HYPOXIA-INDUCED FUNCTIONAL ALTERATIONS IN ADULT-RAT NEOCORTEX

被引:127
作者
LUHMANN, HJ
HEINEMANN, U
机构
[1] Institute of Neurophysiology, University of Cologne, D-5000 Cologne 41
关键词
D O I
10.1152/jn.1992.67.4.798
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. Brief periods of hypoxia (2-7 min) were induced in rat neocortical slices maintained in an interface-type recording chamber at 34-35-degrees-C by changing the aerating gas from 95% O2-5% CO2 to 95% N2-5% CO2. Field potential (FP) and intracellular recordings were obtained in layers II/III of primary somatosensory cortex. Intracellular injection of biocytin revealed the characteristic morphology of supragranular spiny pyramidal neurons. 2. Excitatory synaptic transmission reversibly decreased by 45% as estimated from FP responses to orthodromic stimulation of the underlying white matter/layer VI. Excitatory postsynaptic potentials (EPSPs) were suppressed by 36% in amplitude and recovered within 2-3 min after reoxygenation. During the recovery period, EPSPs showed a reversible increase in duration by 72%. 3. Inhibitory synaptic transmission was completely blocked as determined in FP responses with a paired-pulse inhibition protocol. The fast inhibitory postsynaptic potential (IPSP) declined by 58% during hypoxia. The long-lasting IPSP was suppressed by 75% and showed incomplete recovery. During hypoxia, the amplitude of both IPSPs was significantly more strongly suppressed than the EPSP. 4. In 40% of the cells, hypoxia induced an early anoxic hyperpolarization with a reversal potential of E = - 80.8 MV, followed by a postanoxic hyperpolarization (E = - 89.4 mV). In a second group of cells (37%), a gradual anoxic depolarization with E = - 57.5 mV was observed instead of an early hyperpolarization. In both groups of cells, the anoxic response was associated with a marked decrease in input resistance, by 42 and 31%, respectively. 5. The spike discharge frequency was reversibly suppressed by 71% during hypoxia. A transient hyperexcitability accompanied with a rise in input resistance and discharge rate was observed in 38% of the cells on reoxygenation. 6. The reversal potential of the anoxic hyperpolarization was unaffected by tetrodotoxin (TTX) but was significantly altered by application of the ATP-sensitive K+ channel (K(ATP)) blocker gliquidone. Application of gliquidone additionally resulted in a significantly smaller hypoxia-induced decline in paired-pulse inhibition. 7. Increases in tissue high-energy phosphates induced by preincubating the slices in 25 mM creatine for > 2 h had a pronounced protective effect on excitatory and inhibitory synaptic transmission. 8. These data suggest a selective vulnerability of the neocortical inhibitory system during hypoxia. Our results further indicate that hypoxia activates a pre- and postsynaptic K(ATP) conductance because of the decline in intracellular ATP.
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页码:798 / 811
页数:14
相关论文
共 69 条
[1]   ACTIONS OF BRL-34915 (CROMAKALIM) UPON CONVULSIVE DISCHARGES IN GUINEA-PIG HIPPOCAMPAL SLICES [J].
ALZHEIMER, C ;
TENBRUGGENCATE, G .
NAUNYN-SCHMIEDEBERGS ARCHIVES OF PHARMACOLOGY, 1988, 337 (04) :429-434
[2]   GLUCOSE, SULFONYLUREAS, AND NEUROTRANSMITTER RELEASE - ROLE OF ATP-SENSITIVE K+ CHANNELS [J].
AMOROSO, S ;
SCHMIDANTOMARCHI, H ;
FOSSET, M ;
LAZDUNSKI, M .
SCIENCE, 1990, 247 (4944) :852-854
[3]   LOCATION OF POSTSYNAPTIC INHIBITORY SYNAPSES ON HIPPOCAMPAL PYRAMIDS [J].
ANDERSEN, P ;
LOYNING, Y ;
ECCLES, JC .
JOURNAL OF NEUROPHYSIOLOGY, 1964, 27 (04) :592-&
[4]   INTERHIPPOCAMPAL IMPULSES .2. APICAL DENDRITIC ACTIVATION OF CAL NEURONS [J].
ANDERSEN, P .
ACTA PHYSIOLOGICA SCANDINAVICA, 1960, 48 (2-3) :178-208
[5]   LONG-TERM POTENTIATION AND NMDA RECEPTORS IN RAT VISUAL-CORTEX [J].
ARTOLA, A ;
SINGER, W .
NATURE, 1987, 330 (6149) :649-652
[6]  
ASHCROFT FM, 1988, ANNU REV NEUROSCI, V11, P97, DOI 10.1146/annurev.ne.11.030188.000525
[7]   ADENOSINE-5'-TRIPHOSPHATE-SENSITIVE ION CHANNELS IN NEONATAL RAT CULTURED CENTRAL NEURONS [J].
ASHFORD, MLJ ;
STURGESS, NC ;
TROUT, NJ ;
GARDNER, NJ ;
HALES, CN .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 1988, 412 (03) :297-304
[8]  
Ben-Ari Y, 1990, Adv Exp Med Biol, V268, P481
[9]   GALANIN AND GLIBENCLAMIDE MODULATE THE ANOXIC RELEASE OF GLUTAMATE IN RAT CA3 HIPPOCAMPAL-NEURONS [J].
BENARI, Y .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1990, 2 (01) :62-68
[10]   GALANIN PROTECTS HIPPOCAMPAL-NEURONS FROM THE FUNCTIONAL-EFFECTS OF ANOXIA [J].
BENARI, Y ;
LAZDUNSKI, M .
EUROPEAN JOURNAL OF PHARMACOLOGY, 1989, 165 (2-3) :331-332