Fol. Biol. 2006, 52, 149-155
https://doi.org/10.14712/fb2006052050149
Foetal Mouse Neural Stem Cells Give Rise to Ependymal Cells in Vitro
References
1. , E. R., Bartlett, P. P., Raff, M. C. (1980) Astrocytes, ependymal cells, and oligodendrocytes develop on schedule in dissociated cultures of embryonic rat brain. Cell Tissue Res. 208, 261-281.
2. , R. M., Reh, T. A., Angello, J., Balliet, A., Walker, M. (1991) EGF and TGF-α stimulate retinal neuroepithelial cell proliferation in vitro. Neuron 6, 923-936.
<https://doi.org/10.1016/0896-6273(91)90233-P>
3. , J. B., Bodian, D., Coulombre, A. J., McEdds, V., Hamburger, V., Jacobson, M., Lyser, K. M., Prestige, M. C., Sidman, R. L., Varon, S., Weiss, P. A. (1969) Embryonic vertebrate central nervous system: Revised terminology. Anat. Rec. 166, 257-262.
<https://doi.org/10.1002/ar.1091660214>
4. , P. F., Noble, M. D., Pruss, R. M., Raff, M. C., Rattray, S., Williams, C. A. (1981) Rat neural antigen-2 (RAN-2): A cell surface antigen on astrocytes, ependymal cells, Muller cells and lepto-meninges defined by a monoclonal antibody. Brain Res. 204, 339-351.
<https://doi.org/10.1016/0006-8993(81)90593-X>
5. Carlson, B. M. (1994) Human Embryology and Developmental Biology, Mosby-Year Book, Inc., St. Louis.
6. , B. J., Tropepe, V., Morshead, C. M., van der Kooy, D. (1999) Adult mammalian forebrain ependymal and subependymal cells demonstrate proliferative potential, but only subependymal cells have neural stem cell characteristics. J. Neurosci. 19, 4462-4471.
<https://doi.org/10.1523/JNEUROSCI.19-11-04462.1999>
7. , G. D. (1979) Gliogenesis and ependymogenesis during embryonic development of the rat: An autoradiographic study. J. Neurol. Sci. 43, 193-204.
<https://doi.org/10.1016/0022-510X(79)90115-1>
8. , K., Tanaka, E. M. (2002) Ectoderm to mesoderm lineage switching during axolotl tail regeneration. Science 298, 1993-1996.
<https://doi.org/10.1126/science.1077804>
9. , H., Qi, Y., Tan, M., Cai, J., Hu, X., Liu, Z., Jensen, J., Qiu, M. (2003) Molecular mapping of the origin of postnatal spinal cord ependymal cells: evidence that adult ependymal cells are derived from Nkx6.1+ ventral neural progenitor cells. J. Compar. Neurol. 456, 237-244.
<https://doi.org/10.1002/cne.10481>
10. , T., Hashimoto, H. (1987) Distribution and fine structure of ependymal cells possessing intracellular cysts in the aqueductal wall of the brain. Cell Tissue Res. 247, 555-564.
<https://doi.org/10.1007/BF00215749>
11. , F. H., Coates, P. W., Palmer, T. D., Kuhn, H. G., Fisher, L. J., Suhonen, J. O., Peterson, D. A., Suhr, S. T., Ray, J. (1995) Survival and differentiation of adult neuronal progenitor cells transplanted to the adult brain. Proc. Natl. Acad. Sci. USA 92, 11879-11883.
<https://doi.org/10.1073/pnas.92.25.11879>
12. , C., Weiss, S. (2003) Generation of functional radial cells by embryonic and adult forebrain neural stem cells. J. Neurosci. 23, 11587-11601.
<https://doi.org/10.1523/JNEUROSCI.23-37-11587.2003>
13. , A., Parati, E. A., Cova, L., Frolichsthal, P., Galli, R., Wanke, E., Faravelli, L., Morassutti, D. J., Roisen, F., Nickel, D. D., Vescovi, A. L. (1996) Multipotential stem cells from the adult mouse brain proliferate and self-renew in response to basic fibroblast growth factor. J. Neurosci. 16, 1091-1100.
<https://doi.org/10.1523/JNEUROSCI.16-03-01091.1996>
14. , J. M., Pérez-Martín, M., Cifuentes, M., Pérez, J., Jiménez, A. J., Pérez-Fígares, J. M., Fernández-Llebrez, P. (1996) Ependymal denudation, aqueductal obliteration and hydrocephalus after a single injection of neuraminidase into the lateral ventricle of adult rats. J. Neuropathol. Exp. Neurol. 55, 999-1008.
<https://doi.org/10.1097/00005072-199609000-00007>
15. , Y., Kitada, M., Dezawa, M., Mizoguchi, A., Matsumoto, N., Shimizu, A., Ide, C. (2006) Choroid plexus ependymal cells host neural progenitor cells in the rat. Glia 53, 32-42.
<https://doi.org/10.1002/glia.20255>
16. , C. B., Momma, S., Clarke, D. L., Risling, M., Lendahl, U., Frisén, J. (1999) Identification of a neural stem cell in the adult mammalian central nervous system. Cell 96, 25-34.
<https://doi.org/10.1016/S0092-8674(00)80956-3>
17. , F. L., Rieke, G. K., Thomas, W. E. (1987) Presence and development of ependymal cells in primary tissue cultures derived from embryonic rat cerebral cortex. Dev. Brain Res. 35, 97-110.
