INTERMEDIARY METABOLISM DISTURBANCE IN AD SDAT AND ITS RELATION TO MOLECULAR EVENTS

被引:24
作者
HOYER, S
机构
[1] Brain Metabolism Group, Department of Pathochemistry and General Neurochemistry, University of Heidelberg, Heidelberg
关键词
ACETYLCHOLINERGIC-GLUTAMATERGIC CIRCUIT; AMINO ACIDS; AMYLOID; BRAIN ENERGY METABOLISM; DEMENTIA OF ALZHEIMER TYPE; EARLY-ONSET; LATE-ONSET; SYNAPSE;
D O I
10.1016/0278-5846(93)90043-R
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
1. Early-onset dementia of Alzheimer type (EODAT;AD) and late-onset dementia of Alzheimer type (LODAT;SDAT) are heterogenous in origin. 2. A common superordinate pathobiochemical principle in the etiopathogenesis of both types of dementia is neuronal energy failure with subsequent abnormalities in cellular Ca2+ homeostasis and glucose-related amino acid metabolism. 3. These metabolic abnormalities are assumed to occur first at axodentritic terminals of the acetylcholinergic-glutamatergic circuit and to cause morphological damage at synaptic sites. 4. Metabolic stress and structural damage at synaptic sites may induce enhanced formation of APP and its cleavage product amyloid. 5. Energy-metabolism related abnormalities along with functional and structural changes at synaptic sites of the acetylcholinergic-glutamatergic circuit may precede the formation of amyloid in DAT brain.
引用
收藏
页码:199 / 228
页数:30
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