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首页> 外文期刊>American Journal of Physiology >Estrogen receptor-alpha expression in osmosensitive elements of the lamina terminalis: regulation by hypertonicity.
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Estrogen receptor-alpha expression in osmosensitive elements of the lamina terminalis: regulation by hypertonicity.

机译:终板的渗透敏感元件中的雌激素受体-α表达:高渗调节。

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The subfornical organ (SFO), median preoptic nucleus (MnPO), and organum vasculosum lamina terminalis (OVLT), which are associated with the lamina terminalis, are important in the control of body fluid balance. Neurons in these regions express estrogen receptor (ER)-alpha, but whether the ER-alpha neurons are activated by hypertonicity and whether hypertonicity regulates ER-alpha expression are not known. Using fluorescent, double-label immunocytochemistry, we examined the expression of ER-alpha-immunoreactivity (ir) and Fos-ir in control and water-deprived male rats. In control animals, numerous ER-alpha-positive neurons were expressed in the periphery of the SFO, in both the dorsal and ventral MnPO, and in the dorsal cap of the OVLT. Fos-positive neurons were sparse in euhydrated rats but were numerous in the SFO, MnPO, and the dorsal cap of the OVLT after 48-h water deprivation. Most ER-alpha-ir neurons in these areas were positive for Fos, indicating a significant degree of colocalization. To examine the effect of dehydration on ER-alpha expression, animals with and without lesions surrounding the anterior and ventral portion of the 3rd ventricle (AV3V) were water deprived for 48 h. Water deprivation resulted in a moderate increase in ER-alpha-ir in the SFO of sham-lesioned rats (P = 0.03) and a dramatic elevation in AV3V-lesioned animals (P < 0.05). This was probably induced by the significant increase in plasma osmolality in both dehydrated groups (P < 0.001) rather than a decrease in blood volume, because hematocrit was significantly increased only in the dehydrated sham-lesioned animals. Thus these studies implicate the osmosensitive regions of the lamina terminalis as possible targets for sex steroid effects on body fluid homeostasis.
机译:与椎板末端相关的亚胫下器官(SFO),视前中位核(MnPO)和终末器官管层(OVLT)​​在控制体液平衡中很重要。这些区域中的神经元表达雌激素受体(ER)-α,但尚不清楚ER-α神经元是否被高渗性激活以及高渗性是否调节ER-α的表达。使用荧光双标记免疫细胞化学,我们检查了ER-α-免疫反应性(ir)和Fos-ir在对照和缺水雄性大鼠中的表达。在对照动物中,SFO的外周,腹侧和腹侧MnPO以及OVLT的背顶均表达了许多ER-α阳性神经元。在缺水的大鼠中,Fos阳性神经元稀疏,但在缺水48小时后,在SFO,MnPO和OVLT的背盖中大量存在。这些区域中的大多数ER-alpha-ir神经元的Fos阳性,表明共定位程度很高。为了检查脱水对ER-α表达的影响,将第三脑室(AV3V)的前部和腹侧周围有无病变的动物缺水48小时。缺水导致假手术大鼠的SFO中ER-alpha-ir适度增加(P = 0.03),而AV3V病患动物的SFO急剧升高(P <0.05)。这可能是由于两个脱水组血浆渗透压的显着增加(P <0.001)而不是血容量的减少引起的,因为仅在脱水假手术的动物中血细胞比容显着增加。因此,这些研究暗示了终板的渗透敏感区域可能是性类固醇对体液稳态的影响的靶标。

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