<https://doi.org/10.1016/0165-3806(87)90012-5>
18. , K., Wang, Z., Wang, H., Zhang, Y. (2002) Nestin expression and proliferation of ependymal cells in adult rat spinal cord after injury. Chin. Med. J. 115, 339-341.
19. , P., Hartfuss, E., Gotz, M. (2000) Isolation of radial glial cells by fluorescent-activated cell sorting reveals a neuronal lineage. Development 127, 5253-5263.
<https://doi.org/10.1242/dev.127.24.5253>
20. , J., Šubrtová, D., Němeček, S. (1995) Cultivation of neural EGF-responsive precursor cells. Sbor. věd. prací LF UK Hradec Králové 38, 167-174.
21. , J., Šubrtová, D., Němeček, S. (1996) Differentiation of epidermal growth factor-responsive neural precursor cells within neurospheres. Acta Medica (Hradec Králové) 39, 7-20.
22. , J., Karbanová, J., Filip, S. (2005) Differentiation potential of murine neural stem cells in vitro and after transplantation. Transplant. Proc. 37, 268-272.
<https://doi.org/10.1016/j.transproceed.2004.12.233>
23. , S., Mokrý, J., Mazurová, Y., Šubrtová, D. (1995) Cerebrospinal fluid dissemination of fetal neural isografts in brain of adult rats. Sbor. věd. prací LF UK Hradec Králové 38, 5-9.
24. , T. D., Ray, J., Gage, F. H. (1995) FGF-2-responsive neuronal progenitors reside in proliferative and quiescent regions of the adult rodent brain. Mol. Cell. Neurosci. 6, 474-486.
<https://doi.org/10.1006/mcne.1995.1035>
25. , M. C., Fields, K. L., Hakomori, S. -I., Mirsky, R., Pruss, R. M., Winter, J. (1979) Cell-type-specific markers for distinguishing and studying neurons and the major classes of glial cells in the culture. Brain Res. 174, 283-308.
<https://doi.org/10.1016/0006-8993(79)90851-5>
26. , B. A., Tetzlaff, W., Weiss, S. (1992) A multipotent EGF-responsive striatal embryonic progenitor cell produces neurons and astrocytes. J. Neurosci. 12, 4565-4574.
<https://doi.org/10.1523/JNEUROSCI.12-11-04565.1992>
27. , H. B. (1995) Ependymal reactions to injury. A review. J. Neuropathol. Exp. Neurol. 54, 1-15.
<https://doi.org/10.1097/00005072-199501000-00001>
28. , N., Merkle, F. T., Flames, N., Tramontin, A. D., García-Verdugo, J. M., Alvarez-Buylla, A. (2005) Adult ependymal cells are postmitotic and are derived from radial glial cells during embryogenesis. J. Neurosci. 25, 10-18.
<https://doi.org/10.1523/JNEUROSCI.1108-04.2005>
29. , M., Arai, Y., Kurosawa, H., Sueyoshi, N., Shirai, S. (2003) Ependymal cell reactions in spinal cord segments after compression injury in adult rat. J. Neuropathol. Exp. Neurol. 62, 185-194.
<https://doi.org/10.1093/jnen/62.2.185>
30. , N., Nakamura, K., Okamoto, K., Kaneko, T. (2001) Radial glia is a progenitor of neocortical neurons in the developing cerebral cortex. Neurosci. Res. 41, 51-60.
<https://doi.org/10.1016/S0168-0102(01)00259-0>
31. , N., Buck, D. W., He, D., Reitsma, M. J., Masek, M., Phan, T. V., Tsukamoto, A. S., Gage, F. H., Weissman, I. L. (2000) Direct isolation of human central nervous system stem cells. Proc. Natl. Acad. Sci. USA 97, 14720-14725.
<https://doi.org/10.1073/pnas.97.26.14720>
32. , A. L., Parati, E. A., Gritti, A., Poulin, P., Ferrario, M., Wanke, E., Frolichsthal-Schoeller, P., Cova, L., Arcellana-Panlilio, M., Colombo, A., Galli, R. (1999) Isolation and cloning of multipotential stem cells from the embryonic human CNS and establishment of transplantable human neural stem cell lines by epigenetic stimulation. Exp. Neurol. 156, 71-83.
<https://doi.org/10.1006/exnr.1998.6998>
33. , S., Zhang, F., Ferretti, P. (2003) Up-regulation of neural stem cell markers suggests the occurrence of dedifferentiation in regenerating spinal cord. Dev. Genes Evol. 213, 625-630.
<https://doi.org/10.1007/s00427-003-0364-2>
34. , M., Pettmann, B., Artault, J. -C., Sensenbrenner, M., Labourdette, G. (1986) Primary culture of rat ependymal cells in serum-free defined medium. Dev. Brain Res. 25, 199-209.
<https://doi.org/10.1016/0165-3806(86)90209-9>
35. , C., Fricker, R. A., Gates, M. A., Olsson, M., Hammang, J. P., Carpenter, M. K., Björklund, A. (1998) Incorporation and glial differentiation of mouse EGFresponsive neural progenitor cells after transplantation into the embryonic rat brain. Mol. Cell. Neurosci. 11, 99-116.
<https://doi.org/10.1006/mcne.1998.0674>
36. , F. C., Kelley, M. R., Chiang, Y. H., Young, P. (2000) Three to four-year-old nonpassaged EGF-responsive neural progenitor cells: proliferation, apoptosis, and DNA repair. Exp. Neurol. 164, 200-208.
<https://doi.org/10.1006/exnr.2000.7425>
