Oxidative Stress, Synaptic Dysfunction, and Alzheimer's Disease

被引:1191
|
作者
Tonnies, Eric [1 ]
Trushina, Eugenia [1 ,2 ]
机构
[1] Mayo Clin, Dept Neurol, 200 First St SW, Rochester, MN 55905 USA
[2] Mayo Clin, Dept Mol Pharmacol & Expt Therapeut, Rochester, MN USA
关键词
Alzheimer's disease; amyloid-beta; antioxidants; caloric restriction; exercise; mitochondria; mitohormesis; neurotransmission; oxidative stress; synaptic function; tau protein; AMYLOID PRECURSOR PROTEIN; ABNORMAL MITOCHONDRIAL DYNAMICS; MILD COGNITIVE IMPAIRMENT; HISTOCHEMICALLY-REACTIVE ZINC; VITAMIN-E SUPPLEMENTATION; INTRACELLULAR A-BETA; NEURODEGENERATIVE DISEASES; TRANSGENIC MICE; MOUSE MODEL; NEUROFIBRILLARY PATHOLOGY;
D O I
10.3233/JAD-161088
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Alzheimer's disease (AD) is a devastating neurodegenerative disorder without a cure. Most AD cases are sporadic where age represents the greatest risk factor. Lack of understanding of the disease mechanism hinders the development of efficacious therapeutic approaches. The loss of synapses in the affected brain regions correlates best with cognitive impairment in AD patients and has been considered as the early mechanism that precedes neuronal loss. Oxidative stress has been recognized as a contributing factor in aging and in the progression of multiple neurodegenerative diseases including AD. Increased production of reactive oxygen species (ROS) associated with ageand disease-dependent loss of mitochondrial function, altered metal homeostasis, and reduced antioxidant defense directly affect synaptic activity and neurotransmission in neurons leading to cognitive dysfunction. In addition, molecular targets affected by ROS include nuclear and mitochondrial DNA, lipids, proteins, calcium homeostasis, mitochondrial dynamics and function, cellular architecture, receptor trafficking and endocytosis, and energy homeostasis. Abnormal cellular metabolism in turn could affect the production and accumulation of amyloid-beta (A beta) and hyperphosphorylated Tau protein, which independently could exacerbate mitochondrial dysfunction and ROS production, thereby contributing to a vicious cycle. While mounting evidence implicates ROS in the AD etiology, clinical trials with antioxidant therapies have not produced consistent results. In this review, we will discuss the role of oxidative stress in synaptic dysfunction in AD, innovative therapeutic strategies evolved based on a better understanding of the complexity of molecular mechanisms of AD, and the dual role ROS play in health and disease.
引用
收藏
页码:1105 / 1121
页数:17
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