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阿尔茨海默病中神经退行性变的分子和细胞基础。

Molecular and Cellular Basis of Neurodegeneration in Alzheimer's Disease.

机构信息

Department of Molecular Biology, Chonbuk National University, Jeonju 54896, Korea.

出版信息

Mol Cells. 2017 Sep 30;40(9):613-620. doi: 10.14348/molcells.2017.0096. Epub 2017 Sep 20.

Abstract

The most common form of senile dementia is Alzheimer's disease (AD), which is characterized by the extracellular deposition of amyloid β-peptide (Aβ) plaques and the intracellular formation of neurofibrillary tangles (NFTs) in the cerebral cortex. Tau abnormalities are commonly observed in many neurodegenerative diseases including AD, Parkinson's disease, and Pick's disease. Interestingly, tau-mediated formation of NFTs in AD brains shows better correlation with cognitive impairment than Aβ plaque accumulation; pathological tau alone is sufficient to elicit frontotemporal dementia, but it does not cause AD. A growing amount of evidence suggests that soluble Aβ oligomers in concert with hyperphosphorylated tau (pTau) serve as the major pathogenic drivers of neurodegeneration in AD. Increased Aβ oligomers trigger neuronal dysfunction and network alternations in learning and memory circuitry prior to clinical onset of AD, leading to cognitive decline. Furthermore, accumulated damage to mitochondria in the course of aging, which is the best-known nongenetic risk factor for AD, may collaborate with soluble Aβ and pTau to induce synapse loss and cognitive impairment in AD. In this review, I summarize and discuss the current knowledge of the molecular and cellular biology of AD and also the mechanisms that underlie Aβ-mediated neurodegeneration.

摘要

最常见的老年痴呆症形式是阿尔茨海默病(AD),其特征是细胞外淀粉样β肽(Aβ)斑块的沉积和大脑皮层神经原纤维缠结(NFTs)的细胞内形成。在包括 AD、帕金森病和皮克病在内的许多神经退行性疾病中,通常观察到 tau 异常。有趣的是,AD 大脑中由 tau 介导的 NFT 形成与认知障碍的相关性优于 Aβ斑块的积累;病理性 tau 本身足以引起额颞叶痴呆,但不会引起 AD。越来越多的证据表明,可溶性 Aβ寡聚体与过度磷酸化的 tau(pTau)一起作为 AD 神经退行性变的主要致病驱动因素。在 AD 临床发病前,增加的 Aβ寡聚体引发神经元功能障碍和学习记忆回路的网络改变,导致认知下降。此外,衰老过程中线粒体的累积损伤是 AD 最著名的非遗传风险因素,可能与可溶性 Aβ和 pTau 一起诱导 AD 中的突触丧失和认知障碍。在这篇综述中,我总结和讨论了 AD 的分子和细胞生物学的现有知识,以及 Aβ介导的神经退行性变的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aced/5638769/1931f7f4c7f1/molce-40-9-613f1.jpg

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