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首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Spironolactone attenuates experimental uremic cardiomyopathy by antagonizing marinobufagenin.
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Spironolactone attenuates experimental uremic cardiomyopathy by antagonizing marinobufagenin.

机译:螺内酯通过拮抗马里巴蟾毒精来减轻实验性尿毒症心肌病。

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摘要

Spironolactone has been noted to attenuate cardiac fibrosis. We have observed that the cardiotonic steroid marinobufagenin plays an important role in the diastolic dysfunction and cardiac fibrosis seen with experimental renal failure. We performed the following studies to determine whether and how spironolactone might ameliorate these changes. First, we studied rats subjected to partial nephrectomy or administration of exogenous marinobufagenin. We found that spironolactone (20 mg/kg per day) attenuated the diastolic dysfunction as assessed by ventricular pressure-volume loops and essentially eliminated cardiac fibrosis as assessed by trichrome staining and Western blot. Next, we examined the effects of spironolactone and its major metabolite, canrenone (both 100 nM), on marinobufagenin stimulation of rat cardiac fibroblasts. Both spironolactone and canrenone prevented the stimulation of collagen production by 1 nM marinobufagenin but not 100 nM marinobufagenin, as assessed by proline incorporation and procollagen 1 expression, as well as signaling through the sodium-potassium-ATPase, as evidenced by protein kinase C isoform delta translocation and extracellular signal regulated kinase 1/2 activation. Both spironolactone and canrenone also altered ouabain binding to cultured porcine cells in a manner consistent with competitive inhibition. Our data suggest that some of the antifibrotic effects of spironolactone may be attributed to antagonism of marinobufagenin signaling through the sodium-potassium-ATPase.
机译:螺内酯可减轻心脏纤维化。我们已经观察到,在实验性肾衰竭中,强心类固醇marinobufagenin在舒张功能障碍和心脏纤维化中起重要作用。我们进行了以下研究,以确定螺内酯是否以及如何改善这些变化。首先,我们研究了接受部分肾切除术或外源性蟾蜍精素治疗的大鼠。我们发现螺内酯(每天20 mg / kg)可以减轻心室舒张功能障碍(通过心室压力-容量环评估),并且基本上可以消除心脏纤维化(通过三色染色和Western blot评估)。接下来,我们检查了螺内酯及其主要代谢产物烯睾丙内酯(均为100 nM)对海马蟾蜍精原刺激大鼠心脏成纤维细胞的作用。如脯氨酸掺入和前胶原1的表达所评估,螺内酯和烯睾丙内酯均不能阻止1 nM marinobufagenin刺激胶原蛋白的产生,但不能阻止100 nM marinobufagenin的刺激胶原蛋白的产生,以及通过钠钾ATPase的信号传导,如蛋白激酶C亚型delta所证明的那样易位和细胞外信号调节激酶1/2激活。螺内酯和烯睾丙内酯也以与竞争性抑制一致的方式改变了哇巴因与培养的猪细胞的结合。我们的数据表明,螺内酯的某些抗纤维化作用可能归因于通过钠-钾-ATPase的海蟾蜍精蛋白信号传导的拮抗作用。

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