Inhibition of presynaptic sodium channels by halothane

被引:68
作者
Ratnakumari, L
Hemmings, HC
机构
[1] Cornell Univ, Coll Med, Dept Anesthesiol, New York, NY 10021 USA
[2] Cornell Univ, Coll Med, Dept Pharmacol, New York, NY 10021 USA
关键词
batrachotoxinin-A; 20-alpha-benzoate; brevetoxin-B; exocytosis; glutamate; volatile anesthetics;
D O I
10.1097/00000542-199804000-00025
中图分类号
R614 [麻醉学];
学科分类号
100217 ;
摘要
Background: Recent electrophysiologic studies indicate that clinical concentrations of volatile general anesthetic agents inhibit central nervous system sodium (Na+) channels. In this study, the biochemical effects of halothane on Na+ channel function were determined using rat brain synaptosomes (pinched-off nerve terminals) to assess the role of presynaptic Na+ channels in anesthetic effects. Methods: Synaptosomes from adult rat cerebral cortex were used to determine the effects of halothane on veratridine-evoked Na+ channel-dependent Na+ influx (using Na-22(+)), changes in intrasynaptosomal [Na+] (using ion-specific spectrofluorometry), and neurotoxin interactions with specific receptor sites of the Na+ channel (by radioligand binding). The potential physiologic and functional significance of these effects was determined by measuring the effects of halothane on veratridine-evoked Na+ channel-dependent glutamate release (using enzyme-coupled spectrofluorometry). Results: Halothane inhibited veratridine-evoked Na-22(+) influx (IC50 = 1.1 mM) and changes in intrasynaptosomal [Na+] (concentration for 50% inhibition [IC50] = 0.97 mM), and it specifically antagonized [H-3]batrachotoxinin-A 20-alpha-benzoate binding to receptor site two of the Na+ channel (IC50 = 0.53 mM). Scatchard and kinetic analysis revealed an allosteric competitive mechanism for inhibition of toxin binding. Halothane inhibited veratridine-evoked glutamate release from synaptosomes with comparable potency (IC50 = 0.67 mM). Conclusions: Halothane significantly inhibited Na+ channel-mediated Na+ influx, increases in intrasynaptosomal [Na+] and glutamate release, and competed with neurotoxin binding to site two of the Na+ channel in synaptosomes at concentrations within its clinical range (minimum alveolar concentration, 1-2). These findings support a role for presynaptic Na+ channels as a molecular target for general anesthetic effects.
引用
收藏
页码:1043 / 1054
页数:12
相关论文
共 55 条
[21]  
HEMMINGS HC, 1997, NEUROPROTECTION, P23
[22]  
HILL RJ, 1989, MOL PHARMACOL, V36, P150
[23]   NEUROTOXINS SPECIFIC FOR THE SODIUM-CHANNEL STIMULATE CALCIUM ENTRY INTO NEURO-BLASTOMA CELLS [J].
JACQUES, Y ;
FRELIN, C ;
VIGNE, P ;
ROMEY, G ;
PARJARI, M ;
LAZDUNSKI, M .
BIOCHEMISTRY, 1981, 20 (21) :6219-6225
[24]   ENHANCEMENT OF GAMMA-AMINOBUTYRIC ACID-ACTIVATED CL- CURRENTS IN CULTURED RAT HIPPOCAMPAL-NEURONS BY 3 VOLATILE ANESTHETICS [J].
JONES, MV ;
BROOKS, PA ;
HARRISON, NL .
JOURNAL OF PHYSIOLOGY-LONDON, 1992, 449 :279-293
[25]   EFFECTS OF VOLATILE ANESTHETICS ON CYTOPLASMIC CA2+ SIGNALING AND TRANSMITTER RELEASE IN A NEURAL CELL-LINE [J].
KRESS, HG ;
MULLER, J ;
EISERT, A ;
GILGE, U ;
TAS, PW ;
KOSCHEL, K .
ANESTHESIOLOGY, 1991, 74 (02) :309-319
[26]   SODIUM-CHANNELS IN PRESYNAPTIC NERVE-TERMINALS - REGULATION BY NEUROTOXINS [J].
KRUEGER, BK ;
BLAUSTEIN, MP ;
RATZLAFF, RW .
JOURNAL OF GENERAL PHYSIOLOGY, 1980, 76 (03) :287-313
[27]   SELECTIVE ACTION OF ANESTHETICS ON SYNAPSES AND AXONS IN MAMMALIAN SYMPATHETIC GANGLIA [J].
LARRABEE, MG ;
POSTERNAK, JM .
JOURNAL OF NEUROPHYSIOLOGY, 1952, 15 (02) :91-114
[28]   THE EFFECT OF THE VOLATILE ANESTHETIC ISOFLURANE ON CA2+-DEPENDENT GLUTAMATE RELEASE FROM RAT CEREBRAL-CORTEX [J].
LARSEN, M ;
GRONDAHL, TO ;
HAUGSTAD, TS ;
LANGMOEN, IA .
BRAIN RESEARCH, 1994, 663 (02) :335-337
[29]   EFFECTS OF HALOTHANE AND ENFLURANE ON RAT-BRAIN SYNAPTOSOMAL SODIUM-POTASSIUM-ACTIVATED ADENOSINE-TRIPHOSPHATASE [J].
LEVITT, JD .
ANESTHESIOLOGY, 1975, 42 (03) :267-274
[30]   Volatile anesthetics depress glutamate transmission via presynaptic actions [J].
MacIver, MB ;
Mikulec, AA ;
Amagasu, SM ;
Monroe, FA .
ANESTHESIOLOGY, 1996, 85 (04) :823-834