigate off-target events and immunogenicity. Here, we review major advances in novel delivery platforms based on cell-derived vesicles − extracellular vesicles and virus-like particles − for transient delivery of gene editing payloads. We discuss major findings regarding packaging, in vivo biodistribution, therapeutic efficacy, and safety concerns of cell-derived vesicles delivery of gene editing cargos and their potential for clinical translation.
ISSN:0169-409X
1872-8294
1872-8294
DOI:10.1016/j.addr.2024.115346