Department of Psychology and Program in Neuroscience, 108 Giltner Hall, Michigan State University, East Lansing, MI 48824-1101, USA.
Horm Behav. 2011 Sep;60(4):380-8. doi: 10.1016/j.yhbeh.2011.07.008. Epub 2011 Jul 23.
Testosterone influences the hypothalamic-pituitary-adrenal axis, anxiety-related behavior, and sensorimotor gating in rodents, but little is known about the role of the androgen receptor (AR) in mediating these influences. We compared levels of the stress hormone corticosterone at baseline and following exposure to a novel object in an open field in wild type (wt) male and female rats, and male rats with the testicular feminization mutation (Tfm) of the AR, which disables its function. Basal corticosterone was equivalent in all groups, but exposure to a novel object in an open field elicited a greater increase in corticosterone in Tfm males and wt females than in wt males. Tfm males also showed increased behavioral indices of anxiety compared to wt males and females in the test. Analysis of the immediate early gene c-Fos expression after exposure to a novel object revealed greater activation in Tfm males than wt males in some regions (medial preoptic area) and lesser activation in others (dentate gyrus, posterodorsal medial amygdala). No differences were found in a measure of sensorimotor gating (prepulse inhibition of the acoustic startle response), although Tfm males had an increased acoustic startle response compared to wt males and females. These findings demonstrate that ARs play a role in regulating anxiety-related behaviors, as well as corticosterone responses and neural activation following exposure to a mild stressor in rats.
睾酮会影响啮齿动物的下丘脑-垂体-肾上腺轴、与焦虑相关的行为和感觉运动门控,但雄激素受体(AR)在介导这些影响中的作用知之甚少。我们比较了野生型(wt)雄性和雌性大鼠以及 AR 睾丸女性化突变(Tfm)雄性大鼠在基线时和暴露于新物体的开阔场中应激激素皮质酮的水平,该突变使其功能丧失。所有组的基础皮质酮水平相当,但暴露于开阔场中的新物体引起 Tfm 雄性和 wt 雌性大鼠的皮质酮增加幅度大于 wt 雄性大鼠。与 wt 雄性和雌性大鼠相比,Tfm 雄性大鼠在测试中还表现出更高的焦虑行为指数。暴露于新物体后立即早期基因 c-Fos 表达的分析显示,Tfm 雄性大鼠在一些区域(视前正中区)的激活程度高于 wt 雄性大鼠,而在其他区域(齿状回、后背内侧杏仁核)的激活程度较低。在听觉起始反应的前脉冲抑制(一种感觉运动门控的测量)方面没有发现差异,尽管 Tfm 雄性大鼠的听觉起始反应比 wt 雄性和雌性大鼠高。这些发现表明,AR 在调节焦虑相关行为以及大鼠暴露于轻度应激源后的皮质酮反应和神经激活中发挥作用。