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首页> 外文期刊>Theranostics >Mesenchymal stem cell-derived exosomes as a nanotherapeutic agent for amelioration of inflammation-induced astrocyte alterations in mice
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Mesenchymal stem cell-derived exosomes as a nanotherapeutic agent for amelioration of inflammation-induced astrocyte alterations in mice

机译:间充质干细胞来源的外泌体作为纳米治疗剂,可改善小鼠炎症引起的星形胶质细胞改变

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Mesenchymal stem cell-derived exosomes (MSC-Exo) have robust anti-inflammatory effects in the treatment of neurological diseases such as epilepsy, stroke, or traumatic brain injury. While astrocytes are thought to be mediators of these effects, their precise role remains poorly understood. To address this issue, we investigated the putative therapeutic effects and mechanism of MSC-Exo on inflammation-induced alterations in astrocytes. Methods : Lipopolysaccharide (LPS)-stimulated hippocampal astrocytes in primary culture were treated with MSC-Exo, which were also administered in pilocarpine-induced status epilepticus (SE) mice. Exosomal integration, reactive astrogliosis, inflammatory responses, calcium signaling, and mitochondrial membrane potentials (MMP) were monitored. To experimentally probe the molecular mechanism of MSC-Exo actions on the inflammation-induced astrocytic activation, we inhibited the nuclear factor erythroid-derived 2, like 2 (Nrf2, a key mediator in neuroinflammation and oxidative stress) by sgRNA (in vitro) or ML385 (Nrf2 inhibitor) in vivo. Results : MSC-Exo were incorporated into hippocampal astrocytes as well as attenuated reactive astrogliosis and inflammatory responses in vitro and in vivo. Also, MSC-Exo ameliorated LPS-induced aberrant calcium signaling and mitochondrial dysfunction in culture, and SE-induced learning and memory impairments in mice. Furthermore, the putative therapeutic effects of MSC-Exo on inflammation-induced astrocytic activation (e.g., reduced reactive astrogliosis, NF-κB deactivation) were weakened by Nrf2 inhibition. Conclusions : Our results show that MSC-Exo ameliorate inflammation-induced astrocyte alterations and that the Nrf2-NF-κB signaling pathway is involved in regulating astrocyte activation in mice. These data suggest the promising potential of MSC-Exo as a nanotherapeutic agent for the treatment of neurological diseases with hippocampal astrocyte alterations.
机译:间充质干细胞来源的外来体(MSC-Exo)在治疗神经系统疾病(如癫痫,中风或脑外伤)中具有强大的抗炎作用。虽然星形胶质细胞被认为是这些作用的介质,但其确切作用仍知之甚少。为了解决这个问题,我们研究了MSC-Exo对星形胶质细胞炎症诱导的改变的假定治疗作用和机制。方法:用MSC-Exo处理原代培养物中脂多糖(LPS)刺激的海马星形胶质细胞,并在毛果芸香碱引起的癫痫持续状态(SE)小鼠中给予该药物。监测外体整合,反应性星形胶质细胞增生,炎症反应,钙信号传导和线粒体膜电位(MMP)。为了实验性地探索MSC-Exo作用于炎症诱导的星形细胞活化的分子机制,我们通过sgRNA(体外)抑制了核因子类红细胞衍生的2,如2(Nrf2,神经炎症和氧化应激的关键介质)或ML385(Nrf2抑制剂)在体内。结果:在体外和体内,将MSC-Exo掺入海马星形胶质细胞中,并减轻其反应性星形胶质细胞增生和炎症反应。另外,MSC-Exo改善了LPS诱导的钙信号异常和培养中线粒体功能障碍,以及SE诱导的小鼠学习和记忆障碍。此外,Nrf2抑制作用减弱了MSC-Exo对炎症诱导的星形胶质细胞活化的假定治疗作用(例如,减少的反应性星形胶质细胞增生,NF-κB失活)。结论:我们的结果表明,MSC-Exo改善了炎症诱导的星形胶质细胞改变,并且Nrf2-NF-κB信号通路参与了小鼠星形胶质细胞活化的调控。这些数据表明,MSC-Exo作为纳米治疗剂有望用于治疗海马星形胶质细胞改变的神经系统疾病。

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