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由iPSC衍生的星形胶质细胞中Aβ寡聚体和PSEN1突变诱导的代谢功能改变。

Altered metabolic function induced by Aβ-oligomers and PSEN1 mutations in iPSC-derived astrocytes.

作者信息

Elsworthy Richard J, Finelli Mattea J, Aqattan Sarah, Dunleavy Connor, King Marianne, Ludlam Adele, Tarczyluk Marta A, Allen Sophie L, Prosser Sophie, Chen Rui, Jarquin Sandra Martinez, Kim Dong H, Brown James, Parri H R, Aldred Sarah, Hill Eric J

机构信息

School of Sport, Exercise and Rehabilitation Sciences, College of Life and Environmental Sciences, University of Birmingham, Birmingham, UK.

Biodiscovery Institute, University of Nottingham, School of Medicine, University Park Nottingham NG7 2RD, Nottingham, UK.

出版信息

J Neurochem. 2025 Jan;169(1):e16267. doi: 10.1111/jnc.16267.

Abstract

Altered energy metabolism in Alzheimer's disease (AD) is a major pathological hallmark implicated in the early stages of the disease process. Astrocytes play a central role in brain homeostasis and are implicated in multiple neurodegenerative diseases. Although numerous studies have investigated global changes in brain metabolism, redox status, gene expression and epigenetic markers in AD, the intricate interplay between different metabolic processes, particularly in astrocytes, remains poorly understood. Numerous studies have implicated amyloid-β and the amyloid-β precursor in the development and progression of AD. To determine the effects of amyloid-β peptides or the impact of amyloid-β precursor protein processing on astrocyte metabolism, we differentiated astrocytes from induced pluripotent stem cells derived from people with early onset familial AD and controls. This study demonstrates that familial AD-derived astrocytes exhibit significantly more changes in their metabolism including glucose uptake, glutamate uptake and lactate release, with increases in oxidative and glycolytic metabolism compared to acute amyloid-β exposure. In addition to changes in major metabolic pathways including glutamate, purine and arginine metabolism and the citric acid cycle, we demonstrate evidence of gliosis in familial AD astrocytes highlighting a potential pathological hallmark. This suggests that chronic alterations in metabolism may occur very early in the disease process and present significant risk factors for disease progression for patients with early onset AD. These findings may also reveal important drivers of disease in late onset dementia and highlights key targets for potential diagnostic features and therapeutic agents in the future.

摘要

阿尔茨海默病(AD)中能量代谢的改变是该疾病进程早期涉及的一个主要病理标志。星形胶质细胞在脑内稳态中起核心作用,并与多种神经退行性疾病有关。尽管众多研究已经调查了AD患者脑代谢、氧化还原状态、基因表达和表观遗传标志物的整体变化,但不同代谢过程之间复杂的相互作用,尤其是星形胶质细胞中的相互作用,仍知之甚少。众多研究已表明淀粉样β蛋白及淀粉样β前体蛋白与AD的发生和发展有关。为了确定淀粉样β肽的作用或淀粉样β前体蛋白加工过程对星形胶质细胞代谢的影响,我们从早发性家族性AD患者和对照者来源的诱导多能干细胞中分化出星形胶质细胞。这项研究表明,与急性淀粉样β暴露相比,家族性AD来源的星形胶质细胞在其代谢方面表现出显著更多的变化,包括葡萄糖摄取、谷氨酸摄取和乳酸释放,氧化代谢和糖酵解代谢增加。除了包括谷氨酸、嘌呤和精氨酸代谢以及柠檬酸循环在内的主要代谢途径发生变化外,我们还证明了家族性AD星形胶质细胞中有神经胶质增生的证据,突出了一个潜在的病理标志。这表明代谢的慢性改变可能在疾病进程的很早阶段就会发生,并给早发性AD患者的疾病进展带来重大风险因素。这些发现也可能揭示晚发性痴呆中疾病的重要驱动因素,并突出未来潜在诊断特征和治疗药物的关键靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db91/11655965/eada624fda79/JNC-169-0-g009.jpg

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