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The Role of 17β-Estradiol and Estrogen Receptors in Regulation of Ca2+ Channels and Mitochondrial Function in Cardiomyocytes

机译:17β-雌二醇和雌激素受体在心肌细胞Ca2 +通道和线粒体功能调节中的作用

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摘要

Numerous epidemiological, clinical, and animal studies showed that cardiac function and manifestation of cardiovascular diseases (CVDs) are different between males and females. The underlying reasons for these sex differences are definitely multifactorial, but major evidence points to a causal role of the sex steroid hormone 17β-estradiol (E2) and its receptors (ER) in the physiology and pathophysiology of the heart. Interestingly, it has been shown that cardiac calcium (Ca2+) ion channels and mitochondrial function are regulated in a sex-specific manner. Accurate mitochondrial function and Ca2+ signaling are of utmost importance for adequate heart function and crucial to maintaining the cardiovascular health. Due to the highly sensitive nature of these processes in the heart, this review article highlights the current knowledge regarding sex dimorphisms in the heart implicating the importance of E2 and ERs in the regulation of cardiac mitochondrial function and Ca2+ ion channels, thus the contractility. In particular, we provide an overview of in-vitro and in-vivo studies using either E2 deficiency; ER deficiency or selective ER activation, which suggest that E2 and ERs are strongly involved in these processes. In this context, this review also discusses the divergent E2-responses resulting from the activation of different ER subtypes in these processes. Detailed understanding of the E2 and ER-mediated molecular and cellular mechanisms in the heart under physiological and pathological conditions may help to design more specifically targeted drugs for the management of CVDs in men and women.
机译:大量的流行病学,临床和动物研究表明,男性和女性的心脏功能和心血管疾病(CVD)表现不同。这些性别差异的根本原因肯定是多因素的,但主要证据表明性类固醇激素17β-雌二醇(E2)及其受体(ER)在心脏的生理和病理生理中起因果作用。有趣的是,已显示出心脏钙(Ca 2 + )离子通道和线粒体功能是以性别特定的方式调节的。正确的线粒体功能和Ca 2 + 信号对于适当的心脏功能至关重要,对于维持心血管健康至关重要。由于这些过程在心脏中具有高度敏感的性质,因此本文将重点介绍有关心脏中性别二态性的最新知识,这暗示E2和ER在调节心脏线粒体功能和Ca 2 + 离子通道,因此具有收缩性。特别是,我们提供了使用E2缺乏症进行的体外和体内研究的概述; ER缺乏或选择性ER激活,表明E2和ER强烈参与这些过程。在这种情况下,本综述还讨论了由这些过程中不同的ER亚型激活引起的不同的E2反应。在生理和病理条件下,对心脏中E2和ER介导的分子和细胞机制的详细了解可能有助于设计针对性更强的针对男性和女性的CVD治疗药物。

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