首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Hypertrophy of the ageing rat medial preoptic nucleus.
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Hypertrophy of the ageing rat medial preoptic nucleus.

机译:老化大鼠视前内侧核的肥大。

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The medial preoptic nucleus (MPN) plays an essential role in the coordination of behaviours and physiological responses necessary for reproduction. Since ageing is associated with a progressive deterioration of reproductive functions we have explored the possibility that changes in the structural organization of the MPN might be implicated in this process. Thus, we have estimated the volume of the MPN, and the total number and size of its neurons, using stereological methods, and quantitatively evaluated the dendritic trees of MPN neurons in Golgi-impregnated material. Male and female rats, aged 6, 24 and 30 months, were independently analysed. No cell loss was observed in aged rats of both sexes. However, the volume of the MPN and the somatic size of its neurons were remarkably enlarged in aged rats. No significant age-related changes in the size or shape of the dendritic trees or in dendritic spine density were found. To evaluate whether the changes observed in aged rats could be ascribed to an altered interaction between gonadal steroids and steroid-sensitive neurons, we have additionally estimated the total number of MPN neurons immunoreactive for the estrogen receptor-alpha. No significant age-related variations were detected. The age effects upon the MPN were more marked in females than in males and, consequently, the sexual dimorphisms in neuronal size and in the number of estrogen receptor-immunoreactive neurons were blunted in aged rats.
机译:视前内侧核(MPN)在协调行为和生殖所必需的生理反应中起着至关重要的作用。由于衰老与生殖功能的逐步恶化有关,因此我们探索了在此过程中可能牵涉到MPN结构组织变化的可能性。因此,我们使用立体学方法估算了MPN的体积及其神经元的总数和大小,并定量评估了高尔基浸渍材料中MPN神经元的树突树。分别对6、24和30个月大的雄性和雌性大鼠进行了分析。在男女老龄大鼠中均未观察到细胞丢失。然而,在老年大鼠中,MPN的体积及其神经元的体细胞大小明显增加。未发现树突树的大小或形状或树突棘密度与年龄相关的显着变化。为了评估在老年大鼠中观察到的变化是否可归因于性腺类固醇与类固醇敏感神经元之间相互作用的改变,我们还估算了对雌激素受体-α具有免疫反应性的MPN神经元总数。没有发现与年龄相关的显着差异。女性对MPN的年龄影响比男性更明显,因此,老年大鼠的神经元大小和雌激素受体免疫反应性神经元数量的性二态性变钝。

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