Modulation of glucose uptake in glial and neuronal cell lines by selected neurological drugs

被引:20
作者
Mannerström, M [1 ]
Tähti, H [1 ]
机构
[1] Univ Tampere, Sch Med, Cell Res Ctr, FIN-33014 Tampere 33101, Finland
关键词
glucose uptake; neural cells; amitriptyline; selegiline; carbamazepine; phenytoin;
D O I
10.1016/j.toxlet.2004.01.029
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Glucose is the main energy source of brain cells. The transport of glucose across the cell membrane is the first step of its utilization. Any modification in glucose uptake capacity may cause deleterious effects on neural cell functions. In the present study, 3-O-methyl-D-glucose (3-OMG) uptake and its modulation by selected neurological drugs (amitriptyline, selegiline, carbamazepine and phenytoin) were studied in differentiated (with retinoic acid and 12-O-tetradecanoyl phorbol 13-acetate) and undifferentiated neuroblastoma SH-SY5Y and astrocytoma U-373 MG cell lines, using tracer methods. The expression of glucose transporters was studied by immunocytochemistry. SH-SY5Y and U-373 MG cells showed differences both in their glucose uptake properties and in the modulation of glucose uptake by the drugs, which might reflect different specialization of neuronal and glial cells in vivo. While selegiline and amitriptyline had a minor and variable effect on 3-OMG uptake in all cell cultures, the anticonvulsants carbamazepine and phenytoin increased 3-OMG uptake in U-373 MG cells, but decreased that in SH-SY5Y cells. Differentiated SH-SY5Y cells were more sensitive to the effects of the anticonvulsants than undifferentiated SH-SY5Y cells. The results suggest that, the cell lines are promising neural models for the evaluation of drug side effects due to disturbances in glucose uptake. (C) 2004 Elsevier Ireland Ltd. All rights reserved.
引用
收藏
页码:87 / 97
页数:11
相关论文
共 44 条
[1]  
ADELBERT A, 2000, BRAIN RES REV, V34, P42
[2]   Mechanisms of action of carbamazepine and its derivatives, oxcarbazepine, BIA 2-093, and BIA 2-024 [J].
Ambrósio, AF ;
Soares-da-Silva, P ;
Carvalho, CM ;
Carvalho, AP .
NEUROCHEMICAL RESEARCH, 2002, 27 (1-2) :121-130
[3]   Neurotoxic/neuroprotective profile of carbamazepine, oxcarbazepine and two new putative antiepileptic drugs, BIA 2-093 and BIA 2-024 [J].
Ambrósio, AF ;
Silva, AP ;
Araújo, I ;
Malva, JO ;
Soares-da-Silva, P ;
Carvalho, AP ;
Carvalho, CM .
EUROPEAN JOURNAL OF PHARMACOLOGY, 2000, 406 (02) :191-201
[4]   Inhibition of glucose transport in PC12 cells by the atypical antipsychotic drugs risperidone and clozapine, and structural analogs of clozapine [J].
Ardizzone, TD ;
Bradley, RJ ;
Freeman, AM ;
Dwyer, DS .
BRAIN RESEARCH, 2001, 923 (1-2) :82-90
[5]   TISSUE CONCENTRATIONS OF CLOZAPINE AND ITS METABOLITES IN THE RAT [J].
BALDESSARINI, RJ ;
CENTORRINO, F ;
FLOOD, JG ;
VOLPICELLI, SA ;
HUSTONLYONS, D ;
COHEN, BM .
NEUROPSYCHOPHARMACOLOGY, 1993, 9 (02) :117-124
[6]  
Binder C, 1997, ANTICANCER RES, V17, P4299
[7]   RELATIVE CYTOTOXICITY OF PSYCHOTROPIC-DRUGS IN CULTURED RAT HEPATOCYTES [J].
BOELSTERLI, UA ;
BOUIS, P ;
DONATSCH, P .
CELL BIOLOGY AND TOXICOLOGY, 1987, 3 (03) :231-250
[8]   Do active cerebral neurons really use lactate rather than glucose? [J].
Chih, CP ;
Lipton, P ;
Roberts, EL .
TRENDS IN NEUROSCIENCES, 2001, 24 (10) :573-578
[9]   Strategies for metabolic exchange between glial cells and neurons [J].
Deitmer, JW .
RESPIRATION PHYSIOLOGY, 2001, 129 (1-2) :71-81
[10]   Cytotoxicity of conventional and atypical antipsychotic drugs in relation to glucose metabolism [J].
Dwyer, DS ;
Lu, XH ;
Bradley, RJ .
BRAIN RESEARCH, 2003, 971 (01) :31-39