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Lipocalin 2 decreases senescence of bone marrow-derived mesenchymal stem cells under sub-lethal doses of oxidative stress

机译:亚致死因子2在亚致死剂量的氧化应激下降低骨髓源性间充质干细胞的衰老

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The regenerative potential of mesenchymal stem cells (MSCs) is impaired by cellular senescence, a multi factorial process that has various functions. However, pathways and molecules involved in senescence have not been fully identified. Lipocalin 2 (Lcn2) has been the subject of intensive research, due to its contribution to many physiological and pathophysiological conditions. The implication of Lcn2 has been reported in many conditions where senescence also occurs. In the present study, we evaluated the role of Lcn2 in the occurrence of senescence in human bone marrow-derived mesenchymal stem cells (hB-MSCs) under oxidative conditions. When hB-MSCs were genetically engineered to over-express Lcn2 (MSC-Lcn2) and exposed to H2O2, the proliferation rate of the cells increased. However, the number of colonies and the number of cells that made up each colony in both MSC-V and MSC-Lcn2 cells decreased compared to those cultivated under normal conditions. Our results revealed that over-expression of recombinant Lcn2 in hB-MSCs decreases senescence induced by H2O2 treatment. Senescent cells were observed in aged hB-MSCs; however, no alteration in the expression level of Lcn2 was detected compared to earlier passages. Finally, a higher amount of Lcn2 protein was detected in the plasma of the elderly than in young people. Our findings suggest that Lcn2 might restore the health and regeneration potential of MSCs by decreasing senescence.
机译:间充质干细胞(MSC)的再生潜力受到细胞衰老的损害,细胞衰老是一种具有多种功能的多因子过程。然而,尚未完全鉴定出参与衰老的途径和分子。脂蛋白2(Lcn2)由于其对许多生理和病理生理状况的贡献而已成为深入研究的主题。在许多也发生衰老的情况下,已经报道了Lcn2的含义。在本研究中,我们评估了Lcn2在氧化条件下人骨髓源间充质干细胞(hB-MSCs)衰老发生中的作用。当hB-MSC经过基因工程改造以过表达Lcn2(MSC-Lcn2)并暴露于H2O2时,细胞的增殖速率增加。但是,与正常条件下培养的细胞相比,MSC-V和MSC-Lcn2细胞中的菌落数量和组成每个菌落的细胞数量都减少了。我们的结果表明,重组Lcn2在hB-MSC中的过表达降低了H2O2处理诱导的衰老。在衰老的hB-MSC中观察到衰老细胞。然而,与早期传代相比,没有检测到Lcn2表达水平的改变。最后,与年轻人相比,老年人血浆中检测到的Lcn2蛋白含量更高。我们的发现表明Lcn2可能通过减少衰老来恢复MSC的健康和再生潜力。

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