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首页> 外文期刊>American Journal of Physiology >Female sex and estrogen receptor-β attenuate cardiac remodeling and apoptosis in pressure overload
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Female sex and estrogen receptor-β attenuate cardiac remodeling and apoptosis in pressure overload

机译:雌性和雌激素受体-β在压力过载中衰减心脏重塑和细胞凋亡

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摘要

We investigated sex differences and the role of estrogen receptor-β (ERβ) on myocardial hypertrophy in a mouse model of pressure overload. We performed transverse aortic constriction (TAC) or sham surgery in male and female wild-type (WT) and ERβ knockout (ERβ?/?) mice. All mice were characterized by echocardiography and hemodynamic measurements and were killed 9 wk after surgery. Left ventricular (LV) samples were analyzed by microarray profiling, real-time RT-PCR, and histology. After 9 wk, WT males showed more hypertrophy and heart failure signs than WT females. Notably, WT females developed a concentric form of hypertrophy, while males developed eccentric hypertrophy. ERβ deletion augmented the TAC-induced increase in cardiomyocyte diameter in both sexes. Gene expression profiling revealed that WT male hearts had a stronger induction of matrix-related genes and a stronger repression of mitochondrial genes than WT female hearts. ERβ?/? mice exhibited a different transcriptional response. ERβ?/?/TAC mice of both sexes exhibited induction of proapoptotic genes with a stronger expression in ERβ?/? males. Cardiac fibrosis was more pronounced in male WT/TAC than in female mice. This difference was abolished in ERβ?/? mice. The number of apoptotic nuclei was increased in both sexes of ERβ?/?/TAC mice, most prominent in males. Female sex offers protection against ventricular chamber dilation in the TAC model. Both female sex and ERβ attenuate the development of fibrosis and apoptosis, thus slowing the progression to heart failure.
机译:我们调查了性别差异和雌激素受体-β(ERβ)对压力过载小鼠模型心肌肥厚的作用。我们在雄性和女性野生型(WT)和ERβ敲除(ERβ/β)小鼠中进行了横向主动脉收缩(TAC)或假手术。所有小鼠的特征在于超声心动图和血液动力学测量,手术后杀死9周。通过微阵列分析,实时RT-PCR和组织学分析左心室(LV)样品。在9周后,WT雄性显示比WT女性更高的肥大和心力衰竭标志。值得注意的是,WT女性开发了一种同心的肥大形式,而雄性则发育了偏心肥大。 ERβ缺失增强了两性中的TAC诱导的心肌细胞直径增加。基因表达分析显示,WT男性心脏诱导与基质相关基因的诱导和较强的线粒体基因抑制而不是女性心脏。 ERβ?/?小鼠表现出不同的转录反应。 Erβ?/β/β/ TAC两性小鼠表现出在ERβ中具有更强的表达诱导促凋亡基因?/?男性。心肌纤维化比在女性小鼠中更明显。这种差异在ERβ中被废除了?/?老鼠。 ERβ的性别增加了凋亡核的数量?/ tac小鼠,在男性中最突出的。女性在TAC模型中提供避免心室间隙的保护。女性性别和ERβ都衰减纤维化和凋亡的发展,从而减缓了心力衰竭的进展。

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