首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Adolescent development alters stressor-induced Fos immunoreactivity in rat brain.
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Adolescent development alters stressor-induced Fos immunoreactivity in rat brain.

机译:青春期发育会改变应激源诱导的大鼠大脑Fos免疫反应性。

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摘要

Adult-typical behavioural responses to environmental challenges as well as the stressor responsiveness of several neural systems emerge over adolescent development. The present study was undertaken to determine whether stressors might activate different neural populations in adult vs juvenile male rats. Fos-immunoreactivity was determined in various forebrain nuclei following 15 min or 2 h of restraint in 28- and 60-day-old male rats (representing late juvenile and young adult ages, respectively) and compared to non-restrained control animals at each age. Few Fos-positive cells were identified in unrestrained controls at either age. Restraint, however, induced the production of Fos in several areas. Fos immunoreactivity was marked in parvocellular regions of the paraventricular nucleus of the hypothalamus following both restraint periods and at both ages, an observation consistent with previous observations that restraint increases plasma corticosterone at both ages. And at both ages, Fos immunoreactivity was evident in magnocellular regions of the hypothalamus only following the longer restraint period. Fos immunoreactivity, however, clearly varied as a function of adolescent age in several regions. Moderate to intense Fos immunoreactivity was observed in adults in all divisions of the anterior olfactory nucleus, cortical and medial amygdaloid nuclei, pyriform cortex and tenia tecta. In contrast to the adult, only a few Fos positive cells were observed in any of these regions in juveniles. Exposure to the same stressor induced Fos in a broader spectrum of neurons in young adult than in juvenile male rats. The lack of Fos-positive cells in specific areas of juveniles may relate to maturation in specific amygdaloid nuclei, which project to many of the other regions that showed age-related differences in Fos production. The emergence over adolescence of Fos-positive cells in specific areas in response to stressors may underlie the emergence of adult-typical behavioural and neural stressor-responsiveness.
机译:在青少年发展过程中,出现了对环境挑战的成人典型行为反应以及几种神经系统的应激反应。进行本研究以确定应激源是否可以激活成年与未成年雄性大鼠的不同神经种群。在28天和60天的雄性大鼠(分别代表未成年年龄和成年幼年年龄)被约束15分钟或2小时后,测定了各个前脑核中的Fos免疫反应性,并与每个年龄段的非约束对照组进行了比较。在任何年龄的不受约束的对照中,几乎都未发现Fos阳性细胞。然而,克制在几个区域诱发了Fos的产生。在两个约束期和两个年龄段,下丘脑室旁核小细胞区域的Fos免疫反应性均显着,这一观察结果与先前的观察结果一致,即在两个年龄段,约束都会增加血浆皮质酮。而且在两个年龄段,仅在较长的抑制期之后,下丘脑的巨细胞区域才有Fos免疫反应性。然而,Fos免疫反应性在几个地区随青春期而变化。在成年人中,在嗅觉前核,皮质和内侧杏仁核,梨状皮层和腱鞘的所有部分中均观察到中等至强烈的Fos免疫反应性。与成年人相反,在青少年的任何这些区域中仅观察到少数Fos阳性细胞。与年轻的雄性大鼠相比,年轻成年人在更广范围的神经元中暴露于相同的应激源会诱导Fos。在少年的特定区域中缺乏Fos阳性细胞可能与特定的杏仁核的成熟有关,后者在许多其他区域都显示出与年龄相关的Fos产生差异。在特定区域中,Fos阳性细胞在青春期出现了对应激源的应答,这可能是成人行为和神经应激源应答的出现的基础。

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