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Synaptic mitochondrial pathology in Alzheimer's disease

机译:阿尔茨海默氏病的突触线粒体病理

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Significance: Synaptic degeneration, an early pathological feature in Alzheimer's disease (AD), is closely correlated to impaired cognitive function and memory loss. Recent studies suggest that involvement of amyloid-beta peptide (Aβ) in synaptic mitochondrial alteration underlies these synaptic lesions. Thus, to understand the Aβ-associated synaptic mitochondrial perturbations would fortify our understanding of synaptic stress in the pathogenesis of AD. Recent Advances: Increasing evidence suggests that synaptic mitochondrial dysfunction is strongly associated with synaptic failure in many neurodegenerative diseases including AD. Based on recent findings in human AD subjects, AD animal models, and AD cellular models, synaptic mitochondria undergo multiple malfunctions including Aβ accumulation, increased oxidative stress, decreased respiration, and compromised calcium handling capacity, all of which occur earlier than changes seen in nonsynaptic mitochondria before predominant AD pathology. Of note, the impact of Aβ on mitochondrial motility and dynamics exacerbates synaptic mitochondrial alterations. Critical Issues: Synaptic mitochondria demonstrate early deficits in AD; in combination with the role that synaptic mitochondria play in sustaining synaptic functions, deficits in synaptic mitochondria may be a key factor involved in an early synaptic pathology in AD. Future Directions: The importance of synaptic mitochondria in supporting synapses and the high vulnerability of synaptic mitochondria to Aβ make them a promising target of new therapeutic strategy for AD.
机译:启示:突触变性是阿尔茨海默氏病(AD)的早期病理特征,与认知功能受损和记忆力丧失密切相关。最近的研究表明,淀粉样β肽(Aβ)参与突触线粒体改变是这些突触损伤的基础。因此,了解Aβ相关的突触线粒体摄动将加强我们对AD发病机理中突触应激的理解。最新进展:越来越多的证据表明,在包括AD在内的许多神经退行性疾病中,突触线粒体功能障碍与突触衰竭密切相关。根据人类AD受试者,AD动物模型和AD细胞模型的最新发现,突触线粒体经历了多种功能障碍,包括Aβ积累,氧化应激增加,呼吸作用降低和钙处理能力下降,所有这些发生都比非突触发生的变化更早发生。线粒体在主要AD病理之前。值得注意的是,Aβ对线粒体运动和动力学的影响加剧了突触线粒体的变化。关键问题:突触线粒体表现出AD早期缺陷。结合突触线粒体在维持突触功能中的作用,突触线粒体的缺陷可能是AD早期突触病理学的关键因素。未来方向:突触线粒体在支持突触中的重要性以及突触线粒体对Aβ的高度脆弱性使它们成为AD治疗新策略的有希望的靶标。

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