Exploring interactions between extracellular vesicles and cells for innovative drug delivery system design

Publication date

2021-06

Authors

Kooijmans, Sander A AISNI 0000000419569707
de Jong, OlivierORCID 0000-0002-5952-9617ISNI 0000000506363168
Schiffelers, RaymondISNI 0000000045237985

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by_nc_nd

Abstract

Extracellular vesicles (EVs) are submicron cell-secreted structures containing proteins, nucleic acids and lipids. EVs can functionally transfer these cargoes from one cell to another to modulate physiological and pathological processes. Due to their presumed biocompatibility and capacity to circumvent canonical delivery barriers encountered by synthetic drug delivery systems, EVs have attracted considerable interest as drug delivery vehicles. However, it is unclear which mechanisms and molecules orchestrate EV-mediated cargo delivery to recipient cells. Here, we review how EV properties have been exploited to improve the efficacy of small molecule drugs. Furthermore, we explore which EV surface molecules could be directly or indirectly involved in EV-mediated cargo transfer to recipient cells and discuss the cellular reporter systems with which such transfer can be studied. Finally, we elaborate on currently identified cellular processes involved in EV cargo delivery. Through these topics, we provide insights in critical effectors in the EV-cell interface which may be exploited in nature-inspired drug delivery strategies.

Keywords

Drug delivery, Exosomes, Extracellular vesicle surface, Extracellular vesicles, Protein delivery, RNA delivery, Reporter systems, Small molecules, Uptake mechanisms, Pharmaceutical Science

Citation

Kooijmans, S, de Jong, O G & Schiffelers, R 2021, 'Exploring interactions between extracellular vesicles and cells for innovative drug delivery system design', Advanced Drug Delivery Reviews, vol. 173, pp. 252-278. https://doi.org/10.1016/j.addr.2021.03.017