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首页> 外文期刊>Frontiers in Cell and Developmental Biology >Sirt3 Attenuates Oxidative Stress Damage and Rescues Cellular Senescence in Rat Bone Marrow Mesenchymal Stem Cells by Targeting Superoxide Dismutase 2
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Sirt3 Attenuates Oxidative Stress Damage and Rescues Cellular Senescence in Rat Bone Marrow Mesenchymal Stem Cells by Targeting Superoxide Dismutase 2

机译:SIRT3通过靶向超氧化物歧化酶2诱导大鼠骨髓间充质干细胞中的氧化应激损伤并抢救细胞衰老

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Oxidative stress is one of the main causes of aging. The process of physiological aging is always accompanied by increased levels of endogenous oxidative stress. Exogenous oxidants have contributed to premature cellular senescence. As a deacetylase located in mitochondrial matrix, Sirt3 plays critical roles in mitochondrial energy metabolism, oxidative stress regulation and cellular senescence. However, it remains unknown whether Sirt3 exerts the analogous role in cellular senescence caused by two different oxidation pathways. In this study, the function of Sirt3 was investigated in age-related natural senescence and H2O2-induced premature senescence of rat bone marrow mesenchymal stem cells (MSCs). Our results showed that Sirt3 expression was significantly decreased in both senescent MSCs, which was concerned with reduced cellular reactive oxygen species (ROS) and aggravated DNA injury. Sirt3 repletion could partly reverse the senescence-associated phenotypic features in natural and premature senescent MSCs. Moreover, Sirt3 replenishment led to the reduction in the levels of cellular ROS by enhancing the expression and activity of superoxide dismutase 2 (SOD2), thus maintaining the balance of intracellular oxidation and antioxidation, and ameliorating oxidative stress damage. Altogether, Sirt3 inhibits MSC natural senescence and H2O2-induced premature senescence through alleviating ROS-induced injury and upregulating SOD2 expression and activity. Our research indicates that Sirt3 might contribute to uncovering the novel mechanisms underlying MSC senescence and provide new insights to aging and oxidative stress-related diseases.
机译:氧化应激是老化的主要原因之一。生理老化的过程总是伴随着内源性氧化应激的增加。外源氧化剂有助于过早细胞衰老。作为位于线粒体基质的脱乙酰酶,SIRT3在线粒体能量代谢,氧化应激调节和细胞衰老中起重要作用。然而,它仍然未知SIRT3是否在两种不同氧化途径引起的细胞衰老中施加类似的作用。在这项研究中,SIRT3的功能在与年龄相关的自然衰老和H2O2诱导的大鼠骨髓间充质干细胞(MSCs)的过早衰老中进行了研究。我们的研究结果表明,衰老MSCs的SIRT3表达显着降低,所述衰老MSC涉及细胞反应性氧物质(ROS)和加重DNA损伤。 SIRT3 Repletion可以部分逆转天然和过早的衰老MSC中的衰老相关的表型特征。此外,通过增强超氧化物歧化酶2(SOD2)的表达和活性,SIRT3补充导致细胞RO的水平降低,从而保持细胞内氧化和抗氧化的平衡,并改善氧化应激损伤。共用SIRT3通过减轻ROS诱导的损伤和上调SOD2表达和活性来抑制MSC天然衰老和H2O2诱导的过早衰老。我们的研究表明,SIRT3可能有助于揭示MSC衰老的新机制,并为老化和氧化应激相关疾病提供新的见解。

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