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Folliculostellate cells in pituitary pars distalis of male viscacha: immunohistochemical, morphometric and ultrastructural study

机译:雄性内脏垂体远端的卵泡状细胞:免疫组织化学,形态计量学和超微结构研究

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摘要

Folliculostellate cells (FSC) have been reported in pituitary of several mammalian species. FSC morphology and secreted substances have been instrumental to the understanding of their function. The purpose of this work was to perform an immunohistochemical, morphometric and ultrastructural study of the pituitary pars distalis FSC in adult male viscacha and to analyze their relation with hormone secreting cells. Immunohistochemistry and image analysis were carried out in different sectors of the gland, from the middle (sector 1) to the glandular periphery (sector 5). Transmission electron microscopy with lanthanum as electrodense tracer was used. FSC formed follicles with PAS-positive colloid inside. They expressed S-100 protein mainly in both nucleus and cytoplasm. FSC were stellate-like in shape and exhibited short cytoplasmic processes that contacted with blood vessels and endocrine cells. In addition, some follicular colloids were immunostained with anti-S-100 protein. A few FSC were immunostained with anti-glial fibrillary acidic protein (GFAP) and anti-vimentin. The morphometric parameters analyzed (percentages of S-100-positive total, cellular and colloidal areas) increased from sector 1 to sector 3 and then decreased to sector 5. Hormone secreting cells, mainly lactotrophs, gonadotrophs and corticotrophs were associated with FSC and follicles. The ultrastructural study demonstrated that FSC developed junctional complexes and desmosomes between their lateral membranes. Lanthanum freely penetrated the spaces between granulated cells and FSC, but did not penetrate into the follicular lumen. In conclusion: 1) the differential expression of S-100 protein, GFAP and vimentin may indicate different physiological stages of FSC; 2) the expression of these proteins suggests a neuroectodermic origin of these cells; 3) FSC spatial distribution, association with endocrine cells, and the generation of an intercellular communication network suggest that FSC are involved in the pituitary pars distalis paracrine regulation of the viscacha.
机译:已经报道了几种哺乳动物的垂体中的卵泡细胞(FSC)。 FSC形态和分泌物质有助于理解其功能。这项工作的目的是对成年雄性内脏粘膜下垂体FSC进行免疫组织化学,形态计量学和超微结构研究,并分析其与激素分泌细胞的关系。免疫组织化学和图像分析在腺体的不同部位进行,从中部(部位1)到腺体周围(部位5)。使用以镧作为电极示踪剂的透射电子显微镜。 FSC形成了带有PAS阳性胶体的卵泡。他们主要在细胞核和细胞质中表达S-100蛋白。 FSC的形状呈星状,并具有与血管和内分泌细胞接触的短细胞质过程。另外,一些卵泡胶体用抗S-100蛋白免疫染色。少数FSC用抗胶质纤维酸性蛋白(GFAP)和抗波形蛋白免疫染色。分析的形态学参数(S-100阳性总面积,细胞和胶体面积的百分比)从第1区增加到第3区,然后下降到第5区。激素分泌细胞(主要是乳营养菌,促性腺激素和皮质营养素)与FSC和卵泡有关。超微结构研究表明,FSC在其侧膜之间形成了连接复合物和桥粒。镧自由地渗透到颗粒细胞和FSC之间的空间,但没有渗透到卵泡腔中。结论:1)S-100蛋白,GFAP和波形蛋白的差异表达可能表明FSC的生理阶段不同; 2)这些蛋白质的表达暗示了这些细胞的神经外皮起源; 3)FSC的空间分布,与内分泌细胞的联系以及细胞间通讯网络的产生表明FSC参与了内脏垂体远端的旁分泌调节。

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