Human iPSC-derived astrocytes from ALS patients with mutated C9ORF72 show increased oxidative stress and neurotoxicity

患有 C9ORF72 突变的 ALS 患者的人类 iPSC 衍生星形胶质细胞表现出氧化应激和神经毒性增加

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作者:Anastasya Birger, Israel Ben-Dor, Miri Ottolenghi, Tikva Turetsky, Yaniv Gil, Sahar Sweetat, Liat Perez, Vitali Belzer, Natania Casden, Debora Steiner, Michal Izrael, Eithan Galun, Eva Feldman, Oded Behar, Benjamin Reubinoff

Background

Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disease that affects motor neurons (MNs). It was shown that human astrocytes with mutations in genes associated with ALS, like C9orf72 (C9) or SOD1, reduce survival of MNs. Astrocyte toxicity may be related to their dysfunction or the release of neurotoxic factors.

Methods

We used human induced pluripotent stem cell-derived astrocytes from ALS patients carrying C9orf72 mutations and non-affected donors. We utilized these cells to investigate astrocytic induced neuronal toxicity, changes in astrocyte transcription profile as well as changes in secretome profiles. Findings: We report that C9-mutated astrocytes are toxic to MNs via soluble factors. The toxic effects of astrocytes are positively correlated with the length of astrocyte propagation in culture, consistent with the age-related nature of ALS. We show that C9-mutated astrocytes downregulate the secretion of several antioxidant proteins. In line with these findings, we show increased astrocytic oxidative stress and senescence. Importantly, media conditioned by C9-astrocytes increased oxidative stress in wild type MNs. Interpretation: Our

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