Department of Orthopedics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China (mainland).
Med Sci Monit. 2019 Jul 29;25:5613-5620. doi: 10.12659/MSM.914011.
BACKGROUND The number of patients with spinal cord injury caused by motor vehicle accidents, violent injuries, and other types of trauma increases year by year, and bone marrow mesenchymal stem cell (BMSC) transplants are being widely investigated to treat this condition. However, the success rate of BMSCs transplants is relatively low due to the presence of oxidative stress in the new microenvironment. Our main goals in the present study were to evaluate the damaging effects of H₂O₂ on BMSCs and to develop a model of "stemness loss" using rat BMSCs. MATERIAL AND METHODS Bone marrow-derived mesenchymal stem cells were obtained from the bone marrow of young rats reared under sterile conditions. The stem cells were used after 2 passages following phenotypic identification. BMSCs were divided into 4 groups to evaluate the damaging effects of H₂O₂: A. blank control; B. 100 uM H₂O₂; C. 200 uM H₂O₂ and D. 300 uM H₂O₂. The ability of the BMSCs to differentiate into 3 cell lineages and their colony formation and migration capacities were analyzed by gene expression, colony formation, and scratch assays. RESULTS The cells we obtained complied with international stem cell standards demonstrated by their ability to differentiate into 3 cell lineages. We found that 200-300 uM H₂O₂ had a significant effect on the biological behavior of BMSCs, including their ability to differentiate into 3 cell lineages, the expression of stemness-related proteins, and their migration and colony formation capacities. CONCLUSIONS H₂O₂ can damage the stemness ability of BMSCs at a concentration of 200-300 uM.
由于交通事故、暴力伤害和其他类型的创伤导致的脊髓损伤患者数量逐年增加,骨髓间充质干细胞(BMSC)移植被广泛研究用于治疗这种疾病。然而,由于新微环境中存在氧化应激,BMSC 移植的成功率相对较低。在本研究中,我们的主要目标是评估 H₂O₂对 BMSC 的损伤作用,并使用大鼠 BMSC 建立“干性丧失”模型。
从在无菌条件下饲养的年轻大鼠的骨髓中获得骨髓源性间充质干细胞。在表型鉴定后,经过 2 个传代后使用这些干细胞。将 BMSC 分为 4 组,以评估 H₂O₂的损伤作用:A.空白对照;B.100uM H₂O₂;C.200uM H₂O₂和 D.300uM H₂O₂。通过基因表达、集落形成和划痕实验分析 BMSC 分化为 3 种细胞谱系的能力以及集落形成和迁移能力。
我们获得的细胞符合国际干细胞标准,能够分化为 3 种细胞谱系。我们发现 200-300uM H₂O₂对 BMSC 的生物学行为有显著影响,包括分化为 3 种细胞谱系的能力、干性相关蛋白的表达以及迁移和集落形成能力。
200-300uM 的 H₂O₂可以损伤 BMSC 的干性能力。