CHLORIDE CONDUCTANCE PRODUCES BOTH PRESYNAPTIC INHIBITION AND ANTIDROMIC SPIKES IN PRIMARY AFFERENTS

被引:32
作者
CATTAERT, D
ELMANIRA, A
CLARAC, F
机构
[1] KAROLINSKA INST,NOBEL INST NEUROPHYSIOL,DEPT NEUROSCI,S-17177 STOCKHOLM,SWEDEN
[2] CNRS,NEUROBIOL & MOUVEMENTS LAB,F-13402 MARSEILLE 20,FRANCE
关键词
PRESYNAPTIC INHIBITION; ANTIDROMIC SPIKE; PRIMARY AFFERENT DEPOLARIZATION; CRAYFISH; FICTIVE LOCOMOTION;
D O I
10.1016/0006-8993(94)90289-5
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Primary afferents from a crayfish leg proprioceptor display both primary afferent depolarizations (PADs) and antidromic spikes. PADs are generated by activation of GABA receptors and produce presynaptic inhibition, while the antidromic spikes do not elicit any synaptic effect in the postsynaptic neurons. The aim of the present study was to investigate the ionic mechanisms that allow PADs to produce antidromic spikes and to test whether GABA can produce similar effects. Intracellular recordings from the sensory axon terminals within the ganglion where PAD are produced were performed. Lowering the extracellular chloride concentration resulted in an increase in PAD amplitude, which was then capable of producing antidromic spikes. Local application of GABA close to the axon terminal also resulted in production of antidromic spikes. We conclude that antidromic spikes may result from the activation of a GABA-mediated increase in chloride conductance that also produces PADs. Therefore PADs and antidromic spikes may represent two aspects of the same GABAergic inhibitory mechanism that gate sensory transmission.
引用
收藏
页码:109 / 112
页数:4
相关论文
共 17 条
[1]  
ALFORD S, 1991, J NEUROSCI, V11, P3718
[2]  
BAEV KV, 1982, NEUROSCIENCE, V7, P1401
[3]  
BURROWS M, 1994, J NEUROSCI, V14, P272
[4]   CENTRAL CONTROL OF THE SENSORY AFFERENT TERMINALS FROM A LEG CHORDOTONAL ORGAN IN CRAYFISH INVITRO PREPARATION [J].
CATTAERT, D ;
ELMANIRA, A ;
MARCHAND, A ;
CLARAC, F .
NEUROSCIENCE LETTERS, 1990, 108 (1-2) :81-87
[5]   DIRECT EVIDENCE FOR PRESYNAPTIC INHIBITORY MECHANISMS IN CRAYFISH SENSORY AFFERENTS [J].
CATTAERT, D ;
ELMANIRA, A ;
CLARAC, F .
JOURNAL OF NEUROPHYSIOLOGY, 1992, 67 (03) :610-624
[6]  
Clarac F, 1992, Curr Opin Neurobiol, V2, P764, DOI 10.1016/0959-4388(92)90131-4
[7]   RHYTHMIC FLUCTUATIONS OF DORSAL-ROOT POTENTIALS AND ANTIDROMIC DISCHARGES OF PRIMARY AFFERENTS DURING FICTIVE LOCOMOTION IN THE CAT [J].
DUBUC, R ;
CABELGUEN, JM ;
ROSSIGNOL, S .
JOURNAL OF NEUROPHYSIOLOGY, 1988, 60 (06) :2014-2036
[8]   RHYTHMIC ANTIDROMIC DISCHARGES OF SINGLE PRIMARY AFFERENTS RECORDED IN CUT DORSAL-ROOT FILAMENTS DURING LOCOMOTION IN THE CAT [J].
DUBUC, R ;
CABELGUEN, JM ;
ROSSIGNOL, S .
BRAIN RESEARCH, 1985, 359 (1-2) :375-378
[9]   EXCITATION OF MOUSE MOTONEURONS BY GABA-MEDIATED PRIMARY AFFERENT DEPOLARIZATION [J].
DUCHEN, MR .
BRAIN RESEARCH, 1986, 379 (01) :182-187
[10]   PRESYNAPTIC INHIBITION IS MEDIATED BY HISTAMINE AND GABA IN THE CRUSTACEAN ESCAPE REACTION [J].
ELMANIRA, A ;
CLARAC, F .
JOURNAL OF NEUROPHYSIOLOGY, 1994, 71 (03) :1088-1095