EXCITATORY AMINO-ACIDS AND MEMORY - EVIDENCE FROM RESEARCH ON ALZHEIMERS-DISEASE AND BEHAVIORAL PHARMACOLOGY

被引:56
作者
ADVOKAT, C
PELLEGRIN, AI
机构
[1] Department of Psychology, Louisiana State University, Baton Rouge
关键词
EXCITATORY AMINO ACIDS; N-METHYL-D-ASPARTATE; ALZHEIMERS DISEASE; NEUROBIOLOGY OF LEARNING AND MEMORY;
D O I
10.1016/S0149-7634(05)80046-6
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
The excitatory amino acid transmitter (EAA) system is believed to play a crucial role in a variety of physiological processes related to neuronal plasticity. Substantial neurophysiological evidence suggests that, under normal physiological conditions, EAAs may be involved in mechanisms underlying learning and memory. However, overactivity of this system produces excitotoxic damage to neurons which is believed to be an etiological factor in various neurological conditions, such as epilepsy, and stroke-induced impairments. The fact that EAAs have been implicated in both, normal cognitive function and in degenerative neurological conditions suggests that they may contribute to the etiology of Alzheimer's disease (AD), because AD is characterized by memory deficits and specific histopathological signs of neuronal damage. This paper summarizes information regarding 1) the involvement of EAAs in Alzheimer's disease and 2) results from psychopharmacological studies of EAAs in laboratory animal models of learning. Investigations of the pathophysiology of AD indicate that glutamatergic deficits are associated with this syndrome, However, there is controversy concerning the nature of this defect. As a result, it is unclear whether it is a consequence of excitotoxic changes produced by glutamatergic overactivity or result from a decrease in glutamatergic function. Evidence from behavioral studies is consistent with the conclusion that EAAs may be involved in the acquisition of conditioned responses. However, in parallel with the clinical findings, learning impairments have been produced by treatments which either increase or decrease activity within this transmitter system. Therefore, although present results suggest that the EAAs play a role in cognition and in clinical syndromes in which such function is compromised, the specific nature of that role needs to be elucidated by future research.
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页码:13 / 24
页数:12
相关论文
共 115 条
[1]  
AANONSEN LM, 1987, J PHARMACOL EXP THER, V243, P9
[2]   LOSS OF GLUTAMINASE-POSITIVE CORTICAL-NEURONS IN ALZHEIMERS-DISEASE [J].
AKIYAMA, H ;
MCGEER, PL ;
ITAGAKI, S ;
MCGEER, EG ;
KANEKO, T .
NEUROCHEMICAL RESEARCH, 1989, 14 (04) :353-358
[3]   A PRELIMINARY-STUDY OF FREE AMINO-ACIDS IN THE POSTMORTEM TEMPORAL CORTEX FROM ALZHEIMER-TYPE DEMENTIA PATIENTS [J].
ARAI, H ;
KOBAYASHI, K ;
ICHIMIYA, Y ;
KOSAKA, K ;
IIZUKA, R .
NEUROBIOLOGY OF AGING, 1984, 5 (04) :319-321
[4]   AMINO-ACID-CONCENTRATIONS IN CEREBROSPINAL-FLUID AND PLASMA IN ALZHEIMERS-DISEASE AND HEALTHY CONTROL SUBJECTS [J].
BASUN, H ;
FORSSELL, LG ;
ALMKVIST, O ;
COWBURN, RF ;
EKLOF, R ;
WINBLAD, B ;
WETTERBERG, L .
JOURNAL OF NEURAL TRANSMISSION-PARKINSONS DISEASE AND DEMENTIA SECTION, 1990, 2 (04) :295-304
[5]   2-AMINO-7-PHOSPHONOHEPTANOIC ACID (AP7) PRODUCES DISCRIMINATIVE STIMULI AND ANTICONFLICT EFFECTS SIMILAR TO DIAZEPAM [J].
BENNETT, DA ;
AMRICK, CL .
LIFE SCIENCES, 1986, 39 (25) :2455-2461
[6]  
BENNETT DA, 1989, J PHARMACOL EXP THER, V250, P454
[7]   AMNESIC EFFECT OF THE NOVEL ANTICONVULSANT MK-801 [J].
BENVENGA, MJ ;
SPAULDING, TC .
PHARMACOLOGY BIOCHEMISTRY AND BEHAVIOR, 1988, 30 (01) :205-207
[8]   LONG-LASTING POTENTIATION OF SYNAPTIC TRANSMISSION IN DENTATE AREA OF ANESTHETIZED RABBIT FOLLOWING STIMULATION OF PERFORANT PATH [J].
BLISS, TVP ;
LOMO, T .
JOURNAL OF PHYSIOLOGY-LONDON, 1973, 232 (02) :331-356
[9]  
BOAST CA, 1988, J PHARMACOL EXP THER, V247, P556