Bioinspired Cell-Derived Nanovesicles versus Exosomes as Drug Delivery Systems: a Cost-Effective Alternative

Publication date

2017-10-30

Authors

Goh, Wei Jiang
Zou, Shui
Ong, Wei Yi
Torta, Federico
Alexandra, Alvarez Fernandez
Schiffelers, RaymondISNI 0000000045237985
Storm, GerritISNI 0000000042534976
Wang, Jiong Wei
Czarny, BertrandISNI 0000000401732457
Pastorin, Giorgia

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Document Type

Article
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Abstract

Cell Derived Nanovesicles (CDNs) have been developed from the rapidly expanding field of exosomes, representing a class of bioinspired Drug Delivery Systems (DDS). However, translation to clinical applications is limited by the low yield and multi-step approach in isolating naturally secreted exosomes. Here, we show the first demonstration of a simple and rapid production method of CDNs using spin cups via a cell shearing approach, which offers clear advantages in terms of yield and cost-effectiveness over both traditional exosomes isolation, and also existing CDNs fabrication techniques. The CDNs obtained were of a higher protein yield and showed similarities in terms of physical characterization, protein and lipid analysis to both exosomes and CDNs previously reported in the literature. In addition, we investigated the mechanisms of cellular uptake of CDNs in vitro and their biodistribution in an in vivo mouse tumour model. Colocalization of the CDNs at the tumour site in a cancer mouse model was demonstrated, highlighting the potential for CDNs as anti-cancer strategy. Taken together, the results suggest that CDNs could provide a cost-effective alternative to exosomes as an ideal drug nanocarrier.

Keywords

SDG 3 - Good Health and Well-being

Citation

Goh, W J, Zou, S, Ong, W Y, Torta, F, Alexandra, A F, Schiffelers, R M, Storm, G, Wang, J W, Czarny, B & Pastorin, G 2017, 'Bioinspired Cell-Derived Nanovesicles versus Exosomes as Drug Delivery Systems : a Cost-Effective Alternative', Scientific Reports, vol. 7, no. 1, 14322. https://doi.org/10.1038/s41598-017-14725-x