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首页> 外文期刊>Stem Cell Research & Therapy >Human decidua basalis mesenchymal stem/stromal cells protect endothelial cell functions from oxidative stress induced by hydrogen peroxide and monocytes
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Human decidua basalis mesenchymal stem/stromal cells protect endothelial cell functions from oxidative stress induced by hydrogen peroxide and monocytes

机译:人类DeCidua Basalis间充质茎/基质细胞保护内皮细胞官能团来自过氧化氢和单核细胞诱导的氧化应激

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Human decidua basalis mesenchymal stem/multipotent stromal cells (DBMSCs) inhibit endothelial cell activation by inflammation induced by monocytes. This property makes them a promising candidate for cell-based therapy to treat inflammatory diseases, such as atherosclerosis. This study was performed to examine the ability of DBMSCs to protect endothelial cell functions from the damaging effects resulting from exposure to oxidatively stress environment induced by H2O2 and monocytes. DBMSCs were co-cultured with endothelial cells isolated from human umbilical cord veins in the presence of H2O2 and monocytes, and various functions of endothelial cell were then determined. The effect of DBMSCs on monocyte adhesion to endothelial cells in the presence of H2O2 was also examined. In addition, the effect of DBMSCs on HUVEC gene expression under the influence of H2O2 was also determined. DBMSCs reversed the effect of H2O2 on endothelial cell functions. In addition, DBMSCs reduced monocyte adhesion to endothelial cells and also reduced the stimulatory effect of monocytes on endothelial cell proliferation in the presence of H2O2. Moreover, DBMSCs modified the expression of many genes mediating important endothelial cell functions. Finally, DBMSCs increased the activities of glutathione and thioredoxin reductases in H2O2-treated endothelial cells. We conclude that DBMSCs have potential for therapeutic application in inflammatory diseases, such as atherosclerosis by protecting endothelial cells from oxidative stress damage. However, more studies are needed to elucidate this further.
机译:人类蜕膜Basalis间充质茎/多能基质细胞(DBMSCs)通过单核细胞诱导的炎症抑制内皮细胞活化。这家属性使其成为细胞疗法的有希望的候选者,以治疗炎症性疾病,例如动脉粥样硬化。进行该研究以检查DBMSCs保护内皮细胞功能免受由H 2 O 2和单核细胞诱导的氧化应激环境产生的破坏性效果保护内皮细胞功能。将DBMSCS与在H 2 O 2和单核细胞存在下的人脐带静脉中分离的内皮细胞共培养,然后测定内皮细胞的各种功能。还检查了DBMSCs对在H 2 O 2存在下对内皮细胞的单核细胞粘附的影响。此外,还测定了DBMSCs对H 2 O 2影响下Huvec基因表达的影响。 DBMSCs逆转H2O2对内皮细胞功能的影响。此外,DBMSCs对内皮细胞的单核细胞粘附降低,并且还降低了单核细胞在H 2 O 2存在下对内皮细胞增殖的刺激作用。此外,DBMSCS修饰了介导重要内皮细胞功能的许多基因的表达。最后,DBMSCs在H2O2处理的内皮细胞中增加了谷胱甘肽和硫辛还原酶的活性。我们得出结论,DBMSCS具有在炎性疾病中治疗施用的可能性,例如通过保护内皮细胞免受氧化应激损伤的内皮细胞。但是,需要更多的研究来进一步阐明。

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