大鼠垂体前叶细胞间通讯:X.大鼠垂体前叶卵泡星状细胞S-100和连接蛋白43的免疫组织化学。

Nobuyuki Shirasawa, Yoshio Mabuchi, Eisuke Sakuma, Osamu Horiuchi, Takashi Yashiro, Motoshi Kikuchi, Yasuo Hashimoto, Yoshihiro Tsuruo, Damon C Herbert, Tsuyoshi Soji
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引用次数: 47

摘要

自1953年Rinehart和Farquhar报道脑垂体前叶存在颗粒状细胞以来,卵泡星状细胞的功能仍有待阐明。在猴子、大鼠和硬骨鱼的垂体前腺中已经发现了细胞间的连接,这表明在该器官中存在细胞间的通讯。我们指出了它们在通过涉及间隙连接的卵泡复杂互连系统快速传播信息中的可能作用。间隙连接/卵泡-星状细胞网络在垂体系统如下丘脑-垂体-性腺轴的成熟和调节中是必不可少的。研究表明,一个网络参与了电生理信息的远距离传导,利用离子Ca(++),通过间隙连接的信号传导到其他卵泡星状细胞。本研究采用60日龄雄性大鼠进行S-100蛋白、I型胶原蛋白、连接蛋白43的光镜免疫组化和电镜观察卵泡星状细胞与垂体颗粒细胞的细胞网络形态关系。在垂体的过渡区可以清楚地观察到抗s -100蛋白阳性细胞群。抗s -100蛋白阳性细胞及其细胞质过程也存在于前叶,并聚集在一起形成滤泡腔。I型胶原蛋白清晰地勾勒出垂体前叶不完整的小叶或小管样结构,形成细胞索。在滤泡腔内存在大量微绒毛,而在腔内周围,连接特化包括间隙连接阳性表达连接蛋白43。连接蛋白43阳性位点分布不均匀。两个细胞簇连接处可见小的或点状的阳性位点;细胞鉴定为S-100细胞。连接蛋白43和生长激素(GH)或连接蛋白43和黄体生成素(LH)的双重免疫组化染色也显示连接蛋白43和生长激素或黄体生成素(LH)细胞没有直接关系。这些发现表明,有两种信息是垂体释放激素所必需的。一种是通过门静脉系统,另一种是通过卵泡星状细胞的间隙连接介导的网络。与卵泡星状细胞细胞膜直接相连的颗粒细胞能够通过间隙连接的通讯排出分泌颗粒,而离卵泡星状细胞较远的颗粒细胞只能通过门静脉系统的垂体激素释放激素排出激素。
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Intercellular communication within the rat anterior pituitary gland: X. Immunohistocytochemistry of S-100 and connexin 43 of folliculo-stellate cells in the rat anterior pituitary gland.

Since Rinehart and Farquhar reported the presence of agranulated cells in the anterior pituitary gland in 1953, the functions of the folliculo-stellate cell remain to be clarified. Intercellular junctions have been described in the monkey, rat, and teleost anterior pituitary glands, indicating the existence of cell-to-cell communication within the organ. We pointed to their possible role in the rapid dissemination of information through a complex interconnecting system of follicles involving gap junctions. The gap junctional/folliculo-stellate cellular network was essential in the maturation and regulation of the pituitary gland system such as the hypothalamic-pituitary-gonadal axis. It has been was shown that a network participated in the conduction of electrophysiological information over a long distance using the ion Ca(++), which propagates to other folliculo-stellate cells by signaling through gap junctions. Sixty-day-old male rats were used in this study for light microscopic immunohistochemistry of S-100 protein, type I collagen, and connexin 43, and for electron microscopy to observe the morphological relationships between the cellular networks of folliculo-stellate cells and granulated pituitary cells. Clusters of anti-S-100 protein-positive cells were clearly observed in a region of the hypophysis tentatively named the transition zone. Anti-S-100 protein-positive cells and their cytoplasmic processes were also present in the anterior lobe and assembled together to form follicular lumina. Type I collagen was clearly shown outlining the incomplete lobular or ductule-like structure making cell cords in the anterior pituitary gland. Numerous microvilli were present within the follicular lumen while around the lumina, junctional specializations including gap junctions were positive for the connexin 43 protein. A nonuniform distribution of the connexin 43-positive sites were observed. Small or dot-shaped positive sites were noted where two clusters of cells were connected; the cells were identified as S-100 cells. Double immunohistochemical staining of the connexin 43 and growth hormone (GH) or connexin 43 and luteinizing hormone (LH) was also performed, demonstrating no direct relationship between the connexin 43 and either the GH or LH cells. These findings indicate that there are two kinds of messages necessary for the hormone release in the pituitary gland. One is via the portal vein system, the other is through the gap junction-mediated networks of folliculo-stellate cells. The granulated cells directly associate with cell membrane of folliculo-stellate cells are able to discharge secretory granules through communication via gap junctions, while those granulated cells that are more distant from the folliculo-stellate cells are only able to discharge hormones via the pituitary hormone-releasing hormone from the portal vein system.

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