Modeling Sporadic Alzheimer's Disease: The Insulin Resistant Brain State Generates Multiple Long-Term Morphobiological Abnormalities Including Hyperphosphorylated Tau Protein and Amyloid-β

被引:90
|
作者
Salkovic-Petrisic, Melita [1 ,2 ]
Osmanovic, Jelena [1 ,2 ]
Gruenblatt, Edna [3 ]
Riederer, Peter [3 ]
Hoyer, Siegfried [4 ]
机构
[1] Univ Zagreb, Dept Pharmacol, HR-10000 Zagreb, Croatia
[2] Univ Zagreb, Croatian Inst Brain Res, Sch Med, HR-10000 Zagreb, Croatia
[3] Univ Wurzburg, Clin Neurochem Lab, Natl Parkinson Fdn Ctr Excellence Res Lab, Clin & Policlin Psychiat Psychosomat & Psychother, Wurzburg, Germany
[4] Heidelberg Univ, Dept Pathol, D-6900 Heidelberg, Germany
关键词
Amyloid-beta; brain; hyperphosphorylated tau; insulin; insulin resistant brain state; oxidative metabolism; sporadic Alzheimer disease; GROWTH-FACTOR-I; CEREBRAL GLUCOSE-METABOLISM; PITUITARY-ADRENAL AXIS; PYRUVATE-DEHYDROGENASE COMPLEX; POSITRON-EMISSION-TOMOGRAPHY; UBIQUITIN-PROTEASOME SYSTEM; CEREBROSPINAL-FLUID LEVELS; ATP-CONSUMING PROCESSES; DEGRADING ENZYME; PRECURSOR PROTEIN;
D O I
10.3233/JAD-2009-1184
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Nosologically, Alzheimer's disease (AD) is not a single disorder. Missense gene mutations involved in increased formation of the amyloid-beta protein precursor derivatives amyloid-beta (A beta)(1-40) and A beta(1-42/43) lead to autosomal dominant familial AD, found in the minority of AD cases. However, millions of subjects suffer from sporadic AD (sAD) of late onset, for which no convincing evidence suggests A beta as the primary disease-generating compound. Environmental factors operating during pregnancy and postnatally may affect susceptibility genes and stress factors (e. g., cortisol), consequently affecting brain development both structurally and functionally, causing diseases that only manifest late in life. With aging, a desynchronization of biological systems may result, increasing further brain entropy/declining criticality. In sAD, this desynchronization may involve stress components, cortisol and noradrenaline, reactive oxygen species, and membrane damage as major candidates causing an insulin resistant brain state with decreased glucose/energy metabolism. This further leads to a derangement of ATP-dependent cellular and molecular work, of the cell function in general, as well as derangements in the endoplasmic reticulum/Golgi apparatus, axon, synapses, and membranes, in particular. A self-propagating process is thus generated, including the increased formation of hyperphosphorylated tau-protein and A beta as abnormal terminal events in sAD rather than causing the disorder, as elaborated in the review.
引用
收藏
页码:729 / 750
页数:22
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