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垂体中叶的 CD9 阳性细胞是前叶产生催乳素细胞的重要来源。

CD9-positive cells in the intermediate lobe of the pituitary gland are important supplier for prolactin-producing cells in the anterior lobe.

机构信息

Laboratory of Anatomy and Cell Biology, Department of Health Sciences, Kyorin University, 5-4-1 Shimorenjaku, Mitaka, Tokyo, 181-8612, Japan.

Department of Biological Science, Faculty of Science, Kanagawa University, 2946 Tsuchiya, Hiratsuka, Kanagawa, 259-1293, Japan.

出版信息

Cell Tissue Res. 2021 Sep;385(3):713-726. doi: 10.1007/s00441-021-03460-5. Epub 2021 May 7.

Abstract

A supply of hormone-producing cells from stem/progenitor cells is critical to sustain the endocrine activity of the pituitary gland. In the adenohypophysis composing the anterior and intermediate lobe (AL and IL, respectively), stem/progenitor cells expressing sex-determining region Y-box 2 (SOX2) and S100β are located in the marginal cell layer (MCL) facing Rathke's cleft (primary niche) and the parenchyma of the AL (secondary niche). Our previous studies using mice and rats indicated that the tetraspanin superfamily CD9 and CD81 are expressed in S100β/SOX2-positive cells of primary and secondary niches (named CD9/CD81/S100β/SOX2-positive cell), and the cells located in the AL-side niches exhibit plasticity and multipotency. However, it is unclear whether CD9/CD81/S100β/SOX2-positive cells in the IL-side primary niche are stem/progenitor cells for the AL or IL. Here, we successfully isolated pure CD9/CD81/S100β/SOX2-positive cells from the IL-side primary niche. They had a higher level of S100β and SOX2 mRNA and a greater pituisphere forming capacity than those of CD9/CD81/S100β/SOX2-positive cells isolated from the AL. They also had capacity to differentiate into all types of adenohypophyseal hormone-producing cells, concomitantly with the loss of CD9 expression. Loss of CD9 and CD81 function in CD9/CD81/S100β/SOX2-positive cells by siRNA treatment impaired prolactin cell differentiation. Consistently, in the pituitary gland of CD9/CD81 double knockout mice, dysgenesis of the MCL and a lower population of prolactin cells were observed. These results suggest that the CD9/CD81/S100β/SOX2-positive cells in the MCL of the IL-side are potential suppliers of adult core stem cells in the AL.

摘要

从干细胞/祖细胞中供应产生激素的细胞对于维持脑垂体的内分泌活性至关重要。在前叶和中间叶(分别为 AL 和 IL)组成的腺垂体中,表达性别决定区 Y-box 2(SOX2)和 S100β的干细胞/祖细胞位于面向 Rathke 裂隙(初级壁龛)的边缘细胞层(MCL)和 AL 的实质中(次级壁龛)。我们之前使用小鼠和大鼠的研究表明,四跨膜蛋白超家族 CD9 和 CD81 在初级和次级壁龛的 S100β/SOX2 阳性细胞中表达(称为 CD9/CD81/S100β/SOX2 阳性细胞),并且位于 AL 侧壁龛的细胞表现出可塑性和多能性。然而,尚不清楚 IL 侧初级壁龛中的 CD9/CD81/S100β/SOX2 阳性细胞是否是 AL 或 IL 的干细胞/祖细胞。在这里,我们成功地从 IL 侧初级壁龛中分离出纯 CD9/CD81/S100β/SOX2 阳性细胞。与从 AL 分离的 CD9/CD81/S100β/SOX2 阳性细胞相比,它们具有更高水平的 S100β 和 SOX2 mRNA,并且具有更大的 pituisphere 形成能力。它们还具有分化为所有类型的腺垂体激素产生细胞的能力,同时伴随着 CD9 表达的丧失。siRNA 处理对 CD9/CD81/S100β/SOX2 阳性细胞中 CD9 和 CD81 功能的丧失会损害催乳素细胞的分化。一致地,在 CD9/CD81 双敲除小鼠的垂体中,观察到 MCL 发育不良和催乳素细胞数量减少。这些结果表明,IL 侧 MCL 中的 CD9/CD81/S100β/SOX2 阳性细胞是 AL 中成年核心干细胞的潜在供应者。

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