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首页> 外文期刊>Cell death & disease. >Hypoxia preconditioning promotes bone marrow mesenchymal stem cells survival by inducing HIF-1α in injured neuronal cells derived exosomes culture system
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Hypoxia preconditioning promotes bone marrow mesenchymal stem cells survival by inducing HIF-1α in injured neuronal cells derived exosomes culture system

机译:缺氧预处理通过诱导受损神经元细胞外来体培养系统中的HIF-1α促进骨髓间充质干细胞存活

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摘要

Bone marrow derived stem cells (BMSCs) transplantation are viewed as a promising therapeutic candidate for spinal cord injury (SCI). However, the inflammatory microenvironment in the spinal cord following SCI limits the survival and efficacy of transplanted BMSCs. In this study, we investigate whether injured neuronal cells derived exosomes would influence the survival of transplanted BMSCs after SCI. In order to mimic the microenvironment in SCI that the neuronal cells or transplanted BMSCs suffer in vivo, PC12 cells conditioned medium and PC12 cell’s exosomes collected from H2O2-treated PC12 cell’s culture medium were cultured with BMSCs under oxidative stress in vitro. PC12 cells conditioned medium and PC12 cell’s exosomes significantly accelerated the apoptosis of BMSCs induced by H2O2. Moreover, the cleaved caspase-3, cytochrome (Cyt) C, lactate dehydrogenase (LDH) releases, and apoptotic percentage were increased, and the ratio of Bcl-2/Bax and cell viability were decreased. Inhibition of exosome secretion via Rab27a small interfering RNA prevented BMSCs apoptosis in vitro. In addition, hypoxia-preconditioned promoted the survival of BMSCs under oxidative stress both in vivo after SCI and in vitro. Our results also indicate that HIF-1α plays a central role in the survival of BMSCs in hypoxia pretreatment under oxidative stress conditions. siRNA-HIF-1α increased apoptosis of BMSCs; in contrast, HIF-1α inducer FG-4592 attenuated apoptosis of BMSCs. Taken together, we found that the injured PC12 cells derived exosomes accelerate BMSCs apoptosis after SCI and in vitro, hypoxia pretreatment or activating expression of HIF-1α to be important in the survival of BMSCs after transplantation, which provides a foundation for application of BMSCs in therapeutic potential for SCI.
机译:骨髓源性干细胞(BMSC)移植被视为脊髓损伤(SCI)的有希望的治疗候选药物。但是,脊髓损伤后脊髓中的炎性微环境限制了移植的骨髓间充质干细胞的存活和效力。在这项研究中,我们调查了受损的神经元细胞外来体是否会影响SCI后移植的BMSC的存活。为了模拟SCI中神经元细胞或移植的BMSC在体内遭受的微环境,将B12s在H2O2处理过的PC12细胞的培养基中收集的PC12细胞条件培养基和PC12细胞的外泌体在氧化应激下与BMSCs进行体外培养。 PC12细胞条件培养基和PC12细胞的外来体显着加速了H2O2诱导的BMSC的凋亡。此外,裂解的caspase-3,细胞色素(Cyt)C,乳酸脱氢酶(LDH)的释放和凋亡百分数增加,Bcl-2 / Bax的比例和细胞活力降低。通过Rab27a小干扰RNA抑制外泌体分泌可阻止BMSCs在体外凋亡。此外,缺氧预处理促进了SCI后体内和体外在氧化应激下BMSC的存活。我们的结果还表明,HIF-1α在氧化应激条件下低氧预处理的BMSCs存活中起着核心作用。 siRNA-HIF-1α增加BMSCs的凋亡;相反,HIF-1α诱导剂FG-4592减弱了BMSCs的凋亡。综上所述,我们发现损伤的PC12细胞衍生的外泌体在SCI和体外后加速BMSCs的细胞凋亡,缺氧预处理或激活HIF-1α的表达对于移植后BMSCs的存活很重要,这为BMSCs的应用提供了基础。 SCI的治疗潜力。

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