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Rescue of degenerating neurons and cells by stem cell released molecules: using a physiological renormalization strategy

机译:通过干细胞释放的分子拯救退化的神经元和细胞:使用生理重归化策略

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摘要

Evidence suggests that adult stem cell types and progenitor cells act collectively in a given tissue to maintain and heal organs, such as muscle, through a release of a multitude of molecules packaged into exosomes from the different cell types. Using this principle for the development of bioinspired therapeutics that induces homeostatic renormalization, here we show that the collection of molecules released from four cell types, including mesenchymal stem cells, fibroblast, neural stem cells, and astrocytes, rescues degenerating neurons and cells. Specifically, oxidative stress induced in a human recombinant TDP‐43‐ or FUS‐tGFP U2OS cell line by exposure to sodium arsenite was shown to be significantly reduced by our collection of molecules using in vitro imaging of FUS and TDP‐43 stress granules. Furthermore, we also show that the collective secretome rescues cortical neurons from glutamate toxicity as evidenced by increased neurite outgrowth, reduced LDH release, and reduced caspase 3/7 activity. These data are the first in a series supporting the development of stem cell‐based exosome systems therapeutics that uses a physiological renormalization strategy to treat neurodegenerative diseases.
机译:有证据表明,成年干细胞类型和祖细胞在给定的组织中共同发挥作用,通过释放包装在外来体中的多种分子从不同的细胞类型中维持和治愈器官,例如肌肉。使用这一原理开发诱导稳态重新正常化的生物启发疗法,我们在这里显示了从包括间充质干细胞,成纤维细胞,神经干细胞和星形胶质细胞在内的四种细胞类型释放的分子的集合,可以挽救退化的神经元和细胞。具体而言,我们通过对FUS和TDP-43应激颗粒进行体外成像而收集的分子显示,通过暴露于亚砷酸钠,在人类重组TDP-43-或FUS-tGFP U2OS细胞系中诱导的氧化应激显着降低。此外,我们还显示,集体分泌物组可从谷氨酸毒性中拯救皮质神经元,如增加的神经突向外生长,减少的LDH释放和减少的caspase 3/7活性所证明的。这些数据是支持开发基于干细胞的外泌体系统疗法的系列文章中的第一篇,该疗法使用生理学重归化策略来治疗神经退行性疾病。

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