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Creating Designer Engineered Extracellular Vesicles for Diverse Ligand Display, Target Recognition, and Controlled Protein Loading and Delivery.

Authors :
Ivanova, Alena
Badertscher, Lukas
O'Driscoll, Gwen
Bergman, Joakim
Gordon, Euan
Gunnarsson, Anders
Johansson, Camilla
Munson, Michael J.
Spinelli, Cristiana
Torstensson, Sara
Vilén, Liisa
Voirel, Andrei
Wiseman, John
Rak, Janusz
Dekker, Niek
Lázaro‐Ibáñez, Elisa
Source :
Advanced Science; Dec2023, Vol. 10 Issue 34, p1-17, 17p
Publication Year :
2023

Abstract

Efficient and targeted delivery of therapeutic agents remains a bottleneck in modern medicine. Here, biochemical engineering approaches to advance the repurposing of extracellular vesicles (EVs) as drug delivery vehicles are explored. Targeting ligands such as the sugar GalNAc are displayed on the surface of EVs using a HaloTag‐fused to a protein anchor that is enriched on engineered EVs. These EVs are successfully targeted to human primary hepatocytes. In addition, the authors are able to decorate EVs with an antibody that recognizes a GLP1 cell surface receptor by using an Fc and Fab region binding moiety fused to an anchor protein, and they show that this improves EV targeting to cells that overexpress the receptor. The authors also use two different protein‐engineering approaches to improve the loading of Cre recombinase into the EV lumen and demonstrate that functional Cre protein is delivered into cells in the presence of chloroquine, an endosomal escape enhancer. Lastly, engineered EVs are well tolerated upon intravenous injection into mice without detectable signs of liver toxicity. Collectively, the data show that EVs can be engineered to improve cargo loading and specific cell targeting, which will aid their transformation into tailored drug delivery vehicles. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
21983844
Volume :
10
Issue :
34
Database :
Complementary Index
Journal :
Advanced Science
Publication Type :
Academic Journal
Accession number :
174030573
Full Text :
https://doi.org/10.1002/advs.202304389