Transplanted CNS stem cells form functional synapses in vivo
- 1 May 2000
- journal article
- research article
- Published by Wiley in European Journal of Neuroscience
- Vol. 12 (5) , 1696-1704
- https://doi.org/10.1046/j.1460-9568.2000.00067.x
Abstract
An understanding of developmental mechanisms and new cell therapies can be achieved by transplantation into the nervous system. Multipotential stem cells have been isolated from the foetal and adult central nervous system (CNS). Immortalized and primary precursor cells integrate into the developing brain generating both neurons and glia as defined by immunological and morphological criteria. Here we show for the first time that in vitro‐expanded CNS precursors, upon transplantation into the brains of rats, form electrically active and functionally connected neurons. These neurons exhibit spontaneous and evoked postsynaptic events and respond to focal glutamate application. Donor cells were grafted into the foetal hippocampus, and the amplitude and frequency of spontaneous synaptic events were monitored in the grafted cells in area CA1 for the first month of postnatal life. The formation of synapses onto grafted neurons indicates that grafted CNS stem cells can be used to study synaptic development in vivo and has important implications for clinical cell replacement therapies.Keywords
This publication has 35 references indexed in Scilit:
- Immortalized neural progenitor cells for CNS gene transfer and repairTrends in Neurosciences, 1997
- Repair of Adult Rat Corticospinal Tract by Transplants of Olfactory Ensheathing CellsScience, 1997
- Reversal of age-dependent cognitive impairments and cholinergic neuron atrophy by NGF-secreting neural progenitors grafted to the basal forebrainNeuron, 1995
- Isolation, Characterization, and use of Stem Cells from the CNSAnnual Review of Neuroscience, 1995
- Neural transplantation of cells expressing the anti-apoptotic gene bcl-2Cell Transplantation, 1995
- Neural stem cells in the adult mammalian forebrain: A relatively quiescent subpopulation of subependymal cellsNeuron, 1994
- Hu neuronal proteins are expressed in proliferating neurogenic cellsJournal of Neurobiology, 1994
- bFGF regulates the proliferative fate of unipotent (neuronal) and bipotent (neuronal/astroglial) EGF-generated CNS progenitor cellsNeuron, 1993
- Generation of Neurons and Astrocytes from Isolated Cells of the Adult Mammalian Central Nervous SystemScience, 1992
- Multipotent neural cell lines can engraft and participate in development of mouse cerebellumCell, 1992