Enhanced activation of NMDA receptor responses at the immature retinogeniculate synapse

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Abstract

The maturation of retinogeniculate excitatory transmission and intrathalamic inhibition was studied in slices of the dorsal LGN obtained from ferrets during the first 2 postnatal months. Response to optic tract stimulation at neonatal ages consisted of slow EPSPs lasting several hundred milliseconds. Application of the NMDA receptor antagonist D-(-)-2-amino-5- phosphonovaleric acid (D-APV) during the first 2 postnatal weeks resulted in EPSPs that were reduced in peak amplitude and dramatically curtailed in duration, indicating that NMDA receptors participate strongly in retinogeniculate transmission at the immature synapse. Gradually, EPSPs became shorter in duration such that after the second postnatal week, the retinogeniculate EPSPs were only a few milliseconds in duration. At this late stage of development responses were remarkably less affected by application of D-APV. These changes in contribution of NMDA receptors to retinogeniculate transmission were found to be due to the development of strong IPSPs, the result of gradual maturation of activation of GABAergic inhibition. Indeed, application of bicuculline methiodide to block GABA(A) receptor-mediated IPSPs strongly enhanced the NMDA component of the EPSPs in more mature cells. The voltage dependence and kinetics of NMDA-induced excitatory postsynaptic currents (NMDA EPSCs) were characterized by voltage-clamp recordings after blocking AMPA/kainate receptors with 6-cyano-7-nitroquinoxaline-2,3-dione and GABA(A) receptors with bicuculline methiodide. The voltage dependence of the NMDA EPSCs remained unaltered with age. During the first postnatal month the kinetic properties of the NMDA EPSCs also remained unaltered, but a reduction in EPSC duration was observed within the following weeks, well after the critical period of anatomical reorganization. The present results demonstrate that the contribution of NMDA ionophores to retinogeniculate transmission is enhanced during the developmental critical period of remodeling in retinogeniculate connectivity. This transient enhancement appears to result largely from the late development GABAergic inhibition, although changes in intrinsic membrane properties and properties of the NMDA ionophore may also contribute. Enhanced contribution of NMDA receptors may facilitate anatomical rearrangements of retinogeniculate connections during development.

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APA

Ramoa, A. S., & McCormick, D. A. (1994). Enhanced activation of NMDA receptor responses at the immature retinogeniculate synapse. Journal of Neuroscience, 14(4), 2098–2105. https://doi.org/10.1523/jneurosci.14-04-02098.1994

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