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雌激素受体-α可预防雌性大鼠右心室舒张功能障碍和纤维化。

Estrogen receptor-α prevents right ventricular diastolic dysfunction and fibrosis in female rats.

机构信息

Department of Biomedical Engineering, University of Wisconsin-Madison, Madison, Wisconsin.

Department of Surgery, University of Wisconsin-Madison, Madison, Wisconsin.

出版信息

Am J Physiol Heart Circ Physiol. 2020 Dec 1;319(6):H1459-H1473. doi: 10.1152/ajpheart.00247.2020. Epub 2020 Oct 16.

Abstract

Although women are more susceptible to pulmonary arterial hypertension (PAH) than men, their right ventricular (RV) function is better preserved. Estrogen receptor-α (ERα) has been identified as a likely mediator for estrogen protection in the RV. However, the role of ERα in preserving RV function and remodeling during pressure overload remains poorly understood. We hypothesized that loss of functional ERα removes female protection from adverse remodeling and is permissive for the development of a maladapted RV phenotype. Male and female rats with a loss-of-function mutation in ERα (ERαMut) and wild-type (WT) littermates underwent RV pressure overload by pulmonary artery banding (PAB). At 10 wk post-PAB, WT and ERαMut demonstrated RV hypertrophy. Analysis of RV pressure waveforms demonstrated RV-pulmonary vascular uncoupling and diastolic dysfunction in female, but not male, ERαMut PAB rats. Similarly, female, but not male, ERαMut exhibited increased RV fibrosis, comprised primarily of thick collagen fibers. There was an increased protein expression ratio of TIMP metallopeptidase inhibitor 1 (Timp1) to matrix metalloproteinase 9 (Mmp9) in female ERαMut compared with WT PAB rats, suggesting less collagen degradation. RNA-sequencing in female WT and ERαMut RV revealed kallikrein-related peptidase 10 (Klk10) and Jun Proto-Oncogene (Jun) as possible mediators of female RV protection during PAB. In summary, ERα in females is protective against RV-pulmonary vascular uncoupling, diastolic dysfunction, and fibrosis in response to pressure overload. ERα appears to be dispensable for RV adaptation in males. ERα may be a mediator of superior RV adaptation in female patients with PAH. Using a novel loss-of-function mutation in estrogen receptor-α (ERα), we demonstrate that female, but not male, ERα mutant rats display right ventricular (RV)-vascular uncoupling, diastolic dysfunction, and fibrosis following pressure overload, indicating a sex-dependent role of ERα in protecting against adverse RV remodeling. TIMP metallopeptidase inhibitor 1 (Timp1), matrix metalloproteinase 9 (Mmp9), kallikrein-related peptidase 10 (), and Jun Proto-Oncogene () were identified as potential mediators in ERα-regulated pathways in RV pressure overload.

摘要

虽然女性比男性更容易患肺动脉高压 (PAH),但她们的右心室 (RV) 功能保持得更好。雌激素受体-α (ERα) 已被确定为雌激素对 RV 保护的可能介质。然而,ERα 在压力超负荷期间保留 RV 功能和重塑中的作用仍知之甚少。我们假设,功能性 ERα 的丧失消除了女性对不良重塑的保护作用,并允许出现不适应的 RV 表型。具有 ERα 功能丧失突变的雄性和雌性大鼠 (ERαMut) 和野生型 (WT) 同窝仔鼠接受肺动脉环扎术 (PAB) 引起的 RV 压力超负荷。在 PAB 后 10 周,WT 和 ERαMut 表现出 RV 肥大。RV 压力波形分析显示,雌性而非雄性 ERαMut PAB 大鼠出现 RV-肺血管解偶联和舒张功能障碍。同样,雌性而非雄性 ERαMut 表现出 RV 纤维化增加,主要由厚胶原纤维组成。与 WT PAB 大鼠相比,雌性 ERαMut 中的 TIMP 金属肽酶抑制剂 1 (Timp1) 与基质金属蛋白酶 9 (Mmp9) 的蛋白表达比值增加,表明胶原降解减少。雌性 WT 和 ERαMut RV 的 RNA 测序显示激肽释放酶相关肽酶 10 (Klk10) 和 Jun 原癌基因 (Jun) 可能是 PAB 期间雌性 RV 保护的介导物。总之,ERα 在女性中对 RV-肺血管解偶联、舒张功能障碍和压力超负荷反应性纤维化具有保护作用。ERα 似乎对男性 RV 适应是可有可无的。ERα 可能是女性 PAH 患者 RV 适应性更好的介导物。使用雌激素受体-α (ERα) 的新型功能丧失突变,我们证明雌性而非雄性 ERα 突变大鼠在压力超负荷后表现出 RV-血管解偶联、舒张功能障碍和纤维化,表明 ERα 在保护 RV 免受不良重塑方面具有性别依赖性作用。TIMP 金属肽酶抑制剂 1 (Timp1)、基质金属蛋白酶 9 (Mmp9)、激肽释放酶相关肽酶 10 (Klk10) 和 Jun 原癌基因 () 被确定为 RV 压力超负荷中 ERα 调节途径的潜在介导物。

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