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从已用雌激素处理的雄性大鼠体内撤去雌激素后,垂体前叶滤泡星状细胞可能具有的吞噬作用。

A possible phagocytic role for folliculo-stellate cells of anterior pituitary following estrogen withdrawal from primed male rats.

作者信息

Stokreef J C, Reifel C W, Shin S H

出版信息

Cell Tissue Res. 1986;243(2):255-61. doi: 10.1007/BF00251039.

Abstract

Ultrastructural changes suggesting a phagocytic role for the nongranular folliculo-stellate cells of the anterior pituitary are investigated in estrogen-primed male rats after withdrawal of estrogen. Morphological changes in mammotropes following the removal of a subcutaneous estradiol-containing Silastic implant include the formation of intracellular lipid bodies. These lipid bodies appear to be associated with enhanced estrogen-dependent prolactin secretion in mammotropes. Seven and 24 h after estrogen withdrawal intracellular lipid within mammotropes seems to be released into the intercellular space. Seventy-two h after estrogen withdrawal, lipid droplets are almost entirely cleared from mammotropes while folliculo-stellate cells become packed with lipid globules. Folliculo-stellate cells also undergo dramatic hypertrophy 7 and 24 h after the removal of E2-containing implants. Extensive intercellular junctions including zonulae adhaerentes, desmosomes, and putative gap junctions are formed. Intercellular junctions delineate extravascular channels into which numerous microvilli project. Folliculo-stellate cells appear capable of accumulating many lipid droplets, presumably related to mammotrope metabolism. What appear to be large secondary lysosomes as well as the lipid droplets are observed within folliculo-stellate cells; lipid, therefore, may be degraded through a lysosomal pathway in folliculo-stellate cells.

摘要

在撤除雌激素后,对经雌激素预处理的雄性大鼠垂体前叶非颗粒性滤泡-星状细胞的超微结构变化进行研究,这些变化提示其具有吞噬作用。去除含雌二醇的皮下硅橡胶植入物后,催乳细胞的形态学变化包括细胞内脂质体的形成。这些脂质体似乎与催乳细胞中雌激素依赖性催乳素分泌增加有关。撤除雌激素7小时和24小时后,催乳细胞内的细胞内脂质似乎释放到细胞间隙中。撤除雌激素72小时后,催乳细胞中的脂滴几乎完全清除,而滤泡-星状细胞充满脂质球。去除含E2的植入物7小时和24小时后,滤泡-星状细胞也会发生显著肥大。形成了广泛的细胞间连接,包括黏着小带、桥粒和假定的缝隙连接。细胞间连接勾勒出血管外通道,许多微绒毛伸入其中。滤泡-星状细胞似乎能够积累许多脂滴,这可能与催乳细胞的代谢有关。在滤泡-星状细胞内观察到似乎是大型次级溶酶体以及脂滴;因此,脂质可能通过滤泡-星状细胞中的溶酶体途径降解。

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