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Microvesicles from brain-extract—treated mesenchymal stem cells improve neurological functions in a rat model of ischemic stroke

机译:经脑提取物处理的间充质干细胞的微泡可改善缺血性中风大鼠模型的神经功能

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摘要

Transplantation of mesenchymal stem cells (MSCs) was reported to improve functional outcomes in a rat model of ischemic stroke, and subsequent studies suggest that MSC-derived microvesicles (MVs) can replace the beneficial effects of MSCs. Here, we evaluated three different MSC-derived MVs, including MVs from untreated MSCs (MSC-MVs), MVs from MSCs treated with normal rat brain extract (NBE-MSC-MVs), and MVs from MSCs treated with stroke-injured rat brain extract (SBE-MSC-MVs), and tested their effects on ischemic brain injury induced by permanent middle cerebral artery occlusion (pMCAO) in rats. NBE-MSC-MVs and SBE-MSC-MVs had significantly greater efficacy than MSC-MVs for ameliorating ischemic brain injury with improved functional recovery. We found similar profiles of key signalling proteins in NBE-MSC-MVs and SBE-MSC-MVs, which account for their similar therapeutic efficacies. Immunohistochemical analyses suggest that brain-extract—treated MSC-MVs reduce inflammation, enhance angiogenesis, and increase endogenous neurogenesis in the rat brain. We performed mass spectrometry proteomic analyses and found that the total proteomes of brain-extract—treated MSC-MVs are highly enriched for known vesicular proteins. Notably, MSC-MV proteins upregulated by brain extracts tend to be modular for tissue repair pathways. We suggest that MSC-MV proteins stimulated by the brain microenvironment are paracrine effectors that enhance MSC therapy for stroke injury.
机译:据报道,间充质干细胞(MSCs)的移植改善缺血性中风大鼠模型的功能结果,随后的研究表明,MSC衍生的微囊泡(MVs)可以替代MSC的有益作用。在这里,我们评估了三种不同的MSC衍生的MV,包括未处理的MSC的MV(MSC-MV),正常大鼠脑提取物治疗的MSC的MV(NBE-MSC-MV)和中风损伤的大鼠脑处理的MSC的MV。提取物(SBE-MSC-MVs),并测试它们对大鼠永久性大脑中动脉阻塞(pMCAO)所致缺血性脑损伤的作用。 NBE-MSC-MV和SBE-MSC-MV在改善缺血性脑损伤和改善功能恢复方面比MSC-MV具有显着更大的功效。我们在NBE-MSC-MVs和SBE-MSC-MVs中发现了关键信号蛋白的相似特征,这说明了它们相似的治疗效果。免疫组织化学分析表明,经脑提取物处理的MSC-MV可减少大鼠脑部的炎症,增强血管生成并增加内源性神经发生。我们进行了质谱蛋白质组学分析,发现经脑提取物处理的MSC-MVs的总蛋白质组富含已知的囊泡蛋白。值得注意的是,被脑提取物上调的MSC-MV蛋白倾向于对组织修复途径具有模块化作用。我们建议,由大脑微环境刺激的MSC-MV蛋白是旁分泌效应子,可增强MSC治疗中风损伤的能力。

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