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Chapter 39 Calcium Signaling During Brain Aging and Its Influence on the Hippocampal Synaptic Plasticity

机译:第39章脑老化期间的钙信号传导及其对海马突触塑性的影响

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摘要

Calcium (Ca~2+) ions are highly versatile intracellular signaling molecules and are universal second messenger for regulating a variety of cellular and physiological functions including synaptic plasticity. Ca~2+ homeostasis in the central nervous system endures subtle dysregulation with advancing age. Research has provided abundant evidence that brain aging is associated with altered neuronal Ca~2+ regulation and synaptic plasticity mechanisms. Much of the work has focused on the hippocampus, a brain region critically involved in learning and memory, which is particularly susceptible to dysfunction during aging. The current chapter takes a specific perspective, assessing various Ca~2+ sources and the influence of aging on Ca~2+ sources and synaptic plasticity in the hippocampus. Integrating the knowledge of the complexity of age-related alterations in neuronal Ca~2+ signaling and synaptic plasticity mechanisms will positively shape the development of highly effective therapeutics to treat brain disorders including cognitive impairment associated with aging and neurodegenerative disease.
机译:钙(Ca〜2 +)离子是高度通用的细胞内信号传导分子,是用于调节包括​​突触可塑性的各种细胞和生理功能的通用第二信使。中枢神经系统中的Ca〜2 +稳态均有微妙的呼吸困难与前进年龄的态度。研究提供了丰富的证据,即脑老化与改变的神经元CA〜2 +调节和突触塑性机制有关。大部分作品都集中在海马,一个脑区批判性地参与学习和记忆,这在老化期间特别容易存在功能障碍。本章采用了特定的观点,评估了各种Ca〜2 +来源以及老化对海马Ca〜2 +源和突触可塑性的影响。整合着神经元CA〜2 +信号传导和突触塑性机制的年龄相关的改变的复杂性的知识将积极地塑造高效治疗的发展,以治疗脑疾病,包括与老化和神经变性疾病相关的认知障碍。

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