Potentiation of glutamatergic agonist-induced inositol phosphate formation by basic fibroblast growth factor is related to developmental features in hippocampal cultures: neuronal survival and glial cell proliferation

被引:26
作者
Blanc, EM [1 ]
Jallageas, M [1 ]
Recasens, M [1 ]
Guiramand, J [1 ]
机构
[1] Univ Montpellier 2, CNRS, EP628, Lab Plast Cerebrale, F-34095 Montpellier 5, France
关键词
AMPA receptors; in vitro development; metabotropic glutamate receptors; rat hippocampal cultures; trophic factors;
D O I
10.1046/j.1460-9568.1999.00759.x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We investigated the modulation by growth factors of phospholipase C (PLC)-linked glutamate receptors during in vitro development of hippocampal cultures. In defined medium, glial cells represent between 3 and 14% of total cell number. When we added basic fibroblast growth factor (bFGF) 2 h after plating, we found: (i) a neuroprotection from naturally occurring death for up to 5 days; (ii) a proliferation of glial cells from day 3; and (iii) a potentiation of quisqualate (QA)-induced inositol phosphate (IP) formation from 1 to 10 days in vitro (DIV) and 1S,3R-amino-cyclopentane-1,3-dicarboxylate (ACPD) response from 3 to 10 DIV. The antimitotic cytosine-beta,D-arabinofuranoside (AraC) blocked glial cell proliferation induced by bFGF, but not neuroprotection. Under these conditions, the early potentiation of the QA response (1-3 DIV) was not changed, while the ACPD and late QA response potentiations were prevented (5-10 DIV). Epidermal growth factor was not neuroprotective but it induced both glial cell proliferation and late QA or ACPD potentiation. Surprisingly, the early bFGF-potentiated QA-induced IP response was blocked by 6,7-dinitro-quinoxaline-2,3-dione (DNQX), suggesting the participation of ionotropic (RS)-alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA)/kainate (KA) receptors. The delayed bFGF-potentiated ACPD-induced IP response is inhibited by (S)-alpha-methyl-4-carboxyphenylglycine (MCPG), indicating possible activation of glial metabotropic receptors. These results suggest that, in hippocampal cultures, bFGF modulates AMPA and metabotropic glutamate receptors linked to the IP cascade, possibly in relation to the regulation of neuronal survival and glial cell proliferation, respectively.
引用
收藏
页码:3377 / 3386
页数:10
相关论文
共 66 条
[1]   REDUCED HIPPOCAMPAL LONG-TERM POTENTIATION AND CONTEXT-SPECIFIC DEFICIT IN ASSOCIATIVE LEARNING IN MGLUR1 MUTANT MICE [J].
AIBA, A ;
CHEN, C ;
HERRUP, K ;
ROSENMUND, C ;
STEVENS, CF ;
TONEGAWA, S .
CELL, 1994, 79 (02) :365-375
[2]   REDUCED HIPPOCAMPAL LONG-TERM POTENTIATION AND CONTEXT-SPECIFIC DEFICIT IN ASSOCIATIVE LEARNING IN MGLUR1 MUTANT MICE [J].
AIBA, A ;
CHEN, C ;
HERRUP, K ;
ROSENMUND, C ;
STEVENS, CF ;
TONEGAWA, S .
CELL, 1994, 79 (02) :365-375
[3]   LASTING INCREASE IN EXCITATORY AMINO-ACID RECEPTOR-MEDIATED POLYPHOSPHOINOSITIDE HYDROLYSIS IN THE AMYGDALA PYRIFORM CORTEX OF AMYGDALA-KINDLED RATS [J].
AKIYAMA, K ;
YAMADA, N ;
OTSUKI, S .
BRAIN RESEARCH, 1989, 485 (01) :95-101
[4]   Developmental expression and self-regulation of Ca2+ entry via AMPA/KA receptors in the embryonic chick retina [J].
Allcorn, S ;
Catsicas, M ;
Mobbs, P .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1996, 8 (12) :2499-2510
[5]   CHARACTERIZATION OF BASIC FIBROBLAST GROWTH FACTOR-MEDIATED ACCELERATION OF AXONAL BRANCHING IN CULTURED RAT HIPPOCAMPAL-NEURONS [J].
AOYAGI, A ;
NISHIKAWA, K ;
SAITO, H ;
ABE, K .
BRAIN RESEARCH, 1994, 661 (1-2) :117-126
[6]  
Balazs R, 1997, J NEUROCHEM, V69, P151
[7]   AMPA/kainate receptors modulate the survival in vitro of embryonic brainstem cells [J].
Bardoul, M ;
Drian, MJ ;
Konig, N .
INTERNATIONAL JOURNAL OF DEVELOPMENTAL NEUROSCIENCE, 1997, 15 (06) :695-701
[8]   INDUCTION OF LTP IN THE HIPPOCAMPUS NEEDS SYNAPTIC ACTIVATION OF GLUTAMATE METABOTROPIC RECEPTORS [J].
BASHIR, ZI ;
BORTOLOTTO, ZA ;
DAVIES, CH ;
BERRETTA, N ;
IRVING, AJ ;
SEAL, AJ ;
HENLEY, JM ;
JANE, DE ;
WATKINS, JC ;
COLLINGRIDGE, GL .
NATURE, 1993, 363 (6427) :347-350
[9]  
Blanc E, 1998, PORTL PR P, V12, P201
[10]  
BLANC E, 1995, J NEUROCHEM S95, V65