Allaerts W, Mignon A, Denef C
Laboratory of Cell Pharmacology, University of Leuven, School of Medicine, Belgium.
Cell Tissue Res. 1991 Feb;263(2):217-25. doi: 10.1007/BF00318763.
Semi-thin sections of three-dimensional reaggregates from adult female rat pituitary, cultured in serum-free defined medium, were stained for prolactin, gonadotropin, thyrotropin, growth hormone and S-100, using the double immunolabelling technique. The frequency of juxtaposition between lactotrophs and gonadotrophs was enumerated and compared with the expected frequency at random distribution of polygonal cell profiles in a hexagonal configuration. The proportions of lactotrophs and gonadotrophs in the aggregate sections were determined using stereometrical analysis. The observed frequency of juxtaposition did not differ significantly from the expected frequency. Hence, no reason was found to assume a selective adhesion between lactotrophs and gonadotrophs in adult female rat pituitary reaggregates. A constant proportion of lactotrophs was found to meet the criteria of a cup-shaped morphology, and 70% +/- 9% (mean +/- S.D.) of these so-called cup-shaped lactotrophs were found to be juxtaposed at their concave side to gonadotrophs. Administration of 0.01 nM 17 beta-oestradiol to the culture medium resulted in a significant reduction of the proportion of cup-shaped lactotrophs but did not affect the selectivity of juxtaposition to gonadotrophs. The selectivity of juxtaposition between cup-shaped lactotrophs and gonadotrophs may be the morphological correlate of the functional relationship between these cells, which are known to be involved in an intra-pituitary paracrine communication system.
将成年雌性大鼠垂体的三维重聚集体在无血清限定培养基中培养,制成半薄切片,采用双重免疫标记技术对催乳素、促性腺激素、促甲状腺激素、生长激素和S - 100进行染色。计数催乳细胞和促性腺细胞之间并列的频率,并与六边形结构中多边形细胞轮廓随机分布时的预期频率进行比较。使用体视学分析确定聚集体切片中催乳细胞和促性腺细胞的比例。观察到的并列频率与预期频率无显著差异。因此,没有理由认为成年雌性大鼠垂体重聚集体中催乳细胞和促性腺细胞之间存在选择性黏附。发现一定比例的催乳细胞符合杯状形态标准,并且这些所谓的杯状催乳细胞中有70%±9%(平均值±标准差)在其凹侧与促性腺细胞并列。向培养基中添加0.01 nM的17β - 雌二醇会导致杯状催乳细胞比例显著降低,但不影响与促性腺细胞并列的选择性。杯状催乳细胞和促性腺细胞之间并列的选择性可能是这些细胞之间功能关系的形态学关联,已知这些细胞参与垂体旁分泌通信系统。