Effect of cell culture media on extracellular vesicle secretion from mesenchymal stromal cells and neurons

Extracellular vesicles (EVs) secreted by neuronal cells in vitro have promising therapeutic potential for brain diseases. Optimization of cell culture conditions and methodologies for high-yield isolation of EVs for preclinical and clinical applications, however, remains a challenge. To probe the ce...

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Veröffentlicht in:European journal of cell biology 2022-09, Vol.101 (4), p.151270-151270, Article 151270
Hauptverfasser: Karttunen, Jenni, Heiskanen, Mette, Joki, Tiina, Hyysalo, Anu, Navarro-Ferrandis, Vicente, Miettinen, Susanna, Narkilahti, Susanna, Pitkänen, Asla
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Sprache:eng
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Zusammenfassung:Extracellular vesicles (EVs) secreted by neuronal cells in vitro have promising therapeutic potential for brain diseases. Optimization of cell culture conditions and methodologies for high-yield isolation of EVs for preclinical and clinical applications, however, remains a challenge. To probe the cell culture conditions required for optimal EV secretion by human-derived neuronal cells. First, we optimized the EV purification protocol using human mesenchymal stromal cell (MSC) cultures. Next, we compared the effects of different variables in human pluripotent stem cell (hPSC)-derived neuronal cultures on EV secretion. EVs were isolated from cell conditioned media (CCM) and control media with no cells (NCC) using ultrafiltration combined with size-exclusion chromatography (SEC). The hPSC neurons were cultured in 2 different media from which EVs were collected at 2 maturation time-points (days 46 and 60). Stimulation with 25 mM KCl was also evaluated as an activator of EV secretion by neurons. The collected SEC fractions were analyzed by nanoparticle tracking analysis (NTA), protein concentration assay, and blinded transmission electron microscopy (TEM). A peak in cup-shaped particles was observed in SEC fractions 7–10 of MSC samples, but not corresponding media controls, indicating successful isolation of EVs. Culture medium had no significant effect on EV yield. The EV yield of the samples did not differ significantly according to the culture media used or the cell maturation time-points. Stimulation of neurons with KCl for 3 h reduced rather than increased the EV yield. We demonstrated successful EV isolation from MSC and neuronal cells using an ultrafiltration-SEC method. The EV yield from MSC and neuronal cultures exhibited a large batch effect, apparently related to the culture media used, highlighting the importance of including NCC as a negative control in all cell culture experiments. •MSC culture media with exosome depleted FBS contains a population of vesicles and the population varies between different supplement batches.•Culture media or maturation timepoint did not affect the number of extracellular vesicles secreted by hPSC neurons.•The EV secretion varied greatly between culture rounds even with identical composition of culture media and same cell line.•It is important to include non-conditioned media as negative control in EV experiments.
ISSN:0171-9335
1618-1298
DOI:10.1016/j.ejcb.2022.151270