与成年雄性接触的年轻雌性保加利亚仓鼠(Phodopus campbelli)终纹床核(BNST)的变化

David S. Reasner, Robert E. Johnston, Timothy J. Devoogd
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引用次数: 3

摘要

在雌性啮齿动物雄性诱导的青春期加速过程中,犁鼻系统的中心成分似乎介导了下丘脑外对促性腺激素释放的控制。为了描述终纹床核(BNST)并确定这一组成部分的表鼻系统是否在青春期早期发生改变,雌性保加利亚仓鼠(Phodopus campbelli)的前纹床核被细分为三个区域:内侧、外侧和腹侧。对三组雌性仓鼠的横截面积、体大小和神经元密度进行了比较:(1)与成年雄鼠合住一段时间后生殖发育加速的年轻雌性仓鼠;(2)与成年雄鼠合住一段时间后生殖发育加速的年轻雌性仓鼠;(3)处于自然青春期的老年雌性仓鼠。与成年雄鼠同住并经历青春期加速发生的雌鼠相比,同时期(断奶后10天)单独饲养的雌鼠或单独饲养至青春期自发发生年龄(断奶后25天)的雌鼠BNST侧前分支明显更小。在三组中,腹侧和内侧细分的大小没有差异。此外,尽管体大小和神经元密度在前BNST细分中存在显著差异,但这些细分特征在早熟、青春期前和较老的青春期雌性中是相似的。我们的发现表明犁鼻系统的一个核心组成部分在环境刺激下经历了神经解剖学的改变,并建议在这个动态的个体发生时期进一步检查BNST。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alteration of the bed nucleus of the stria terminalis (BNST) in young female Djungarian hamsters (Phodopus campbelli) exposed to adult males

Central components of the vomeronasal system appear to mediate extrahypothalamic control of gonadotropin release during male-induced acceleration of puberty onset in female rodents. In order to describe the bed nucleus of the stria terminalis (BNST) and to determine whether this component of the vomeronasal system is altered following early puberty onset, the anterior BNST of female Djungarian hamsters (Phodopus campbelli) was subdivided into three regions: medial, lateral, and ventral. The cross-sectional area, soma size, and neuronal density of each subdivision was compared among female hamsters in three groups: (1) young females showing accelerated reproductive development following a period of housing with an adult male, (2) young females matched by age with the accelerated females but housed alone during the same period, and (3) older females at the age of spontaneous puberty. Females housed with an adult male and undergoing accelerated puberty onset had significantly smaller lateral anterior BNST subdivisions than females housed alone for the same period (10 days following weaning) or housed alone until the age of spontaneous puberty onset (25 days following weaning). The size of the ventral and medial subdivisions was not different in the three groups. Furthermore, although soma size and neuronal density differed markedly among the anterior BNST subdivisions, these subdivision characteristics were similar in the accelerated, prepubertal, and older pubertal females. Our finding demonstrates that a central component of the vomeronasal system undergoes neuroanatomical alteration in response to environmental stimuli and recommends further examination of the BNST during this dynamic ontogenetic period.

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