Romeo Russell D, Lee Susan J, Chhua Nara, McPherson Christina R, McEwen Bruce S
Laboratory of Neuroendocrinology, Rockefeller University, New York, NY, USA.
Neuroendocrinology. 2004 Mar;79(3):125-32. doi: 10.1159/000077270. Epub 2004 Apr 16.
The pubertal maturation of the hypothalamic-pituitary-adrenal (HPA) axis has received relatively little experimental attention. The present set of experiments sought to extend our understanding of the pubertal stress response by measuring corticotropin (ACTH), corticosterone, and testosterone levels in prepubertal and adult male rats exposed to a single 30-min session of restraint stress. We show that ACTH and corticosterone levels in prepubertal males take significantly longer to return to baseline after termination of the stressor compared to adults. These data indicate that prepubertal males demonstrate a more prolonged stress response compared to adults after a single acute stressor with both psychogenic and neurogenic components. As testosterone has been shown to reduce the stress response in adulthood, we next investigated whether the relatively low levels of circulating testosterone in prepubertal males mediated their protracted stress response. Data collected from additional experiments revealed that prepubertal males treated with adult-like physiological levels of testosterone still exhibited an extended stress response compared to similarly treated adults. These results indicate that the stress response demonstrated by adult males cannot be mimicked or activated in prepubertal males by mere supplementation of testosterone. Thus, we conclude that the HPA neuroendocrine axis is further shaped during pubertal development to allow for the emergence of a more tightly regulated stress response in adulthood.
下丘脑-垂体-肾上腺(HPA)轴的青春期成熟受到的实验关注相对较少。本系列实验旨在通过测量暴露于单次30分钟束缚应激的青春期前和成年雄性大鼠的促肾上腺皮质激素(ACTH)、皮质酮和睾酮水平,来扩展我们对青春期应激反应的理解。我们发现,与成年大鼠相比,青春期前雄性大鼠在应激源终止后,ACTH和皮质酮水平恢复到基线所需的时间明显更长。这些数据表明,在经历具有心理和神经源性成分的单一急性应激源后,青春期前雄性大鼠与成年大鼠相比表现出更长时间的应激反应。由于睾酮已被证明可降低成年期的应激反应,我们接下来研究青春期前雄性大鼠相对较低的循环睾酮水平是否介导了它们延长的应激反应。从额外实验中收集的数据显示,用成年样生理水平的睾酮处理的青春期前雄性大鼠与同样处理的成年大鼠相比,仍表现出延长的应激反应。这些结果表明,仅通过补充睾酮并不能在青春期前雄性大鼠中模拟或激活成年雄性大鼠表现出的应激反应。因此,我们得出结论,HPA神经内分泌轴在青春期发育过程中会进一步形成,以使成年期出现更严格调控的应激反应。