Goyal Ravi, Goyal Dipali, Longo Lawrence D, Clyman Ronald I
Center for Perinatal Biology, Division of Basic Sciences, Loma Linda University, Loma Linda, California.
Department of Pediatrics and Cardiovascular Research Institute, University of California, San Francisco, California.
Pediatr Res. 2016 Oct;80(4):610-8. doi: 10.1038/pr.2016.123. Epub 2016 Jun 3.
Patent ductus arteriosus (PDA) in the newborn is the most common congenital heart anomaly and is significantly more common in preterm infants. Contemporary pharmacological treatment is effective in only 70-80% of the cases. Moreover, indomethacin or ibuprofen, which are used to close a PDA may be accompanied by serious side effects in premature infants. To explore the novel molecular pathways, which may be involved in the maturation and closure of the ductus arteriosus (DA), we used fetal and neonatal sheep to test the hypothesis that maturational development of DA is associated with significant alterations in specific mRNA expression.
We conducted oligonucleotide microarray experiments on the isolated mRNA from DA and ascending aorta from three study groups (premature fetus-97 ± 0 d, near-term fetus-136 ± 0.8 d, and newborn lamb-12 ± 0 h). We compared the alterations in mRNA expression in DA and aorta to identify genes specifically involved in DA maturation.
Results demonstrate significant changes in wingless-integrin1, thrombospondin 1, receptor activator of nuclear factor-kappa B, nitric oxide synthase, and retinoic acid receptor activation signaling pathways.
We conclude that these pathways may play an important role during both development and postnatal DA closure and warrant further investigation.
新生儿动脉导管未闭(PDA)是最常见的先天性心脏异常,在早产儿中更为常见。当代药物治疗仅在70 - 80%的病例中有效。此外,用于闭合PDA的吲哚美辛或布洛芬可能会在早产儿中引发严重的副作用。为了探索可能参与动脉导管(DA)成熟和闭合的新分子途径,我们使用胎儿和新生绵羊来检验DA的成熟发育与特定mRNA表达的显著变化相关这一假设。
我们对来自三个研究组(早产胎儿 - 97 ± 0天、足月胎儿 - 136 ± 0.8天和新生羔羊 - 12 ± 0小时)的DA和升主动脉分离出的mRNA进行了寡核苷酸微阵列实验。我们比较了DA和主动脉中mRNA表达的变化,以确定专门参与DA成熟的基因。
结果表明无翅整合素1、血小板反应蛋白1、核因子κB受体激活剂、一氧化氮合酶和视黄酸受体激活信号通路发生了显著变化。
我们得出结论,这些途径可能在发育过程和出生后DA闭合中都发挥重要作用,值得进一步研究。