Abstract
Abstract
Exosomes play a role in tissue/organ development and differentiation. Retinoic acid induces differentiation of P19 cells (UD-P19) to P19 neurons (P19N) that behave like cortical neurons and express characteristic neuronal genes such as NMDA receptor subunits. Here we report P19N exosome-mediated differentiation of UD-P19 to P19N. Both UD-P19 and P19N released exosomes with characteristic exosome morphology, size, and common protein markers. P19N internalized significantly higher number of Dil-P19N exosomes as compared to UD-P19 with accumulation in the perinuclear region. Continuous exposure of UD-P19 to P19N exosomes for six days induced formation of small-sized embryoid bodies that differentiated into MAP2-/GluN2B-positive neurons recapitulating RA-induction of neurogenesis. Incubation with UD-P19 exosomes for six days did not affect UD-P19. Small RNA-seq identified enrichment of P19N exosomes with pro-neurogenic non-coding RNAs (ncRNAs) such as miR-9, let-7, MALAT1 and depleted with ncRNAs involved in maintenance of stem cell characteristics. UD-P19 exosomes were rich with ncRNAs required for maintenance of stemness. P19N exosomes provide an alternative method to genetic modifications for cellular differentiation of neurons. Our novel findings on exosomes-mediated differentiation of UD-P19 to P19 neurons provide tools to study pathways directing neuron development/differentiation and develop novel therapeutic strategies in neuroscience.
Graphical Abstract
Funder
NIH Blueprint for Neuroscience Research
Department of Anatomy and Physiology, College of Veterinary Medicine, Kansas State University
Publisher
Springer Science and Business Media LLC
Reference83 articles.
1. Narayanan, R., Huang, C. C., & Ravindran, S. (2016). Hijacking the cellular mail: Exosome mediated differentiation of mesenchymal stem cells. Stem Cells International, 2016, 3808674. https://doi.org/10.1155/2016/3808674
2. Mandal, P., De, D., Im, D. U., Um, S. H., & Kim, K. K. (2020). Exosome-mediated differentiation of mouse embryonic fibroblasts and exocrine cells into β-like cells and the identification of key miRNAs for differentiation. Biomedicines, 8, 485.
3. Sharma, K. D., et al. (2020). Glioma-derived exosomes drive the differentiation of neural stem cells to astrocytes. PLoS ONE, 15, e0234614.
4. Doyle, L. M., & Wang, M. Z. (2019). Overview of extracellular vesicles, their origin, composition, purpose, and methods for exosome isolation and analysis. Cells, 8, 727.
5. Kumari, M., & Anji, A. (2022). Small but mighty-exosomes, novel intercellular messengers in neurodegeneration. Biology (Basel), 11, 413.
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