共 210 条
Mitochondria in Neuroplasticity and Neurological Disorders
被引:846
作者:

Mattson, Mark P.
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机构:
Natl Inst Aging Intramural Res Program, Neurosci Lab, Baltimore, MD 21224 USA Natl Inst Aging Intramural Res Program, Neurosci Lab, Baltimore, MD 21224 USA

Gleichmann, Marc
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Natl Inst Aging Intramural Res Program, Neurosci Lab, Baltimore, MD 21224 USA Natl Inst Aging Intramural Res Program, Neurosci Lab, Baltimore, MD 21224 USA

Cheng, Aiwu
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机构:
Natl Inst Aging Intramural Res Program, Neurosci Lab, Baltimore, MD 21224 USA Natl Inst Aging Intramural Res Program, Neurosci Lab, Baltimore, MD 21224 USA
机构:
[1] Natl Inst Aging Intramural Res Program, Neurosci Lab, Baltimore, MD 21224 USA
来源:
关键词:
D O I:
10.1016/j.neuron.2008.10.010
中图分类号:
Q189 [神经科学];
学科分类号:
071006 ;
摘要:
Mitochondrial electron transport generates the ATP that is essential for the excitability and survival of neurons, and the protein phosphorylation reactions that mediate synaptic signaling and related long-term changes in neuronal structure and function. Mitochondria are highly dynamic organelles that divide, fuse, and move purposefully within axons and dendrites. Major functions of mitochondria in neurons include the regulation of Ca2+ and redox signaling, developmental and synaptic plasticity, and the arbitration of cell survival and death. The importance of mitochondria in neurons is evident in the neurological phenotypes in rare diseases caused by mutations in mitochondrial genes. Mitochondria-mediated oxidative stress, perturbed Ca2+ homeostasis, and apoptosis may also contribute to the pathogenesis of prominent neurological diseases including Alzheimer's, Parkinson's, and Huntington's diseases; stroke; annyotrophic lateral sclerosis; and psychiatric disorders. Advances in understanding the molecular and cell biology of mitochondria are leading to novel approaches for the prevention and treatment of neurological disorders.
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页码:748 / 766
页数:19
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