Voltammetric study of the control of striatal dopamine release by glutamate

被引:98
作者
Borland, LM [1 ]
Michael, AC [1 ]
机构
[1] Univ Pittsburgh, Dept Chem, Pittsburgh, PA 15260 USA
关键词
kynurenic acid; microelectrode; reverse transport; tetrodotoxin; voltammetry;
D O I
10.1111/j.1471-4159.2004.02708.x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 [生物化学与分子生物学]; 081704 [应用化学];
摘要
The central dopamine systems are involved in several aspects of normal brain function and are implicated in a number of human disorders. Hence, it is important to understand the mechanisms that control dopamine release in the brain. The striatum of the rat receives both dopaminergic and glutamatergic projections that synaptically target striatal neurons but not each other. Nevertheless, these afferents do form frequent appositional contacts, which has engendered interest in the question of whether they communicate with each other despite the absence of a direct synaptic connection. In this study, we used voltammetry in conjunction with carbon fiber microelectrodes in anesthetized rats to further examine the effect of the ionotropic glutamate antagonist, kynurenate, on extracellular dopamine levels in the striatum. Intrastriatal infusions of kynurenate decreased extracellular dopamine levels, suggesting that glutamate acts locally within the striatum via ionotropic receptors to regulate the basal extracellular dopamine concentration. Infusion of tetrodotoxin into the medial forebrain bundle or the striatum did not alter the voltammetric response to the intrastriatal kynurenate infusions, suggesting that glutamate receptors control a non-vesicular release process that contributes to the basal extracellular dopamine level. However, systemic administration of the dopamine uptake inhibitor, nomifensine (20 mg/kg i.p.), markedly decreased the amplitude of the response to kynurenate infusions, suggesting that the dopamine transporter mediates non-vesicular dopamine release. Collectively, these findings are consistent with the idea that endogenous glutamate acts locally within the striatum via ionotropic receptors to control a tonic, impulse-independent, transporter-mediated mode of dopamine release. Although numerous prior in vitro studies had suggested that such a process might exist, it has not previously been clearly demonstrated in an in vivo experiment.
引用
收藏
页码:220 / 229
页数:10
相关论文
共 65 条
[1]
Corticolimbic dopamine neurotransmission is temporally dissociated from the cognitive and locomotor effects of phencyclidine [J].
Adams, B ;
Moghaddam, B .
JOURNAL OF NEUROSCIENCE, 1998, 18 (14) :5545-5554
[2]
[Anonymous], 1979, A Stereotaxic Atlas of the Rat Brain
[3]
Avshalumov MV, 2003, J NEUROSCI, V23, P2744
[4]
Cystine/glutamate exchange serves as the source for extracellular glutamate: Modifications by repeated cocaine administration [J].
Baker, DA ;
Shen, H ;
Kalivas, PW .
AMINO ACIDS, 2002, 23 (1-3) :161-162
[5]
Baker DA, 2002, J NEUROSCI, V22, P9134
[6]
Bernard V, 1997, J NEUROSCI, V17, P819
[7]
Microdialysis of dopamine interpreted with quantitative model incorporating probe implantation trauma [J].
Bungay, PM ;
Newton-Vinson, P ;
Isele, W ;
Garris, PA ;
Justice, JB .
JOURNAL OF NEUROCHEMISTRY, 2003, 86 (04) :932-946
[8]
Neurotransmitter interactions in schizophrenia - Therarpeutic implications [J].
Carlsson, A ;
Waters, N ;
Carlsson, ML .
BIOLOGICAL PSYCHIATRY, 1999, 46 (10) :1388-1395
[9]
INTERACTIONS BETWEEN GLUTAMATERGIC AND MONOAMINERGIC SYSTEMS WITHIN THE BASAL GANGLIA - IMPLICATIONS FOR SCHIZOPHRENIA AND PARKINSONS-DISEASE [J].
CARLSSON, M ;
CARLSSON, A .
TRENDS IN NEUROSCIENCES, 1990, 13 (07) :272-276
[10]
Evidence for the preferential localization of glutamate receptor-1 subunits of AMPA receptors to the dendritic spines of medium spiny neurons in rat striatum [J].
Chen, Q ;
Veenman, L ;
Knopp, K ;
Yan, Z ;
Medina, L ;
Song, WJ ;
Surmeier, DJ ;
Reiner, A .
NEUROSCIENCE, 1998, 83 (03) :749-761