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PMID: 11156313 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Bi-directional changes in synaptic plasticity induced at corticostriatal synapses in vitro.

Experimental brain research ·Vol. 135 ·No. 4 ·2000-12-00 ·Pages 497-503

Spencer JP, Murphy KP

Abstract

Long-term changes in the synaptic efficacy of corticostriatal synapses are believed to be important for regulating the excitatory input to the basal ganglia, and hence for motor learning and certain forms of cognition. Previous reports have suggested that long-term depression (LTD) is the predominant form of plasticity at corticostriatal synapses. However, we report here that tetanic stimulation of the white matter can readily induce long-term potentiation (LTP) at corticostriatal synapses in a sagittal slice preparation. Furthermore, we find that corticostriatal LTP is obtained in the absence of pharmacological manipulation, and is dependent on NMDA receptor activation. In contrast, LTD is rarely observed following tetanic stimulation of the white matter, but in fact requires direct stimulation within the striatum. This striatally induced depression is blocked by both D1 and D2 dopamine receptor antagonists and by NMDA receptor blockade. Pairing of striatal stimulation with tetanic stimulation of the white matter does not prevent the induction, but significantly enhances the magnitude of LTP at corticostriatal synapses. We suggest that the corticostriatal depression reported here most likely involves the recruitment of local striatal circuits and dopaminergic inputs, and thus might explain the predominance of LTD previously reported. Our observation that it is indeed possible to induce LTP at corticostriatal synapses under physiological conditions in vitro has implications for the normal function and control of the basal ganglia in motor learning and cognition.

MeSH Terms
Animals Cerebral Cortex/cytology,physiology Corpus Striatum/cytology,physiology Dopamine/physiology Evoked Potentials/physiology Excitatory Postsynaptic Potentials/physiology Long-Term Potentiation/physiology Male Nerve Fibers/physiology Neural Inhibition/physiology Neural Pathways Neuronal Plasticity/physiology Organ Culture Techniques Rats Rats, Wistar Receptors, Dopamine/physiology Receptors, N-Methyl-D-Aspartate/physiology Synapses/physiology
Chemicals
Receptors, Dopamine Receptors, N-Methyl-D-Aspartate Dopamine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Spencer J P
Department of Biological Sciences, The Open University, Milton Keynes, UK. k.murphy@open.ac.uk
Murphy K P
Article Info
Journal
Experimental brain research
Abbr.
Exp Brain Res
ISSN
0014-4819
Published
2000-12-00
Pages
497-503
Language
English
Region
Germany
NLM ID
0043312
Subset
IM
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