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Article

Generation of High-Yield, Functional Oligodendrocytes from a c-myc Immortalized Neural Cell Line, Endowed with Staminal Properties

by
Mafalda Giovanna Reccia
1,
Floriana Volpicelli
2,
Eirkiur Benedikz
3,
Åsa Fex Svenningsen
4,* and
Luca Colucci-D’Amato
1,5,*
1
Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania “Luigi Vanvitelli”, 81100 Caserta, Italy
2
Department of Pharmacy, School of Medicine and Surgery, University of Naples Federico II, 80131 Naples, Italy
3
Faculty of Health Sciences, J.B. Winsløwsvej 21, 5000 Odense, Denmark
4
Department of Molecular Medicine, University of Southern Denmark, J. B. Winsløws Vej 21.1, 5000 Odense, Denmark
5
Interuniversity Center for Research in Neuroscience (CIRN), University of Campania “Luigi Vanvitelli”, 80131 Naples, Italy
*
Authors to whom correspondence should be addressed.
Int. J. Mol. Sci. 2021, 22(3), 1124; https://doi.org/10.3390/ijms22031124
Submission received: 3 December 2020 / Revised: 13 January 2021 / Accepted: 18 January 2021 / Published: 23 January 2021
(This article belongs to the Collection Feature Papers in Molecular Neurobiology)

Abstract

Neural stem cells represent a powerful tool to study molecules involved in pathophysiology of Nervous System and to discover new drugs. Although they can be cultured and expanded in vitro as a primary culture, their use is hampered by their heterogeneity and by the cost and time needed for their preparation. Here we report that mes-c-myc A1 cells (A1), a neural cell line, is endowed with staminal properties. Undifferentiated/proliferating and differentiated/non-proliferating A1 cells are able to generate neurospheres (Ns) in which gene expression parallels the original differentiation status. In fact, Ns derived from undifferentiated A1 cells express higher levels of Nestin, Kruppel-like factor 4 (Klf4) and glial fibrillary protein (GFAP), markers of stemness, while those obtained from differentiated A1 cells show higher levels of the neuronal marker beta III tubulin. Interestingly, Ns differentiation, by Epidermal Growth Factors (EGF) and Fibroblast Growth Factor 2 (bFGF) withdrawal, generates oligodendrocytes at high-yield as shown by the expression of markers, Galactosylceramidase (Gal-C) Neuron-Glial antigen 2 (NG2), Receptor-Interacting Protein (RIP) and Myelin Basic Protein (MBP). Finally, upon co-culture, Ns-A1-derived oligodendrocytes cause a redistribution of contactin-associated protein (Caspr/paranodin) protein on neuronal cells, as primary oligodendrocytes cultures, suggesting that they are able to form compact myelin. Thus, Ns-A1-derived oligodendrocytes may represent a time-saving and low-cost tool to study the pathophysiology of oligodendrocytes and to test new drugs.
Keywords: neural stem cell; oligodendrocyte; neuron; myelin; immortalization; cell culture neural stem cell; oligodendrocyte; neuron; myelin; immortalization; cell culture

Share and Cite

MDPI and ACS Style

Reccia, M.G.; Volpicelli, F.; Benedikz, E.; Svenningsen, Å.F.; Colucci-D’Amato, L. Generation of High-Yield, Functional Oligodendrocytes from a c-myc Immortalized Neural Cell Line, Endowed with Staminal Properties. Int. J. Mol. Sci. 2021, 22, 1124. https://doi.org/10.3390/ijms22031124

AMA Style

Reccia MG, Volpicelli F, Benedikz E, Svenningsen ÅF, Colucci-D’Amato L. Generation of High-Yield, Functional Oligodendrocytes from a c-myc Immortalized Neural Cell Line, Endowed with Staminal Properties. International Journal of Molecular Sciences. 2021; 22(3):1124. https://doi.org/10.3390/ijms22031124

Chicago/Turabian Style

Reccia, Mafalda Giovanna, Floriana Volpicelli, Eirkiur Benedikz, Åsa Fex Svenningsen, and Luca Colucci-D’Amato. 2021. "Generation of High-Yield, Functional Oligodendrocytes from a c-myc Immortalized Neural Cell Line, Endowed with Staminal Properties" International Journal of Molecular Sciences 22, no. 3: 1124. https://doi.org/10.3390/ijms22031124

APA Style

Reccia, M. G., Volpicelli, F., Benedikz, E., Svenningsen, Å. F., & Colucci-D’Amato, L. (2021). Generation of High-Yield, Functional Oligodendrocytes from a c-myc Immortalized Neural Cell Line, Endowed with Staminal Properties. International Journal of Molecular Sciences, 22(3), 1124. https://doi.org/10.3390/ijms22031124

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