Dueñas M, Luquín S, Chowen J A, Torres-Alemán I, Naftolin F, Garcia-Segura L M
Instituto Cajal, CSIC, Madrid, Spain.
Neuroendocrinology. 1994 Jun;59(6):528-38. doi: 10.1159/000126702.
The influence of gonadal steroids on insulin-like growth factor I (IGF-I)-like immunoreactivity was assessed in the rat arcuate nucleus, an area of the hypothalamus that regulates pituitary secretion. IGF-I-like immunoreactivity was observed in hypothalamic cells with the morphological aspects of tanycytes and astrocytes. The surface density of IGF-I-like immunoreactive glia increased with puberty in the arcuate nucleus of male and female rats, while decreasing with age in other brain areas. Gender differences in the surface density of IGF-I-like immunoreactive glia were detected in adult animals, with males and androgenized females having significantly higher values than normal females. In the latter, the surface density of IGF-I-like immunoreactive glia was increased in the afternoon of proestrus and in the morning of estrus compared to the morning of proestrus, diestrus and metestrus. In addition, IGF-I-like immunoreactivity showed a dose-dependent increase in ovariectomized rats injected with 17 beta-estradiol, but not in those receiving 17 alpha-estradiol. The effect of 17 beta-estradiol was blocked by simultaneous administration of progesterone, while this hormone alone had no effect. These results indicate that IGF-I-like immunoreactivity in arcuate glial cells is affected by the hormonal environment and suggest that IGF-I-like immunoreactive glia may be involved in neuroendocrine events within the hypothalamus.
在大鼠弓状核(下丘脑调节垂体分泌的一个区域)中评估了性腺类固醇对胰岛素样生长因子I(IGF-I)样免疫反应性的影响。在具有伸长细胞和星形胶质细胞形态特征的下丘脑细胞中观察到了IGF-I样免疫反应性。在雄性和雌性大鼠的弓状核中,IGF-I样免疫反应性胶质细胞的表面密度随青春期增加,而在其他脑区则随年龄降低。在成年动物中检测到IGF-I样免疫反应性胶质细胞表面密度存在性别差异,雄性和雄激素化雌性的该值显著高于正常雌性。在后者中,与发情前期、间情期和发情后期的早晨相比,发情前期下午和发情期早晨IGF-I样免疫反应性胶质细胞的表面密度增加。此外,在注射17β-雌二醇的去卵巢大鼠中,IGF-I样免疫反应性呈剂量依赖性增加,但在接受17α-雌二醇的大鼠中则没有。同时给予孕酮可阻断17β-雌二醇的作用,而单独使用该激素则无作用。这些结果表明,弓状胶质细胞中的IGF-I样免疫反应性受激素环境影响,并提示IGF-I样免疫反应性胶质细胞可能参与下丘脑内的神经内分泌事件。