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A Critical Point of Male Gonad Development: Neuroendocrine Correlates of Accelerated Testicular Growth in Rats during Early Life

机译:男性性腺发育的关键点:早期生活中大鼠睾丸生长加速的神经内分泌相关。

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摘要

Testis growth during early life is important for future male fertility and shows acceleration during the first months of life in humans. This acceleration coincides with the peak in gonadotropic hormones in the blood, while the role of hypothalamic factors remains vague. Using neonatal rats to assess this issue, we found that day 9 of life is likely critical for testis development in rats. Before this day, testicular growth was proportional to body weight gain, but after that the testes showed accelerated growth. Hypothalamic kisspeptin and its receptor mRNA levels begin to elevate 2 days later, at day 11. A significant increase in the mRNA levels for gonadotropin-releasing hormone (GnRH) receptors in the hypothalamus between days 5 and 7 was followed by a 3-fold decrease in GnRH mRNA levels in this brain region during the next 2 days. Starting from day 9, hypothalamic GnRH mRNA levels increased significantly and positively correlated with accelerated testicular growth. Triptorelin, an agonist of GnRH, at a dose that had no effect on testicular growth during “proportional” period, increased testis weights during the period of accelerated growth. The insensitivity of testicular growth to GnRH during “proportional” period was supported by inability of a 2.5-fold siRNA knockdown of GnRH expression in the hypothalamus of the 7-day-old animals to produce any effect on their testis weights. GnRH receptor blockade with cetrorelix was also without effect on testis weights during “proportional” period but the same doses of this GnRH antagonist significantly inhibited “accelerated” testicular growth. GnRH receptor mRNA levels in the pituitary as well as plasma LH concentrations were higher during “accelerated” period of testicular growth than during “proportional” period. In general, our data defined two distinct periods in rat testicular development that are primarily characterized by different responses to GnRH signaling.
机译:早期生命中的睾丸生长对于将来的男性生育很重要,并且在人类生命的头几个月中显示出加速增长。这种加速与血液中促性腺激素的峰值相吻合,而下丘脑因素的作用仍然模糊。使用新生大鼠评估这一问题,我们发现生命的第9天对于大鼠睾丸的发育可能至关重要。在这一天之前,睾丸生长与体重增加成正比,但是在那之后,睾丸显示出加速的生长。下丘脑kisepteptin及其受体的mRNA水平在2天后的第11天开始升高。在第5天和第7天之间,下丘脑中促性腺激素释放激素(GnRH)受体的mRNA水平显着增加,然后下降3倍。接下来的2天中该大脑区域中GnRH mRNA水平的变化。从第9天开始,下丘脑GnRH mRNA水平显着增加,并与睾丸生长加快呈正相关。 Triptorelin是GnRH的激动剂,在“成比例的”时期对睾丸的生长没有影响,其剂量在加速的生长期间增加了睾丸的重量。 “成比例的”时期睾丸生长对GnRH的不敏感性得到了7天大动物下丘脑中GnRH表达的2.5倍siRNA基因敲低的影响,从而无法对其睾丸重量产生任何影响。在“成比例的”期间,用cetrorelix阻断GnRH受体对睾丸的重量也没有影响,但是相同剂量的这种GnRH拮抗剂可显着抑制“加速的”睾丸生长。在垂体生长的“加速”阶段,垂体的GnRH受体mRNA水平以及血浆中的LH浓度高于“比例的”阶段。一般而言,我们的数据定义了大鼠睾丸发育的两个不同时期,其主要特征是对GnRH信号传导的反应不同。

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