Cátedra de Anatomía Humana, Bioquímica y Farmacia, Universidad Nacional de San Luis, San Luis, Argentina.
Anat Rec (Hoboken). 2010 May;293(5):871-8. doi: 10.1002/ar.21083.
The pituitary pars tuberalis (PT) is a glandular zone exhibiting well-defined structural characteristics. Morphologically, it is formed by specific secretory cells, folliculostellate cells, and migratory cells coming from the pars distalis. The purpose of this work was to investigate differences in specific cellular characteristics in the PT of viscachas captured in summer (long photoperiod) and winter (short photoperiod), as well as the effects of chronic melatonin administration in viscachas captured in summer and kept under long photoperiod. In summer, the PT-specific cells exhibited cell-like characteristics with an important secretory activity and a moderate amount of glycogen. In winter, the PT-specific granulated cells showed ultrastructural variations with signs of a reduced synthesis activity. Also, PT showed a high amount of glycogen and a great number of cells in degeneration. After melatonin administration, the ultrastructural characteristics were similar to those observed in winter, but the amount of glycogen was higher. These results suggest possible functional implications as a result of morphological differences between long and short photoperiods, and are in agreement with the variations of the pituitary-gonadal axis, probably in response to the natural photoperiod changes through the pineal melatonin. The ultrastructural differences observed in PT, after melatonin administration, were similar to those observed in the short photoperiod, thus supporting the hypothesis that these cytological changes are induced by melatonin.
垂体中间叶(PT)是一个具有明确结构特征的腺体区域。从形态学上看,它是由特定的分泌细胞、卵泡星状细胞和来自垂体远侧部的迁移细胞组成的。本研究的目的是研究在夏季(长光照期)和冬季(短光照期)捕获的兔鼠 PT 中特定细胞特征的差异,以及在夏季捕获并保持在长光照期的兔鼠中给予慢性褪黑素后的影响。在夏季,PT 特异性细胞表现出细胞样特征,具有重要的分泌活性和中等量的糖原。在冬季,PT 特异性颗粒细胞表现出超微结构的变化,提示合成活性降低。此外,PT 还表现出大量的糖原和大量退化细胞。褪黑素给药后,超微结构特征类似于冬季观察到的特征,但糖原含量较高。这些结果表明,由于长光照期和短光照期之间的形态差异,可能具有功能意义,并且与垂体-性腺轴的变化一致,可能是对松果腺褪黑素引起的自然光照周期变化的反应。褪黑素给药后 PT 观察到的超微结构差异与短光照期观察到的相似,因此支持这些细胞学变化是由褪黑素诱导的假设。