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Impaired Mitochondrial Function Results from Oxidative Stress in the Full-Term Placenta of Sows with Excessive Back-Fat

机译:受损的线粒体功能受到氧化胁迫在母猪的全术胎盘中具有过多的背部脂肪

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The aim of this study was to determine the effect of excessive back-fat (BF) of sows on placental oxidative stress, ATP generation, mitochondrial alterations in content and structure, and mitochondrial function in isolated trophoblasts. Placental tissue was collected by vaginal delivery from BFI (15–20 mm, n = 10) and BFII (21–27 mm, n = 10) sows formed according to BF at mating. Our results demonstrated that excessive back-fat contributed to augmented oxidative stress in term placenta, as evidenced by excessive production of ROS, elevated protein carbonylation, and reduced SOD, GSH-PX, and CAT activities ( p 0.05). Indicative of mitochondrial dysfunction, reduced mitochondrial respiration in cultured trophoblasts was linked to decreased ATP generation, lower mitochondrial Complex I activity and reduced expression of electron transport chain subunits in placenta of BFII sows ( p 0.05). Meanwhile, we observed negative alterations in mitochondrial biogenesis and structure in the placenta from BFII group ( p 0.05). Finally, our in vitro studies showed lipid-induced ROS production resulted in mitochondrial alterations in trophoblasts, and these effects were blocked by antioxidant treatment. Together, these data reveal that excessive back-fat aggravates mitochondrial injury induced by increased oxidative stress in pig term placenta, which may have detrimental consequences on placental function and therefore impaired fetal growth and development.
机译:该研究的目的是确定母猪过度背脂(BF)对胎盘氧化应激,ATP的影响,ATP在含量和结构的线粒体改变以及分离的滋养细胞中的线粒体功能。通过来自BFI(15-20mm,N = 10)的阴道递送来收集胎盘组织,并根据配合的BF形成的BFII(21-27mm,N = 10)筛。我们的结果表明,过量的背部脂肪导致胎盘术语增强氧化应激,如过量生产ROS,升高的蛋白质羰基化和SOD,GSH-PX和猫活动的过度生产所证明的(P <0.05)。表示线粒体功能障碍,培养的滋养细胞中的减少的线粒体呼吸与降低的ATP生成,低线粒体复合物I活性和胎儿胎儿胎盘中的电子传输链亚基的表达降低(P <0.05)。同时,我们观察了BFII组胎盘中线粒体生物发生和结构的阴性改变(P <0.05)。最后,我们的体外研究表明脂质诱导的ROS生产导致滋养管中的线粒体改变,并且通过抗氧化处理阻断这些效果。这些数据揭示了过量的背脂加重通过增加猪术胎盘增加的氧化胁迫引起的线粒体损伤,这可能对胎盘功能有不利后果,因此受损胎儿生长和发育受损。

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