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首页> 外文期刊>American Journal of Physiology >Osmotic regulation of estrogen receptor-beta expression in magnocellular vasopressin neurons requires lamina terminalis.
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Osmotic regulation of estrogen receptor-beta expression in magnocellular vasopressin neurons requires lamina terminalis.

机译:大细胞加压素神经元中雌激素受体-β表达的渗透调节需要终板。

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Estrogen receptor-beta (ER-beta) expression in rat magnocellular vasopressin (VP) neurons of the supraoptic and paraventricular nuclei (SON and PVN, respectively) becomes undetectable after 72 h of 2% NaCl consumption. To test the hypothesis that osmosensitive mechanisms that originate in the region of the organum vasculosum lamina terminalis (OVLT) control ER-beta expression in the SON and PVN, animals were water deprived after electrolytic lesions were performed on the area anterior to the ventral third ventricle (AV3V). Such lesions prevent osmotic stimulation of VP release. Four weeks after surgery, male rats [lesioned (n = 16) or sham (n = 14)] were water deprived for 48 h or allowed water ad libitum. Water deprivation eliminated ER-beta-immunoreactivity (-ir) in SON and magnocellular PVN of sham-lesioned animals. Fos-ir was evident in these neurons, and plasma osmolality (Posm) and hematocrit (Ht) were significantly elevated compared with the sham-hydrated rats (Posm, 304 +/- 1 vs. 318 +/- 2 mosmol/kgH2O; P < 0.001; Ht, 49.6 +/- 0.6 vs. 55.0 +/- 0.9%; P < 0.001). ER-beta expression was comparable in sham-hydrated, AV3V-hydrated, and 6 of 8 AV3V-dehydrated rats despite significant increases in Posm in both groups (AV3V hydrated, 312 +/- 2; AV3V dehydrated, 380 +/- 10 mosmol/kgH2O; P < 0.001). OVLT was not ablated in the AV3V-dehydrated rats in which ER-beta was depleted. Fos-ir was low or undetectable in SON in the AV3V-hydrated animals despite elevated Posm values. In AV3V-dehydrated rats, Fos-ir was significantly less than in sham-dehydrated animals but was significantly increased compared with the sham-hydrated group. This could reflect activation by nonosmotic parameters that do not inhibit ER-beta expression. These data support the hypothesis that inhibition of ER-beta expression in the SON by osmotic stimulation is mediated by osmoreceptive neurons in the lamina terminalis.
机译:食用2%NaCl的72小时后,在视光和室旁核(分别为SON和PVN)的大鼠大细胞加压素(VP)神经元中雌激素受体β(ER-beta)的表达变得不可检测。为了验证这一假设,即起源于器官终末血管壁(OVLT)​​区域的渗透敏感性机制控制了SON和PVN中ER-β的表达,在腹侧第三脑室前部进行电解损伤后,动物被禁水(AV3V)。这种损伤阻止渗透压刺激VP释放。手术后四周,将雄性大鼠(病变(n = 16)或假动物(n = 14))缺水48 h或随意饮水。缺水消除了假手术动物的SON和大细胞PVN中的ER-β免疫反应性(-ir)。在这些神经元中明显存在Fos-ir,与假水合大鼠相比,血浆渗透压(Posm)和血细胞比容(Ht)显着升高(Posm,304 +/- 1 vs. 318 +/- 2 mosmol / kgH2O; P <0.001; Ht,49.6 +/- 0.6与55.0 +/- 0.9%; P <0.001)。 ER-β表达在假水合,AV3V水合和8只AV3V脱水大鼠中有6只具有可比性,尽管两组的Posm明显增加(AV3V水合,312 +/- 2; AV3V脱水,380 +/- 10 mosmol / kgH 2 O; P <0.001)。在ER-β耗竭的AV3V脱水大鼠中,OVLT没有消融。尽管Posm值升高,但在AV3V水合动物中SON的Fos-ir较低或无法检测到。在AV3V脱水的大鼠中,Fos-ir明显少于假手术脱水的动物,但与假手术脱水的组相比明显增加。这可能反映了不抑制ER-β表达的非渗透参数的激活。这些数据支持以下假设,即渗透刺激对SON中ER-β表达的抑制作用是由终板中的渗透感受神经元介导的。

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