Role of Pre-Synaptic NMDA Receptors in the Modulation of Inhibitory Synaptic Transmission in Sensory-Motor and Visual Cortical Pyramidal Neurons in Brain Slices of Young Epileptic Mice

Background: Previous studies from animal models have shown that pre-synaptic NMDA receptors (preNMDARs) are present in the cortex, but the role of inhibition mediated by preNMDARs during epileptogenesis remains unclear. In this study, we wanted to observe the changes in GABAergic inhibition through...

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Veröffentlicht in:The Malaysian journal of medical sciences 2018-05, Vol.25 (3), p.27-39
Hauptverfasser: Lah, Muhammad Hanif Che, Reza, Faruque, Begum, Tahamina, Abdullah, Jafri Malin
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Sprache:eng
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Zusammenfassung:Background: Previous studies from animal models have shown that pre-synaptic NMDA receptors (preNMDARs) are present in the cortex, but the role of inhibition mediated by preNMDARs during epileptogenesis remains unclear. In this study, we wanted to observe the changes in GABAergic inhibition through preNMDARs in sensory-motor and visual cortical pyramidal neurons after pilocarpine-induced status epilepticus.Methods: Using a pilocarpine-induced epileptic mouse model, sensory-motor and visual cortical slices were prepared, and the whole-cell patch clamp technique was used to record spontaneous inhibitory post-synaptic currents (sIPSCs).Results: The primary finding was that the mean amplitude of sIPSC from the sensorymotor cortex increased significantly in epileptic mice when the recording pipette contained MK801 compared to control mice, whereas the mean sIPSC frequency was not significantly different, indicating that post-synaptic mechanisms are involved. However, there was no significant presynaptic inhibition through preNMDARs in the acute brain slices from pilocarpine-induced epileptic mice.Conclusion: In the acute case of epilepsy, a compensatory mechanism of post-synaptic inhibition, possibly from ambient GABA, was observed through changes in the amplitude without significant changes in the frequency of sIPSC compared to control mice. The role of preNMDARmediated inhibition in epileptogenesis during the chronic condition or in the juvenile stage warrants further investigation.
ISSN:1394-195X
2180-4303
DOI:10.21315/mjms2018.25.34