In vivo imaging of EVs in zebrafish: New perspectives from “the waterside”

Publication date

2021-11

Authors

Verdi, Vincenzo
Bécot, Anaïs
Niel, Guillaume
Verweij, FrederikORCID 0000-0001-8879-1174ISNI 0000000388627280

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by_nc

Abstract

To harmoniously coordinate the activities of all its different cell types, a multicellular organism critically depends on intercellular communication. One recently discovered mode of intercellular cross-talk is based on the exchange of "extracellular vesicles" (EVs). EVs are nano-sized heterogeneous lipid bilayer vesicles enriched in a variety of biomolecules that mediate short- and long-distance communication between different cells, and between cells and their environment. Numerous studies have demonstrated important aspects pertaining to the dynamics of their release, their uptake, and sub-cellular fate and roles in vitro. However, to demonstrate these and other aspects of EV biology in a relevant, fully physiological context in vivo remains challenging. In this review we analyze the state of the art of EV imaging in vivo, focusing in particular on zebrafish as a promising model to visualize, study, and characterize endogenous EVs in real-time and expand our understanding of EV biology at cellular and systems level.

Keywords

exosomes, extracellular vesicles, homeostasis, live-imaging, zebrafish, Biochemistry, Genetics and Molecular Biology (miscellaneous), Cancer Research, Molecular Medicine, Physiology, SDG 3 - Good Health and Well-being

Citation

Verdi, V, Bécot, A, Niel, G & Verweij, F J 2021, 'In vivo imaging of EVs in zebrafish: New perspectives from “the waterside”', FASEB BioAdvances, vol. 3, no. 11, pp. 918-929. https://doi.org/10.1096/fba.2021-00081