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Volume 16, Number 17,
Issue of September 1, 1996
pp. 5334-5343
Copyright ©1996 Society for Neuroscience
Long-Term Potentiation in Distinct Subtypes of Hippocampal
Nonpyramidal Neurons
Received April 30, 1996; revised June 4, 1996; accepted June 6, 1996.
Gianmaria Maccaferri and
Chris J. McBain
National Institute of Child Health and Human Development,
Laboratory of Cellular and Molecular Neurophysiology, Bethesda,
Maryland 20892-4495
We have investigated NMDA receptor-dependent long-term
potentiation (LTP) in distinct subtypes of nonpyramidal neurons of the
CA1 hippocampus using induction protocols that permitted the
differentiation between a direct form of LTP and plasticity resulting
simply from the ``passive propagation'' of LTP occurring on CA1
pyramidal neurons. Two types of stratum (st.) oriens/alveus
interneurons received passive propagation of synaptic potentiation via
the recurrent collaterals of CA1 pyramidal cells, but neither subtype
possessed direct plasticity. In st. radiatum, two distinct classes of
cells were observed: st. radiatum interneurons that showed neither
direct nor propagated forms of synaptic plasticity, and ``giant
cells'' for which EPSPs were robustly potentiated after a pairing
protocol. This potentiation is similar to the LTP described in
pyramidal cells, and its induction requires NMDA receptor activation.
Thus, a large heterogeneity of synaptic plasticity exists in
morphologically distinct neurons and suggests that complex changes in
the CA1 network properties will occur after the induction of LTP.
Key words:
hippocampus;
interneurons;
LTP;
plasticity;
GABAergic;
CA1
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