Dada M O, Blake C A
J Endocrinol. 1985 Feb;104(2):185-92. doi: 10.1677/joe.0.1040185.
We have studied gonadotrophin secretion and immunocytochemically stained gonadotrophs and mammotrophs in 35-day-old female rats which had been treated with monosodium glutamate (MSG) as neonates. We also compared our morphometric data in the saline-treated controls with those we have previously obtained in normal adult female rats. The size of the anterior pituitary glands was reduced but the serum levels, the pituitary gland concentrations and contents, and the in-vitro basal release rates of LH and FSH were not significantly altered by MSG treatment. The size of the LH and FSH cells was reduced by MSG administration, but the volume and numerical densities of LH and FSH cells, and the percentage of LH and FSH cells in the pars distalis were not affected. The results suggest that in spite of the smaller size of LH and FSH cells and of the anterior pituitary glands in the MSG-treated rats, the cells contain normal amounts of hormone and the basal LH and FSH secretion rates of the glands are not significantly depressed, contributing to the maintenance of normal serum gonadotrophin concentrations. The volume density of prolactin cells was not increased by MSG treatment. The volume density of gonadotrophs and the percentage of cells which are gonadotrophs in anterior pituitary glands of prepubertal female rats were greater than those in adult female rats, but the reverse was true for the volume density of prolactin cells, suggesting a reciprocal relationship between the relative numbers of gonadotrophs and mammotrophs in prepubertal and adult female rats.
我们研究了新生期用谷氨酸钠(MSG)处理的35日龄雌性大鼠的促性腺激素分泌情况,以及用免疫细胞化学方法染色的促性腺激素细胞和催乳激素细胞。我们还将生理盐水处理的对照组的形态学数据与我们之前在正常成年雌性大鼠中获得的数据进行了比较。MSG处理使垂体前叶大小减小,但血清水平、垂体浓度和含量以及LH和FSH的体外基础释放率未受到显著影响。给予MSG可使LH和FSH细胞的大小减小,但LH和FSH细胞的体积和数量密度以及远侧部LH和FSH细胞的百分比未受影响。结果表明,尽管MSG处理的大鼠中LH和FSH细胞以及垂体前叶较小,但细胞内激素含量正常,腺体的基础LH和FSH分泌率未显著降低,这有助于维持正常的血清促性腺激素浓度。MSG处理未使催乳素细胞的体积密度增加。青春期前雌性大鼠垂体前叶中促性腺激素细胞的体积密度和促性腺激素细胞的百分比高于成年雌性大鼠,但催乳素细胞的体积密度则相反,这表明青春期前和成年雌性大鼠中促性腺激素细胞和催乳激素细胞的相对数量之间存在相互关系。