HIPPOCAMPAL INHIBITORY INTERNEURONS ARE FUNCTIONALLY DISCONNECTED FROM EXCITATORY INPUTS BY ANOXIA

被引:50
作者
KHAZIPOV, R
BREGESTOVSKI, P
BENARI, Y
机构
[1] INSERM Unite 29, 75014 Paris
关键词
D O I
10.1152/jn.1993.70.6.2251
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. The effects of anoxia on inhibitory synaptic transmission were studied in hippocampal slices of 3- to 4-wk-old rats. CA1 pyramidal cells were examined by whole-cell patch-clamp recording. Synaptic currents were evoked by ''distant'' (>0.5 mm) or ''close'' (<0.5 mm) electrical stimulation in the stratum radiatum. 2. The excitatory postsynaptic currents (EPSCs) and inhibitory postsynaptic currents (IPSCs) evoked by distant stimulation were completely suppressed by brief anoxia (95% N2-5% CO2 for 4-6 min) and recovered upon reoxygenation. IPSCs were more sensitive to anoxia than EPSCs. EPSCs and IPSCs evoked by distant stimulation were blocked by 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX; 20 muM) and D-2-amino-5-phosphonopentanoate (APV; 50 muM). This indicates that IPSCs were mediated via a polysynaptic pathway that involves glutamate receptors. 3. Synaptic currents evoked by close stimulation were only partly inhibited by anoxia. The bicuculline-sensitive gamma-aminobutyric acid-A (GABA(A)) receptor-mediated synaptic currents were particularly resistant to anoxia, suggesting that the GABAergic input to pyramidal neurons is not inhibited by anoxia. 4. At close stimulation in the stratum radiatum, monosynaptic IPSCs could be evoked in the presence of CNQX (20 muM) and APV (50 muM). The monosynaptic IPSCs had early bicuculline (15 muM) and late CGP 35348 (100 muM)-sensitive components confirming an involvement of GABA(A) and GABA(A) receptors (IPSC, and IPSC, components), respectively. 5. The monosynaptic IPSC(A) component evoked by close stimulation was not changed significantly during and after brief anoxia. Responses to pressure application of isoguvacine (GABA(A) agonist) were also not affected by anoxia. 6. The monosynaptic IPSC (B) component evoked by close stimulation was strongly and rapidly inhibited by anoxia in a reversible manner. Responses to baclofen (GABA(B) agonist) were also strongly depressed by anoxia and restored upon reoxygenation, suggesting that anoxia down regulates GABA(B) receptor-mediated currents via a postsynaptic mechanism. 7. It is concluded that monosynaptic GABA(B) receptor-mediated currents are resistant to anoxia. We suggest that the inhibition of polysynaptic IPSCs by anoxia is primarily due to the inhibition of the glutamate-mediated excitation of interneurons.
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页码:2251 / 2259
页数:9
相关论文
共 30 条
[21]   HYPOXIA-INDUCED FUNCTIONAL ALTERATIONS IN ADULT-RAT NEOCORTEX [J].
LUHMANN, HJ ;
HEINEMANN, U .
JOURNAL OF NEUROPHYSIOLOGY, 1992, 67 (04) :798-811
[22]   CARBACHOL REDUCES IK,BACLOFEN, BUT NOT IK,GABA IN GUINEA-PIG HIPPOCAMPAL SLICES [J].
MULLER, W ;
MISGELD, U .
NEUROSCIENCE LETTERS, 1989, 102 (2-3) :229-234
[23]   THE SLOW INHIBITORY POSTSYNAPTIC POTENTIAL IN RAT HIPPOCAMPAL CA1 NEURONS IS BLOCKED BY INTRACELLULAR INJECTION OF QX-314 [J].
NATHAN, T ;
JENSEN, MS ;
LAMBERT, JDC .
NEUROSCIENCE LETTERS, 1990, 110 (03) :309-313
[24]   CHARACTERIZATION OF SYNAPTICALLY ELICITED GABA-B RESPONSES USING PATCH-CLAMP RECORDINGS IN RAT HIPPOCAMPAL SLICES [J].
OTIS, TS ;
DE KONINCK, Y ;
MODY, I .
JOURNAL OF PHYSIOLOGY-LONDON, 1993, 463 :391-407
[25]   THE NMDA RECEPTOR CONTRIBUTES TO ANOXIC AGLYCEMIC INDUCED IRREVERSIBLE INHIBITION OF SYNAPTIC TRANSMISSION [J].
PAPAS, S ;
CREPEL, V ;
BENARI, Y .
BRAIN RESEARCH, 1993, 607 (1-2) :54-60
[26]   ANOXIC DEPRESSION OF EXCITATORY AND INHIBITORY POSTSYNAPTIC POTENTIALS IN RAT NEOCORTICAL SLICES [J].
ROSEN, AS ;
MORRIS, ME .
JOURNAL OF NEUROPHYSIOLOGY, 1993, 69 (01) :109-117
[27]   ACTIVATION AND DESENSITIZATION OF N-METHYL-D-ASPARTATE RECEPTORS IN NUCLEATED OUTSIDE-OUT PATCHES FROM MOUSE NEURONS [J].
SATHER, W ;
DIEUDONNE, S ;
MACDONALD, JF ;
ASCHER, P .
JOURNAL OF PHYSIOLOGY-LONDON, 1992, 450 :643-672
[28]  
SOLIS JM, 1992, J NEUROSCI, V12, P3466
[29]   THE GABAB ANTAGONIST PHACLOFEN INHIBITS THE LATE K+-DEPENDENT IPSP IN CAT AND RAT THALAMIC AND HIPPOCAMPAL-NEURONS [J].
SOLTESZ, I ;
HABY, M ;
LERESCHE, N ;
CRUNELLI, V .
BRAIN RESEARCH, 1988, 448 (02) :351-354
[30]   WHOLE-CELL RECORDING OF ANOXIC EFFECTS ON HIPPOCAMPAL-NEURONS IN SLICES [J].
ZHANG, L ;
KRNJEVIC, K .
JOURNAL OF NEUROPHYSIOLOGY, 1993, 69 (01) :118-123