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线粒体抗氧化保护对抗由早期发作的妊娠期缺氧引起的心血管功能障碍。

Mitochondria antioxidant protection against cardiovascular dysfunction programmed by early-onset gestational hypoxia.

机构信息

Department of Physiology, Development and Neuroscience, University of Cambridge, Cambridge, UK.

Cambridge Cardiovascular Strategic Research Initiative, Cambridge, UK.

出版信息

FASEB J. 2021 May;35(5):e21446. doi: 10.1096/fj.202002705R.

Abstract

Mitochondria-derived oxidative stress during fetal development increases cardiovascular risk in adult offspring of pregnancies complicated by chronic fetal hypoxia. We investigated the efficacy of the mitochondria-targeted antioxidant MitoQ in preventing cardiovascular dysfunction in adult rat offspring exposed to gestational hypoxia, integrating functional experiments in vivo, with those at the isolated organ and molecular levels. Rats were randomized to normoxic or hypoxic (13%-14% O ) pregnancy ± MitoQ (500 μM day ) in the maternal drinking water. At 4 months of age, one cohort of male offspring was chronically instrumented with vascular catheters and flow probes to test in vivo cardiovascular function. In a second cohort, the heart was isolated and mounted onto a Langendorff preparation. To establish mechanisms linking gestational hypoxia with cardiovascular dysfunction and protection by MitoQ, we quantified the expression of antioxidant system, β-adrenergic signaling, and calcium handling genes in the fetus and adult, in frozen tissues from a third cohort. Maternal MitoQ in hypoxic pregnancy protected offspring against increased α -adrenergic reactivity of the cardiovascular system, enhanced reactive hyperemia in peripheral vascular beds, and sympathetic dominance, hypercontractility and diastolic dysfunction in the heart. Inhibition of Nfe2l2-mediated oxidative stress in the fetal heart and preservation of calcium regulatory responses in the hearts of fetal and adult offspring link molecular mechanisms to the protective actions of MitoQ treatment of hypoxic pregnancy. Therefore, these data show the efficacy of MitoQ in buffering mitochondrial stress through NADPH-induced oxidative damage and the prevention of programmed cardiovascular disease in adult offspring of hypoxic pregnancy.

摘要

在胎儿发育过程中,线粒体产生的氧化应激会增加慢性胎儿缺氧妊娠的成年后代的心血管风险。我们研究了靶向线粒体的抗氧化剂 MitoQ 在预防暴露于妊娠期缺氧的成年大鼠后代心血管功能障碍方面的疗效,将体内功能实验与分离器官和分子水平的实验相结合。大鼠被随机分为常氧或低氧(13%-14% O )妊娠组,并在母体饮水中给予 MitoQ(500 μM/天)。在 4 个月大时,一组雄性后代被慢性植入血管导管和流量探针以测试体内心血管功能。在第二组中,心脏被分离并安装在 Langendorff 制剂上。为了确定与妊娠期缺氧相关的机制以及 MitoQ 对心血管功能障碍的保护作用,我们在第三组冷冻组织中定量了胎儿和成年期抗氧化系统、β-肾上腺素能信号和钙处理基因的表达。在低氧妊娠中,母体 MitoQ 可保护后代免受心血管系统 α -肾上腺素能反应性增加、外周血管床反应性充血增强以及心脏交感神经优势、高收缩性和舒张功能障碍的影响。胎儿心脏中 Nfe2l2 介导的氧化应激抑制以及胎儿和成年后代心脏中钙调节反应的保存将分子机制与 MitoQ 治疗低氧妊娠的保护作用联系起来。因此,这些数据表明 MitoQ 通过 NADPH 诱导的氧化损伤缓冲线粒体应激的疗效以及预防低氧妊娠成年后代程序性心血管疾病的发生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6f7/7612077/7310520a7e77/EMS140041-f001.jpg

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