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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Coenzyme Q10 Regulation of Apoptosis and Oxidative Stress in H2O2 Induced BMSC Death by Modulating the Nrf-2/NQO-1 Signaling Pathway and Its Application in a Model of Spinal Cord Injury
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Coenzyme Q10 Regulation of Apoptosis and Oxidative Stress in H2O2 Induced BMSC Death by Modulating the Nrf-2/NQO-1 Signaling Pathway and Its Application in a Model of Spinal Cord Injury

机译:通过调节NRF-2 / NQO-1信号通路及其在脊髓损伤模型中的肝细胞诱导BMSC死亡中凋亡和氧化胁迫的调节及其在脊髓损伤模型中的应用

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Spinal cord injury (SCI) has always been considered to be a devastating problem that results in catastrophic dysfunction, high disability rate, low mortality rate, and huge cost for the patient. Stem cell-based therapy, especially using bone marrow mesenchymal stem cells (BMSCs), is a promising strategy for the treatment of SCI. However, SCI results in low rates of cell survival and a poor microenvironment, which limits the therapeutic efficiency of BMSC transplantation. Coenzyme Q10 (CoQ10) is known as a powerful antioxidant, which inhibits lipid peroxidation and scavenges free radicals, and its combined effect with BMSC transplantation has been shown to have a powerful impact on protecting the vitality of cells, as well as antioxidant and antiapoptotic compounds in SCI. Therefore, we aimed to evaluate whether CoQ10 could decrease oxidative stress against the apoptosis of BMSCs in vitro and explored its molecular mechanisms. Furthermore, we investigated the protective effect of CoQ10 combined with BMSCs transplanted into a SCI model to verify its ability. Our results demonstrate that CoQ10 treatment significantly decreases the expression of the proapoptotic proteins Bax and Caspase-3, as shown through TUNEL-positive staining and the products of oxidative stress (ROS), while increasing the expression of the antiapoptotic protein Bcl-2 and the products of antioxidation, such as glutathione (GSH), against apoptosis and oxidative stress, in a H2O2-induced model. We also identified consistent results from the CoQ10 treatment of BMSCs transplanted into SCI rats in vivo. Moreover, the Nrf-2 signaling pathway was also investigated in order to detail its molecular mechanism, and the results show that it plays an important role, both in vitro and in vivo. Thus, CoQ10 exerts an antiapoptotic and antioxidant effect, as well as improves the microenvironment in vitro and in vivo. It may also protect BMSCs from oxidative stress and enhance their therapeutic efficiency when transplanted for SCI treatment.
机译:脊髓损伤(SCI)一直被认为是一种毁灭性问题,导致灾难性功能障碍,高残疾率,低死亡率和患者的巨额费用。干细胞的疗法,特别是使用骨髓间充质干细胞(BMSC),是治疗SCI的有希望的策略。然而,SCI导致细胞存活率的低率和差的微环境,这限制了BMSC移植的治疗效率。辅酶Q10(CoQ10)被称为强大的抗氧化剂,其抑制脂质过氧化和清除自由基,并且其与BMSC移植的组合效果已被证明对保护细胞活力的强烈影响,以及抗氧化剂和抗浸润化合物在SCI。因此,我们旨在评估CoQ10是否可以减少氧化胁迫对BMSCs的凋亡并探讨其分子机制。此外,我们研究了CAQ10结合移植到SCI模型中的BMSC的保护作用以验证其能力。我们的结果表明,CoQ10治疗显着降低了促凋亡蛋白Bax和Caspase-3的表达,如Tunel阳性染色和氧化应激产品(ROS)所示,同时增加了抗透露蛋白Bcl-2的表达和抗氧化产品,如谷胱甘肽(GSH),抗细胞凋亡和氧化应激,在H2O2诱导的模型中。我们还确定了来自将BMSC的CoQ10治疗移植到体内SCI大鼠中的一致结果。此外,还研究了NRF-2信号传导途径,以便详细说明其分子机制,结果表明它在体外和体内起着重要作用。因此,CoQ10施加抗污染物和抗氧化效果,以及在体外和体内改善微环境。它还可以保护BMSCs免受氧化应激,并在移植SCI处理时提高其治疗效率。

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