首页> 外文期刊>Biomolecules >Administration of Enalapril Started Late in Life Attenuates Hypertrophy and Oxidative Stress Burden, Increases Mitochondrial Mass, and Modulates Mitochondrial Quality Control Signaling in the Rat Heart
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Administration of Enalapril Started Late in Life Attenuates Hypertrophy and Oxidative Stress Burden, Increases Mitochondrial Mass, and Modulates Mitochondrial Quality Control Signaling in the Rat Heart

机译:生命开始后期开始的依那普利给药可减轻大鼠心脏的肥大和氧化应激负担,增加线粒体质量,并调节线粒体质量控制信号

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Mitochondrial dysfunction is a relevant mechanism in cardiac aging. Here, we investigated the effects of late-life enalapril administration at a non-antihypertensive dose on mitochondrial genomic stability, oxidative damage, and mitochondrial quality control (MQC) signaling in the hearts of aged rats. The protein expression of selected mediators (i.e., mitochondrial antioxidant enzymes, energy metabolism, mitochondrial biogenesis, dynamics, and autophagy) was measured in old rats randomly assigned to receive enalapril ( n = 8) or placebo ( n = 8) from 24 to 27 months of age. We also assessed mitochondrial DNA (mtDNA) content, citrate synthase activity, oxidative lesions to protein and mtDNA (i.e., carbonyls and the abundance of mtDNA 4834 deletion), and the mitochondrial transcription factor A (TFAM) binding to specific mtDNA regions. Enalapril attenuated cardiac hypertrophy and oxidative stress-derived damage (mtDNA oxidation, mtDNA 4834 deletion, and protein carbonylation), while increasing mitochondrial antioxidant defenses. The binding of mitochondrial transcription factor A to mtDNA regions involved in replication and deletion generation was enhanced following enalapril administration. Increased mitochondrial mass as well as mitochondriogenesis and autophagy signaling were found in enalapril-treated rats. Late-life enalapril administration mitigates age-dependent cardiac hypertrophy and oxidative damage, while increasing mitochondrial mass and modulating MQC signaling. Further analyses are needed to conclusively establish whether enalapril may offer cardioprotection during aging.
机译:线粒体功能障碍是心脏衰老的一个相关机制。在这里,我们研究了在非降压剂量下服用依那普利的后期寿命对老年大鼠心脏中线粒体基因组稳定性,氧化损伤和线粒体质量控制(MQC)信号的影响。在24至27岁随机分配接受依那普利(n = 8)或安慰剂(n = 8)的老龄大鼠中,测量了选定介质的蛋白表达(即线粒体抗氧化酶,能量代谢,线粒体生物发生,动力学和自噬)。月龄。我们还评估了线粒体DNA(mtDNA)的含量,柠檬酸合酶活性,蛋白质和mtDNA的氧化损伤(即羰基和mtDNA 4834缺失的丰度),以及线粒体转录因子A(TFAM)与特定mtDNA区域的结合。依那普利可减轻心脏肥大和氧化应激衍生的损伤(mtDNA氧化,mtDNA 4834缺失和蛋白质羰基化),同时增加线粒体的抗氧化防御能力。依那普利给药后,线粒体转录因子A与参与复制和缺失产生的mtDNA区的结合增强。在依那普利治疗的大鼠中发现线粒体质量增加,线粒体发生和自噬信号转导。依那普利的后期给药减轻了年龄依赖性心脏肥大和氧化损伤,同时增加了线粒体质量并调节了MQC信号传导。需要进一步分析以最终确定依那普利在衰老过程中是否可以提供心脏保护作用。

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