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Moderate inappropriately high aldosterone/NaCl constellation in mice: cardiovascular effects and the role of cardiovascular epidermal growth factor receptor

机译:小鼠中醛固酮/ NaCl含量异常偏高:心血管效应和心血管表皮生长因子受体的作用

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摘要

Non-physiological activation of the mineralocorticoid receptor (MR), e.g. by aldosterone under conditions of high salt intake, contributes to the pathogenesis of cardiovascular diseases, although beneficial effects of aldosterone also have been described. The epidermal growth factor receptor (EGFR) contributes to cardiovascular alterations and mediates part of the MR effects. Recently, we showed that EGFR is required for physiological homeostasis and function of heart and arteries in adult animals. We hypothesize that moderate high aldosterone/NaCl, at normal blood pressure, affects the cardiovascular system depending on cardiovascular EGFR. Therefore we performed an experimental series in male and female animals each, using a recently established mouse model with EGFR knockout in vascular smooth muscle cells and cardiomyocytes and determined the effects of a mild-high aldosterone-to-NaCl constellation on a.o. marker gene expression, heart size, systolic blood pressure, impulse conduction and heart rate. Our data show that (i) cardiac tissue of male but not of female mice is sensitive to mild aldosterone/NaCl treatment, (ii) EGFR knockout induces stronger cardiac disturbances in male as compared to female animals and (iii) mild aldosterone/NaCl treatment requires the EGFR in order to disturb cardiac tissue homeostasis whereas beneficial effects of aldosterone seem to be independent of EGFR.
机译:盐皮质激素受体(MR)的非生理激活,例如尽管已经描述了醛固酮的有益作用,但是在高盐摄入条件下,醛固酮的α-内啡肽有助于心血管疾病的发病。表皮生长因子受体(EGFR)有助于心血管改变并介导部分MR效应。最近,我们表明,成年动物的生理稳态以及心脏和动脉的功能需要EGFR。我们假设正常血压下的中度高醛固酮/ NaCl会影响心血管系统,具体取决于心血管EGFR。因此,我们使用最近建立的在血管平滑肌细胞和心肌细胞中具有EGFR基因敲除的小鼠模型,在雄性和雌性动物中分别进行了一系列实验,并确定了醛固酮至NaCl轻度偏高对a.o的影响。标记基因的表达,心脏大小,收缩压,冲动传导和心律。我们的数据表明:(i)雄性小鼠的心脏组织对雌性小鼠不敏感,对醛固酮/ NaCl轻度治疗敏感;(ii)与雌性动物相比,EGFR基因敲除对雄性小鼠的心脏干扰更强;(iii)醛固酮/ NaCl轻度治疗需要EGFR以扰乱心脏组织的动态平衡,而醛固酮的有益作用似乎与EGFR无关。

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