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PMID: 9051587 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Synchronization of GABAergic interneuronal network in CA3 subfield of neonatal rat hippocampal slices.

The Journal of physiology ·Vol. 498 ( Pt 3) ·1997-02-01 ·Pages 763-72

Khazipov R, Leinekugel X, Khalilov I, Gaiarsa JL, Ben-Ari Y

Abstract

1. Cell-attached and whole-cell recordings from interneurons localized in the stratum radiatum of the CA3 subfield (SR-CA3) of neonatal (postnatal days 2-5) rat hippocampal slices were performed to study their activity during the generation of GABAergic giant depolarizing potentials (GDPs) in CA3 pyramidal cells. 2. Dual recordings revealed that during the generation of GDPs in CA3 pyramidal cells, the interneurons fire bursts of spikes, on average 4.5 +/- 1.4 spikes per burst (cell-attached mode). There bursts were induced by periodical large inward currents (interneuronal GDPs) recorded in whole-cell mode. 3. Interneuronal GDPs revealed typical features of polysynaptic neuronal network-driven events: they were blocked by TTX and by high divalent cation medium and they could be evoked in an all-or-none manner by electrical stimulation in different regions of the hippocampus. The network elements required for the generation of GDPs are present in local CA3 circuits since spontaneous GDPs were present in the isolated CA3 subfield of the hippocampal slice. 4. Interneuronal GDPs were mediated by GABAA and glutamate receptors, since: (i) their reversal potential strongly depended on [Cl-]i; (ii) at the reversal potential of GABAA postsynaptic currents an inward component of GDPs was composed of events with the same kinetics as alpha-amino-3-hydroxy-5-methylisoxazole-4-propionate (AMPA) receptor-mediated EPSCs; and (iii) once GABAA receptors were blocked intracellularly by dialysis with F(-)-MgATP-free solution, the remaining component of interneuronal GDPs reversed near 0 mV and rectified at membrane potentials more negative than -20 mV, suggesting an important contribution of NMDA receptors in addition to AMPA receptors. 5. In cell-attached recordings from interneurons, electrical stimulation in the stratum radiatum evoked a burst of spikes that corresponded to evoked GDPs. Pharmacological study of this response revealed that excitation of SR-CA3 interneurons during GDPs is determined by the co-operative depolarizing actions mediated by GABAA and glutamate (AMPA and NMDA) receptors. Interestingly, after blockade of AMPA receptors, GABAA receptor-mediated depolarization enabled the activation of NMDA receptors presumably via attenuation of their voltage-dependent magnesium block. 6. It is concluded that synchronous activation of SR-CA3 interneurons during generation of GDPs is mediated synaptically and is determined by the co-operation of (i) excitatory GABAergic connections between interneurons and (ii) glutamatergic connections to interneurons originating presumably from the pyramidal cells.

