雌性激素引起雄性大鼠与铁中毒相关的心肌氧化应激和功能障碍。

IF 3.8 3区 医学 Q2 PHARMACOLOGY & PHARMACY
Syed Anees Ahmed, Abdel A Abdel-Rahman
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引用次数: 0

摘要

临床证据显示,雌激素(E2)介导的变性妇女心脏不良反应。本研究旨在确定这种矛盾的心脏效应是否发生在雄性大鼠身上,并阐明这种无法解释的E2有害心脏效应的机制。雄性Sprague-Dawley大鼠分为2组,一组给予E2,另一组给予载药。在慢性E2或车辆给药后8周内进行血压和超声心动图评估。在研究结束时,收集心脏进行体外生化和分子分析。e2处理的雄性大鼠表现出明显的心功能障碍,心率、射血分数和分数缩短都有所降低。e2处理的大鼠心脏组织的离体分子分析显示(1)生物钟蛋白Per2和心脏特异性mirna (1,133a, 208a和499)显著下调;(2)关键氧化还原酶的显著抑制,包括线粒体醛脱氢酶2、过氧化氢酶以及核因子红系2相关因子2的表达;(3)心肌铁下沉、促氧化血红素氧化酶-1水平和氧化应激增加,表明氧化还原稳态被破坏,氧化损伤加剧。我们的新发现证实了慢性E2对变性人心脏的不良影响。相关的心脏保护因子,包括Per2、mirna和氧化还原酶的抑制,以及铁下沉的上调,可能导致e2处理的雄性大鼠心脏氧化还原稳态被破坏,心功能受损。意义声明:研究结果揭示了慢性雌激素治疗对雄性大鼠心脏氧化还原状态和功能的矛盾不良影响。雌激素处理的雄性大鼠表现出心功能降低、生物钟蛋白Period 2表达降低、氧化还原平衡受损和铁下沉介质水平升高。这些临床前研究结果与性别特异性的心脏不良反应高度相关,这些不良反应与变性女性性别肯定雌激素治疗相关,为其增加的心血管风险提供了见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Estrogen elicits ferroptosis-related myocardial oxidative stress and dysfunction in male rats.

Clinical evidence showed estrogen (E2)-mediated adverse cardiac effects in transgender women. This study aimed to determine if this paradoxical cardiac effect occurs in male rats and to elucidate the mechanisms for this unexplained detrimental cardiac effect of E2. Male Sprague-Dawley rats were divided into 2 groups: one group received E2, whereas the other received vehicle. Blood pressure and echocardiographic assessments were performed over 8 weeks following chronic E2 or vehicle administration. At the conclusion of the study, hearts were collected for ex vivo biochemical and molecular analyses. E2-treated male rats exhibited significant cardiac dysfunction, as evidenced by reduced heart rate, ejection fraction, and fractional shortening. Ex vivo molecular analyses of cardiac tissues from E2-treated rats, compared to vehicle-treated controls, revealed (1) a significant downregulation of the circadian clock protein Per2 and cardiac-specific miRNAs (1, 133a, 208a, and 499); (2) marked suppressions of key redox enzymes, including mitochondrial aldehyde dehydrogenase 2, catalase, along with nuclear factor erythroid 2-related factor 2 expression; and (3) increases in cardiac ferroptosis, pro-oxidant heme oxygenase-1 levels, and oxidative stress, indicating disrupted redox homeostasis and heightened oxidative damage. Our novel findings corroborated the clinical paradoxical adverse cardiac effects of chronic E2 in transgenders. The suppressions in interrelated cardioprotective factors, including Per2, miRNAs, and redox enzymes, along with the upregulation of ferroptosis, may contribute to the disrupted cardiac redox homeostasis and impaired cardiac function in E2-treated male rats. SIGNIFICANCE STATEMENT: The study findings reveal the paradoxical adverse effects of chronic estrogen treatment on cardiac redox status and function in male rats. Estrogen-treated male rats exhibited reduced cardiac function, decreased expression of the circadian clock protein Period 2, impaired redox balance, and elevated levels of ferroptosis mediators. These preclinical findings are highly relevant to the sex-specific adverse cardiac effects associated with gender-affirming estrogen therapy in transgender women, offering insights into their increased cardiovascular risk.

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来源期刊
CiteScore
6.90
自引率
0.00%
发文量
115
审稿时长
1 months
期刊介绍: A leading research journal in the field of pharmacology published since 1909, JPET provides broad coverage of all aspects of the interactions of chemicals with biological systems, including autonomic, behavioral, cardiovascular, cellular, clinical, developmental, gastrointestinal, immuno-, neuro-, pulmonary, and renal pharmacology, as well as analgesics, drug abuse, metabolism and disposition, chemotherapy, and toxicology.
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