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缺水诱导近交多饮小鼠大脑中c-fos蛋白的区域表达。

Water deprivation induces regional expression of c-fos protein in the brain of inbred polydipsic mice.

作者信息

Ueta Y, Yamashita H, Kawata M, Koizumi K

机构信息

Department of Physiology, University of Occupational and Environmental Health, School of Medicine, Kitakyushu, Japan.

出版信息

Brain Res. 1995 Apr 24;677(2):221-8. doi: 10.1016/0006-8993(95)00142-d.

Abstract

We studied the effects of water deprivation on the expression of c-fos protein (Fos) in the brain of inbred polydipsic mice, STR/N strain, that show extreme polydipsia without a lack of vasopressin in the body. Non-polydipsic mice, ICR strain, were used as controls. All male animals were deprived of water for 24 and 48 h. Fos-like immunoreactivity (Fos-LI) in the brain was studied by immunohistochemical techniques. In both groups of mice water deprivation induced a remarkable increase in Fos-LI in the hypothalamic paraventricular (PVN) and supraoptic (SON) nuclei, the median preoptic nucleus (MnPO), the organum vasculosum laminae terminalis (OVLT) and the subfornical organ (SFO). A far more increase, however, was seen in the MnPO, the SFO and the area postrema (AP) of the polydipsic mice compared to those of the non-polydipsic control mice. In the nucleus of the tractus solitarius (NTS) and in the anteroventral part of the PVN (avPVN), water deprivation caused a clear increase in Fos-LI in the polydipsic mice, while in the non-polydipsic mice the same treatment induced no Fos-LI in the NTS and no change in the avPVN. These results indicate that neurons in the circumventricular organs and the NTS are strongly activated by water deprivation in the polydipsic mice, suggesting that these brain structures play an important role in the polydipsia.

摘要

我们研究了缺水对近交系多饮小鼠(STR/N品系)大脑中c-fos蛋白(Fos)表达的影响,该品系小鼠表现出极度多饮但体内不缺乏抗利尿激素。非多饮小鼠(ICR品系)用作对照。所有雄性动物均被剥夺水分24小时和48小时。通过免疫组织化学技术研究大脑中的Fos样免疫反应性(Fos-LI)。在两组小鼠中,缺水均导致下丘脑室旁核(PVN)、视上核(SON)、视前正中核(MnPO)、终板血管器(OVLT)和穹窿下器官(SFO)中的Fos-LI显著增加。然而,与非多饮对照小鼠相比,多饮小鼠的MnPO、SFO和最后区(AP)中的增加幅度要大得多。在孤束核(NTS)和PVN的腹前部分(avPVN),缺水导致多饮小鼠的Fos-LI明显增加,而非多饮小鼠在相同处理下,NTS中未诱导出Fos-LI,avPVN也无变化。这些结果表明,在多饮小鼠中,室周器官和NTS中的神经元因缺水而被强烈激活,提示这些脑结构在多饮中起重要作用。

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