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Tissue culture studies of neural plasticity

Fredrick J. Seil · Restorative Neurology and Neuroscience · 1989

Exposure of cerebellar cultures derived from neonatal mice to cytosine arabinoside for the first 5 days in vitro results in destruction of cerebellar granule cells and inhibition of glial maturation. Such cultures undergo reorganizational changes, primary features of which are a sprouting of Purkinje cell recurrent axon collaterals and the formation of recurrent axon collateral-Purkinje cell dendritic spine synapses. Such heterotypical synapses are inhibitory, in contrast to the excitatory parallel fiber-Purkinje cell dendritic spine synapses normally present. If locus coeruleus neurons are included with the cerebellar cultures, the catecholaminergic axons also sprout, and tissue levels of catecholamines are increased. Purkinje cell survival is enhanced in Ara C-treated cultures, as the target field for Purkinje cell axonal projections is expanded. Oligodendrocyte inhibition results in failure of myelination, and astrocyte inhibition, when it occurs, is associated with a failure of Purkinje cell ensheathment and a hypennnervation of Purkinje cell somata by sprouted recurrent axon collateral terminals. Transplantation of such cultures with granule cells and glia reverses many of the

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