ELEVATED POTASSIUM PREVENTS NEURONAL DEATH BUT INHIBITS NETWORK FORMATION IN NEOCORTICAL CULTURES

被引:23
作者
BAKER, RE [1 ]
RUIJTER, JM [1 ]
BINGMANN, D [1 ]
机构
[1] UNIV ESSEN GESAMTHSCH,INST PHYSIOL,W-4300 ESSEN 1,GERMANY
关键词
ELEVATED POTASSIUM; NEOCORTICAL CULTURES; CELL DEATH; BIOELECTRIC ACTIVITY; SYNAPTOGENESIS; TTX;
D O I
10.1016/0736-5748(91)90055-Q
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Chronic depolarization is inimical to neuronal growth and synaptogenesis so that spontaneous action potential generation appears to be required for the normal cytomorphological maturation of neocortical networks. The efficacy of 25 mM K in suppressing spontaneous bioelectric activity was monitored by extra- and intracellular recording from the explants. Intracellular recording from individual neurons showed that membrane potentials were reduced to ca -30 mV in potassium cultures but rapidly repolarized to ca -50 mV when returned to normal growth medium. Though action potentials could be readily evoked from these explants, spontaneous discharges and postsynaptic potentials were absent from potassium-treated cultures. Both spontaneous bioelectric activity and postsynaptic potentials returned to the cultures by 5 days after returning the explants to normal growth medium. Extracellular recordings also showed that the explants were bioelectrically silent in the presence of 25 mM K or 25 mM K plus tetrodotoxin. In contrast to tetrodotoxin alone, bioelectric activity was absent when the cultures (with or without tetrodotoxin) were returned to normal growth medium. The explants gradually began to evince spontaneous bioelectric activity between 3 and 5 days after being returned to normal growth medium. Massive cell death induced by chronic exposure to tetrodotoxin was totally prevented by concomitant addition of 25 mM potassium, though these explants were significantly thinner than controls due to a large decrease in neuropil. We conclude that chronic depolarization of neonatal cortical explants by potassium results in a delayed return of spontaneous bioelectric discharges. Chronic depolarization results in a retardation of network formation in these explants apparently due to a lack of neurite and/or synapse formation. These effects are reversible with function returning to the explants over a period of several days.
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收藏
页码:339 / 345
页数:7
相关论文
共 28 条
[1]   ELECTROPHYSIOLOGICAL PROPERTIES OF NEURONS IN NEONATAL RAT OCCIPITAL CORTEX SLICES GROWN IN A SERUM-FREE MEDIUM [J].
BAKER, RE ;
BINGMANN, D ;
RUIJTER, JM .
NEUROSCIENCE LETTERS, 1989, 97 (03) :310-315
[2]   CHRONIC BLOCKADE OF BIOELECTRIC ACTIVITY IN NEONATAL RAT NEOCORTEX INVITRO - PHYSIOLOGICAL-EFFECTS [J].
BAKER, RE ;
RUIJTER, JM .
INTERNATIONAL JOURNAL OF DEVELOPMENTAL NEUROSCIENCE, 1991, 9 (04) :321-&
[3]   N-METHYL-D-ASPARTATE PROMOTES THE SURVIVAL OF CEREBELLAR GRANULE CELLS IN CULTURE [J].
BALAZS, R ;
JORGENSEN, OS ;
HACK, N .
NEUROSCIENCE, 1988, 27 (02) :437-451
[4]   NEURONAL MATURATION IN MAMMALIAN-CELL CULTURE IS DEPENDENT ON SPONTANEOUS ELECTRICAL-ACTIVITY [J].
BERGEY, GK ;
FITZGERALD, SC ;
SCHRIER, BK ;
NELSON, PG .
BRAIN RESEARCH, 1981, 207 (01) :49-58
[5]   INTERACTION BETWEEN TROPHIC ACTION AND ELECTRICAL-ACTIVITY IN SPINAL-CORD CULTURES [J].
BRENNEMAN, DE ;
FITZGERALD, S ;
NELSON, PG .
DEVELOPMENTAL BRAIN RESEARCH, 1984, 15 (02) :211-217
[6]   VASOACTIVE-INTESTINAL-PEPTIDE AND ELECTRICAL-ACTIVITY INFLUENCE NEURONAL SURVIVAL [J].
BRENNEMAN, DE ;
EIDEN, LE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1986, 83 (04) :1159-1162
[7]   ELEVATED POTASSIUM INDUCES MORPHOLOGICAL-DIFFERENTIATION OF DORSAL-ROOT GANGLIONIC NEURONS IN DISSOCIATED CELL-CULTURE [J].
CHALAZONITIS, A ;
FISCHBACH, GD .
DEVELOPMENTAL BIOLOGY, 1980, 78 (01) :173-183
[8]  
COHEN CS, 1986, SCIENCE, V232, P1638
[9]  
Conover WJ, 1980, PRACTICAL NONPARAMET, P229
[10]  
CRAIN SM, 1976, NEUROPHYSIOLOGIC STU, P43