MeSH Terms
Animals Animals, Newborn/physiology Electric Stimulation Electrophysiology Glutamic Acid/physiology Hippocampus/physiology In Vitro Techniques Interneurons/physiology Male Membrane Potentials/physiology Nerve Net/physiology Patch-Clamp Techniques Pyramidal Cells/physiology Rats Rats, Wistar Synaptic Transmission/physiology gamma-Aminobutyric Acid/physiology
Chemicals
Glutamic Acid gamma-Aminobutyric Acid
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Khazipov R
L'Institut National de la Santé et de la Recherche Médicale, Unite 29, Paris, France.
Leinekugel X
Khalilov I
Gaiarsa J L
Ben-Ari Y
References (34)
34 references, click to expand
  1. Postnatal development of pre- and postsynaptic GABAB-mediated inhibitions in the CA3 hippocampal region of the rat.
    J Neurophysiol. 1995 Jan;73(1):246-55 PMID: 7714569
  2. Modulation of GABA-mediated Synaptic Potentials by Glutamatergic Agonists in Neonatal CA3 Rat Hippocampal Neurons.
    Eur J Neurosci. 1991;3(4):301-309 PMID: 12106187
  3. GABA: an excitatory transmitter in early postnatal life.
    Trends Neurosci. 1991 Dec;14(12):515-9 PMID: 1726341
  4. Modulation of GABA-mediated synaptic transmission by endogenous zinc in the immature rat hippocampus in vitro.
    J Physiol. 1994 Jul 1;478 ( Pt 1):75-86 PMID: 7965838
  5. Intracellular correlates of hippocampal theta rhythm in identified pyramidal cells, granule cells, and basket cells.
    Hippocampus. 1995;5(1):78-90 PMID: 7787949
  6. NMDA-dependent GABAA-mediated polysynaptic potentials in the neonatal rat hippocampal CA3 region.
    Eur J Neurosci. 1995 Jul 1;7(7):1442-8 PMID: 7551170
  7. Differential ontogenesis of presynaptic and postsynaptic GABAB inhibition in rat somatosensory cortex.
    J Neurophysiol. 1993 Jul;70(1):448-52 PMID: 8395587
  8. Synchronized oscillations in interneuron networks driven by metabotropic glutamate receptor activation.
    Nature. 1995 Feb 16;373(6515):612-5 PMID: 7854418
  9. Neuronal domains in developing neocortex: mechanisms of coactivation.
    Neuron. 1995 Jan;14(1):7-17 PMID: 7826643
  10. Nonsynaptic modulation of neuronal activity in the brain: electric currents and extracellular ions.
    Physiol Rev. 1995 Oct;75(4):689-723 PMID: 7480159
  11. Depolarization- and transmitter-induced changes in intracellular Ca2+ of rat cerebellar granule cells in explant cultures.
    J Neurosci. 1987 May;7(5):1384-400 PMID: 2883269
  12. Cyclic AMP-dependent modulation of giant depolarizing potentials by metabotropic glutamate receptors in the rat hippocampus.
    J Physiol. 1995 Nov 15;489 ( Pt 1):115-25 PMID: 8583396
  13. Mechanism of anion permeation through channels gated by glycine and gamma-aminobutyric acid in mouse cultured spinal neurones.
    J Physiol. 1987 Apr;385:243-86 PMID: 2443667
  14. Long-term potentiation and functional synapse induction in developing hippocampus.
    Nature. 1996 May 2;381(6577):71-5 PMID: 8609991
  15. Depolarizing GABA-activated Cl- channels in embryonic rat spinal and olfactory bulb cells.
    J Physiol. 1995 Oct 15;488 ( Pt 2):371-86 PMID: 8568677
  16. Synchronization of neuronal activity in hippocampus by individual GABAergic interneurons.
    Nature. 1995 Nov 2;378(6552):75-8 PMID: 7477292
  17. Control of postsynaptic Ca2+ influx in developing neocortex by excitatory and inhibitory neurotransmitters.
    Neuron. 1991 Mar;6(3):333-44 PMID: 1672071
  18. The role of chloride transport in postsynaptic inhibition of hippocampal neurons.
    Science. 1986 Jun 13;232(4756):1413-5 PMID: 2424084
  19. Sharp wave-associated high-frequency oscillation (200 Hz) in the intact hippocampus: network and intracellular mechanisms.
    J Neurosci. 1995 Jan;15(1 Pt 1):30-46 PMID: 7823136
  20. D-aminophosphonovaleric acid-sensitive spontaneous giant EPSPs in immature rat hippocampal neurones.
    Eur J Pharmacol. 1988 Sep 13;154(2):221-2 PMID: 2906614
  21. A physiological role for endogenous zinc in rat hippocampal synaptic neurotransmission.
    Nature. 1991 Feb 7;349(6309):521-4 PMID: 1846946
  22. Patterned activity, synaptic convergence, and the NMDA receptor in developing visual pathways.
    Annu Rev Neurosci. 1990;13:129-54 PMID: 2183671
  23. Synaptic GABAA activation induces Ca2+ rise in pyramidal cells and interneurons from rat neonatal hippocampal slices.
    J Physiol. 1995 Sep 1;487 ( Pt 2):319-29 PMID: 8558466
  24. Mechanisms of GABA and glycine depolarization-induced calcium transients in rat dorsal horn neurons.
    J Physiol. 1994 May 1;476(3):411-21 PMID: 8057250
  25. Ionic mechanisms of neuronal excitation by inhibitory GABAA receptors.
    Science. 1995 Aug 18;269(5226):977-81 PMID: 7638623
  26. Spontaneous Ca2+ spikes and waves in embryonic neurons: signaling systems for differentiation.
    Trends Neurosci. 1994 Mar;17(3):115-8 PMID: 7515527
  27. gamma-Aminobutyric acid (GABA): a fast excitatory transmitter which may regulate the development of hippocampal neurones in early postnatal life.
    Prog Brain Res. 1994;102:261-73 PMID: 7800817
  28. Uneven distribution of intracellular Cl- in rat hippocampal neurons.
    Neurosci Lett. 1992 Aug 31;143(1-2):135-8 PMID: 1436657
  29. Criteria for distinguishing between monosynaptic and polysynaptic transmission.
    Brain Res. 1976 Mar 19;105(1):1-20 PMID: 175886
  30. Giant synaptic potentials in immature rat CA3 hippocampal neurones.
    J Physiol. 1989 Sep;416:303-25 PMID: 2575165
  31. Spread of synaptic depression mediated by presynaptic cytoplasmic signaling.
    Science. 1996 May 17;272(5264):998-1001 PMID: 8638143
  32. Requirement for cholinergic synaptic transmission in the propagation of spontaneous retinal waves.
    Science. 1996 May 24;272(5265):1182-7 PMID: 8638165
  33. GABAA-receptor function in hippocampal cells is maintained by phosphorylation factors.
    Science. 1988 Jul 15;241(4863):339-41 PMID: 2455347
  34. Excitatory actions of GABA in developing rat hypothalamic neurones.
    J Physiol. 1996 Jul 15;494 ( Pt 2):451-64 PMID: 8842004
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1997-02-01
Pages
763-72
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1159192
Subset
IM
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