孕甲状腺功能减退导致的产后大鼠附睾雄激素作用时间转移的分子机制

Anbalagan Jaganathan, Arokya Mary Sashi, Annapoorna Kannan, M. Aruldhas
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摘要

甲状腺激素是雄性生殖能力的重要调节因子,具有特异性T3受体的哺乳动物睾丸已成为其靶点。有先天性或幼年性甲状腺功能减退病史的男性易患不育症。附睾在精子的睾丸后成熟中起关键作用。最近我们报道了一过性妊娠期甲状腺功能减退症,由于附睾雄激素受体(Ar)状态降低,影响精子成熟,从而导致大鼠后代不孕。在本研究中,我们验证了“在男性生殖道器官分化的关键时期,妊娠期短暂暴露于抗甲状腺药物可能通过改变Ar基因的表达及其蛋白和关键的甾体生成酶5α-还原酶的活性,干扰F1后代附睾功能”的假设。为了验证这一假设,从胚胎日(ED)9日至14/18/21日,在睾丸和其他雄性生殖道器官分化的特定时期,将抗甲状腺药物甲巯咪唑(0.05%)通过饮用水暴露于怀孕大鼠,以诱导甲状腺功能减退。短暂性妊娠甲状腺功能减退症的雄性幼鼠在产后29日血清睾酮和雌二醇水平低于正常水平,附睾Ar表达和5α-还原酶活性降低,而在产后49日,青春期前大鼠附睾Ar表达和5α-还原酶活性正常/增强。综上所述,本研究和我们之前的报道指出,妊娠期甲状腺功能减退症通过对附睾5α-还原酶活性和AR基因表达的年龄依赖性发散效应影响F1后代的生育能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular mechanism underlying the temporal shift in androgen action in post-natal rat epididymis due to gestational-onset hypothyroidism
Thyroid hormones are important regulators of male fertility and mammalian testis with has specific T3 receptors has emerged as its target. Men with history of congenital or juvenile onset hypothyroidism suffer infertility. The epididymis plays a pivotal role in post-testicular maturation of sperm. Recently we reported that transient gestational–onset hypothyroidism leads to infertility in the progeny of rats by affecting sperm maturation due to decreased androgen receptor (Ar) status in the epididymis. In the present study we tested the hypothesis “transient gestational exposure to antithyroid drugs during critical periods of differentiation of male reproductive tract organs may interfere with the functions of epididymis in F1 progeny by modifying the expression of Ar gene, and activity of its protein and the key steroidogenic enzyme, 5α-reductase”. To test the hypothesis, pregnant rats were exposed to the antithyroid drug methimazole (0.05% through drinking water) from embryonic day (ED)9 to 14/18/21covering specific periods of testicular and other male reproductive tract organs differentiation to induce hypothyroidism. Male pups with transient gestational hypothyroidism showed subnormal levels of serum testosterone, and estradiol, along with decreased expression of Ar, and 5α-reductase activity in the epididymis of pre-puberal rats at postnatal day (PND)29, whereas there was normal/boosted Ar expression, and 5α-reductase activity peripubertal rat epididymis at PND 49. Taken together, the present study and our previous report point out that gestational-onset hypothyroidism affect fertility of F1 progeny through an age-dependent divergent effect on 5α-reductase activity and AR gene expression in the epididymis.
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