Maternal androgen excess induces cardiac hypertrophy and left ventricular dysfunction in female mice offspring

后代 内科学 内分泌学 氟他胺 多囊卵巢 二氢睾酮 雄激素过量 医学 雄激素 P22phox公司 NADPH氧化酶 肌肉肥大 左心室肥大 生物 怀孕 肥胖 雄激素受体 血压 氧化应激 胰岛素抵抗 激素 前列腺癌 癌症 遗传学
作者
Maria Manti,Romina Fornes,Gianluigi Pironti,Sarah McCann Haworth,Zhengbing Zhuge,Anna Benrick,Mattias Carlström,Daniel Andersson,Elisabet Stener‐Victorin
出处
期刊:Cardiovascular Research [Oxford University Press]
卷期号:116 (3): 619-632 被引量:34
标识
DOI:10.1093/cvr/cvz180
摘要

Abstract Aims Polycystic ovary syndrome (PCOS) is a common endocrinopathy that is suggested to increase the risk for cardiovascular disease. How PCOS may lead to adverse cardiac outcomes is unclear and here we hypothesized that prenatal exposure to dihydrotestosterone (DHT) and/or maternal obesity in mice induce adverse metabolic and cardiac programming in female offspring that resemble the reproductive features of the syndrome. Methods and results The maternal obese PCOS phenotype was induced in mice by chronic high-fat–high-sucrose consumption together with prenatal DHT exposure. The prenatally androgenized (PNA) female offspring displayed cardiac hypertrophy during adulthood, an outcome that was not accompanied by aberrant metabolic profile. The expression of key genes involved in cardiac hypertrophy was up-regulated in the PNA offspring, with limited or no impact of maternal obesity. Furthermore, the activity of NADPH oxidase, a major source of reactive oxygen species in the cardiovascular system, was down-regulated in the PNA offspring heart. We next explored for early transcriptional changes in the heart of newly born PNA offspring, which could account for the long-lasting changes observed in adulthood. Neonatal PNA hearts displayed an up-regulation of transcription factors involved in cardiac hypertrophic remodelling and of the calcium-handling gene, Slc8a2. Finally, to determine the specific role of androgens in cardiovascular function, female mice were continuously exposed to DHT from pre-puberty to adulthood, with or without the antiandrogen flutamide. Continuous exposure to DHT led to adverse left ventricular remodelling, and increased vasocontractile responses, while treatment with flutamide partly alleviated these effects. Conclusion Taken together, our results indicate that intrauterine androgen exposure programmes long-lasting heart remodelling in female mouse offspring that is linked to left ventricular hypertrophy and highlight the potential risk of developing cardiac dysfunction in daughters of mothers with PCOS.
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