首页> 外文期刊>Clinical and experimental pharmacology & physiology >Eplerenone prevents adverse cardiac remodelling induced by pressure overload in atrial natriuretic peptide-null mice.
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Eplerenone prevents adverse cardiac remodelling induced by pressure overload in atrial natriuretic peptide-null mice.

机译:依普利酮可防止心钠素肽无效小鼠中压力超负荷引起的不良心脏重塑。

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摘要

1. Atrial natriuretic peptide (ANP)-null mice (Nppa(-/-)) exhibit cardiac hypertrophy at baseline and adverse cardiac remodelling in response to transverse aortic constriction (TAC)-induced pressure overload stress. Previous studies have suggested that natriuretic peptides could potentially oppose mineralocorticoid signalling at several levels, including suppression of adrenal aldosterone production, inhibition of mineralocorticoid receptor (MR) activation or suppression of MR-mediated production of pro-inflammatory factors. Thus, we hypothesized that the MR blocker eplerenone would prevent the exaggerated left ventricular (LV) remodelling/fibrosis and dysfunction after TAC in Nppa(-/-). 2. In the present study, Nppa(-/-) and wild-type Nppa(+/+) mice fed eplerenone- or vehicle (oatmeal)-supplemented chow since weaning were subjected to TAC or sham operation. The daily dose of eplerenone administered was approximately 200 mg/kg. At 1 week after TAC, LV size and function were evaluated by echocardiogram and LV cross-sections were stained with picrosirius red for collagen volume measurement. Total RNA was extracted from the LV for real-time polymerase chain reaction analysis of osteopontin. 3. Eplerenone had no effect on baseline hypertrophy observed in sham-operated Nppa(-/-) compared with Nppa(+/+) mice. Eplerenone attenuated the TAC-induced increase in LV weight in both genotypes and completely prevented LV dilation, systolic dysfunction and interstitial collagen deposition seen in Nppa(-/-) mice after TAC. However, serum aldosterone levels were lower in Nppa(-/-) compared with Nppa(+/+) wild types. No interaction between eplerenone and genotype in osteopontin mRNA levels was observed. 4. Eplerenone prevents adverse cardiac remodelling related to pressure overload in ANP-deficient mice, mainly due to an antifibrotic effect. The mechanism whereby ANP deficiency leads to excess hypertrophy, fibrosis and early failure following TAC is increased profibrotic signals resulting from excess or unopposed MR activation, rather than increased levels of aldosterone.
机译:1.心房利钠肽(ANP)无效的小鼠(Nppa(-/-))在基线时表现出心脏肥大,并对横向主动脉缩窄(TAC)引起的压力超负荷压力产生不利的心脏重塑。先前的研究表明,利钠肽可能在多个水平上反对盐皮质激素信号传导,包括抑制肾上腺醛固酮的产生,抑制盐皮质激素受体(MR)的激活或抑制MR介导的促炎因子的产生。因此,我们假设MR阻滞剂依普利农将预防Nppa(-/-)中TAC后夸张的左心室(LV)重塑/纤维化和功能障碍。 2.在本研究中,自断奶以来饲喂依普利农或赋形剂(燕麦片)补充食物的Nppa(-/-)和野生型Nppa(+ / +)小鼠接受TAC或假手术。依匹乐酮的每日剂量约为200 mg / kg。 TAC后1周,通过超声心动图评估LV的大小和功能,并用picrosirius红染色LV横截面以测量胶原蛋白的体积。从LV中提取总RNA用于骨桥蛋白的实时聚合酶链反应分析。 3.与Nppa(+ / +)小鼠相比,在假手术的Nppa(-/-)中观察到的依普利农对基线肥大没有影响。依匹乐酮减弱了两种基因型中TAC诱导的LV重量增加,并完全阻止了NAC小鼠在NAC中的左室扩张,收缩功能障碍和间质胶原沉积。但是,与Nppa(+ / +)野生型相比,Nppa(-/-)的血清醛固酮水平较低。在骨桥蛋白mRNA水平上,依普利农和基因型之间没有相互作用。 4.依普利农可预防与ANP缺乏症小鼠压力超负荷有关的不良心脏重塑,这主要归因于抗纤维化作用。 TAC后ANP缺乏导致过度肥大,纤维化和早期衰竭的机制是由过量或无抵抗的MR激活导致的纤维化信号增加,而不是醛固酮水平增加。

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