首页> 美国卫生研究院文献>Journal of the Endocrine Society >The Effect of a Novel Glucocorticoid Receptor Antagonist (CORT113176) on Glucocorticoid and Insulin Receptor Sensitive Hepatic Gene (mRNA) Expression in a Neonatal Rat Model of Human Prematurity
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The Effect of a Novel Glucocorticoid Receptor Antagonist (CORT113176) on Glucocorticoid and Insulin Receptor Sensitive Hepatic Gene (mRNA) Expression in a Neonatal Rat Model of Human Prematurity

机译:新型糖皮质激素受体拮抗剂(Cort113176)对人早熟的新生大鼠糖皮质激素和胰岛素受体敏感肝基因(mRNA)表达的影响

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摘要

Preterm birth is a global health problem the sequelae of which are not well understood. Hypoxia, a common stressor with prematurity, can affect blood glucose via stress-induced increases in glucocorticoids (GC). GCs are also administered to preterm infants to improve oxygenation; however, this is controversial. CORT113176 (Corcept Therapeutics) is a novel, selective glucocorticoid receptor (GR) antagonist that does not bind to the progesterone receptor. We have demonstrated that CORT113176 (in our rat model of preterm birth) increases baseline corticosterone (due to loss of GC negative feedback) and attenuates hypoxia-induced increases in insulin resistance implicating endogenous corticosterone in post-natal metabolic adaptations to stress. We now propose that CORT113176 is useful to evaluate the hepatic effects of endogenous GCs in our rat model of preterm birth by measuring critical GC and insulin receptor sensitive gene mRNAs. Postnatal day (PD) 2 rat pups of both sexes (N=5 per treatment/sex) were pretreated with CORT113176 (600 mg/kg IP) or vehicle. After 60 minutes, a group of pups were euthanized with livers collected and preserved in RNAlater (baseline). The remaining pups were separated from their dams, exposed to normoxia (control) or hypoxia (8% O2) for 60 minutes, and livers obtained. Total hepatic RNA was extracted, and mRNA expression was analyzed (RT-qPCR) for GC and insulin receptor sensitive genes: GC: Fkbp5, Gilz, Nr3c1 (Gr), Nr3c2 (Mr), Per1, Ttpa. INSULIN: Akt2, G6Pase, Igf1r, Insr, Irs1, Irs2, Pik3cb, Pik3r1, Srebp1c. CORT113176 decreased the expression of all baseline hepatic insulin receptor mRNAs in both sexes, except for G6Pase. Pik3r1 mRNA expression significantly decreased with 60 minutes of normoxic separation (fasting) in males and females compared to baseline and hypoxic separation; this was blocked by CORT113176. In the GC receptor sensitive panel, CORT113176 decreased basal Nr3c1 (Gr) mRNA. Normoxic and hypoxic separation increased Per1 and Gilz mRNA expression; this effect was blocked by CORT113176. Interestingly, Fkbp5 expression, a proposed clinical marker for GR antagonism, was not altered by CORT113176. The hepatic GC and insulin receptor sensitive gene mRNA panels we developed are sensitive to GR antagonism suggesting they may be a useful addition to Fkbp5. The increase in endogenous corticosterone, acting via GR, is critical in the hepatic response to stress in our neonatal rat model of hypoxia and prematurity.
机译:早产是全球健康问题,其后遗症并不熟知。缺氧是一种具有早熟的常见压力,可以通过糖皮质激素(GC)的应激诱导的增加来影响血糖。 GCS也施用于早产儿,以改善氧合;然而,这是有争议的。 Cort113176(Corcept治疗方法)是一种新颖的选择性糖皮质激素受体(GR)拮抗剂,其与孕酮受体不结合。我们已经证明了Cort113176(在我们的最早出生的大鼠模型中)增加了基线皮质酮(由于GC阴性反馈的损失),并衰减胰岛素抵抗的缺氧诱导的增加,暗指产后的后睾酮在后遗症后的代谢适应中的胁迫。我们现在提出,通过测量临界GC和胰岛素受体敏感基因MRNA,Cort113176可用于评估内源性GCS在预早产的肝脏模型中的肝脏效应。后期(Pd)2种类的幼仔(每次治疗/性别/性别)的大鼠幼仔(N = 5 = 5)用Cort113176(600mg / kg IP)或载体进行预处理。 60分钟后,将一组幼犬被安乐死,肝脏收集并保存在RNALATER(基线)。将剩余的幼崽与其水坝分开,暴露于常氧(对照)或缺氧(8%O 2)60分钟,并获得肝脏。提取总肝脏RNA,分析mRNA表达(RT-QPCR),用于GC和胰岛素受体敏感基因:GC:FKBP5,GILZ,NR3C1(GR),NR3C2(MR),PER1,TTPA。胰岛素:AKT2,G6Pase,IGF1R,INSR,IRS1,IRS2,PIK3CB,PIK3R1,SREBP1C。 Cort113176除G6Pase外,Cort113176降低了两种性别的所有基线肝胰岛素受体MRNA的表达。与基线和缺氧分离相比,Pik3R1 mRNA表达随60分钟的常见氧化分离(禁食)和雌性的常见分离(禁食)显着降低;这是Cort113176阻止的。在GC受体敏感面板中,Cort113176减少了基础NR3C1(GR)mRNA。常氧和缺氧分离增加均为百分点和胃肠杆菌mRNA表达; Cort113176阻止了这种效果。有趣的是,FKBP5表达是Cort113176没有改变GR拮抗作用的提出的临床标记。我们开发的肝脏GC和胰​​岛素受体敏感基因mRNA面板对GR拮抗作用敏感,表明它们可能是FKBP5的有用补充。通过GR作用的内源性皮质酮的增加对于我们新生大鼠缺氧和早产性的新生大鼠模型的肝反应至关重要。

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