Auger C J, Vanzo R J
Department of Zoology, University of Wisconsin, Wisconsin, WI 53706, USA.
J Neuroendocrinol. 2006 Mar;18(3):187-94. doi: 10.1111/j.1365-2826.2005.01400.x.
The steroid sensitive vasopressin cells of the bed nucleus of the stria terminalis (BST) and centromedial amygdala (CMA) are involved in numerous behavioural and physiological functions. These cells are known to be greatly influenced by gonadal steroids. Castration reduces and testosterone replacement restores arginine vasopressin (AVP)-immunoreactive (-ir) labelling and AVP mRNA expression in the BST and CMA. Gonadal steroids appear to act directly in AVP-expressing cells within the BST and CMA, because the majority of AVP-ir cells in these areas contain oestrogen and androgen receptor immunoreactivity. Recently, we have localised progestin receptor immunoreactivity in virtually all of the AVP-ir cells in the BST and CMA. To understand the role played by progestin receptors in AVP cells within the BST and CMA, we treated male rats with 1 mg of progesterone or oil for 5 days, and then examined AVP immunoreactivity within the brain. We found that progesterone decreased AVP-ir labelling within the BST and CMA, as well as in two of the projection sites of these cells, the lateral septum and lateral habenula. Progesterone treatment did not alter testosterone secretion from the testes, nor did it alter adult male sexual behaviour. These data illustrate an additional mechanism by which the AVP cells in the BST and CMA can be regulated. These data also suggest that progesterone may act in the male brain to influence behaviours that are AVP-dependent.
终纹床核(BST)和杏仁核中央内侧核(CMA)中对类固醇敏感的加压素细胞参与多种行为和生理功能。已知这些细胞受性腺类固醇的影响很大。去势会减少,而睾酮替代则可恢复BST和CMA中精氨酸加压素(AVP)免疫反应性(-ir)标记及AVP mRNA表达。性腺类固醇似乎直接作用于BST和CMA中表达AVP的细胞,因为这些区域中的大多数AVP-ir细胞含有雌激素和雄激素受体免疫反应性。最近,我们在BST和CMA中几乎所有的AVP-ir细胞中定位了孕激素受体免疫反应性。为了解孕激素受体在BST和CMA的AVP细胞中所起的作用,我们用1毫克孕酮或油处理雄性大鼠5天,然后检查大脑中的AVP免疫反应性。我们发现,孕酮降低了BST和CMA以及这些细胞的两个投射部位,即外侧隔区和外侧缰核中的AVP-ir标记。孕酮处理并未改变睾丸的睾酮分泌,也未改变成年雄性性行为。这些数据说明了一种可调节BST和CMA中AVP细胞的额外机制。这些数据还表明,孕酮可能在雄性大脑中发挥作用,影响依赖AVP的行为。