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Nrf-2 overexpression in mesenchymal stem cells reduces oxidative stress-induced apoptosis and cytotoxicity

机译:Nrf-2在间充质干细胞中的过表达减少氧化应激诱导的细胞凋亡和细胞毒性

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The most prominent capabilities of mesenchymal stem cells (MCSs) which make them promising for therapeutic applications are their capacity to endure and implant in the target tissue. However, the therapeutic applications of these cells are limited due to their early death within the first few days following transplantation. Therefore, to improve cell therapy efficacy, it is necessary to manipulate MSCs to resist severe stresses imposed by microenvironment. In this study, we manipulated MSCs to express a cytoprotective factor, nuclear factor erythroid-2 related factor 2 (Nrf2) to address this issue. Full-length human Nrf2 cDNA was isolated and TOPO cloned into TOPO cloning vector and then transferred to gateway adapted adenovirus expression vector by LR recombination reaction. Afterwards, the Nrf2 bearing recombinant virus was prepared in appropriate mammalian cell line and used to infect MSCs. The viability and apoptosis of the Nrf2 expressing MSCs were evaluated following hypoxic and oxidative stress conditions. Transient expression of Nrf2 by MSCs protected them against cell death and the apoptosis triggered by hypoxic and oxidative stress conditions. Nrf2 also enhanced the activity of SOD and HO-1. These findings could be used as a strategy for prevention of graft cell death in MSC-based cell therapy. It also indicates that management of cellular stress responses can be used for practical applications.
机译:间充质干细胞(MCSs)最突出的功能使其具有耐受性并能植入目标组织中,这使它们有望用于治疗领域。然而,由于这些细胞在移植后的最初几天之内过早死亡,因此其治疗应用受到限制。因此,为了提高细胞治疗功效,有必要操纵MSC以抵抗微环境施加的严重压力。在这项研究中,我们操纵MSC来表达一种细胞保护因子,核因子erythroid-2相关因子2(Nrf2)来解决这个问题。分离出全长的人Nrf2 cDNA,将TOPO克隆到TOPO克隆载体中,然后通过LR重组反应转移到适应网关的腺病毒表达载体中。之后,在合适的哺乳动物细胞系中制备携带Nrf2的重组病毒,并用于感染MSC。在缺氧和氧化应激条件下评估表达Nrf2的MSC的活力和凋亡。 MSCs的Nrf2瞬时表达可以保护它们免受细胞死亡以及低氧和氧化应激条件触发的细胞凋亡。 Nrf2还增强了SOD和HO-1的活性。这些发现可以用作基于MSC的细胞治疗中预防移植细胞死亡的策略。这也表明细胞应激反应的管理可用于实际应用。

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