垂体促乳素分泌和内皮细胞的增加促进了干祖细胞CD9/ sox2阳性细胞的分化

K. Horiguchi, K. Fujiwara, T. Tsukada, T. Nakakura, S. Yoshida, R. Hasegawa, S. Takigami
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摘要

性别决定区Y-box 2 (SOX2)阳性的细胞是腺垂体的干/祖细胞,包括前叶和中间叶(分别为AL和IL)。细胞位于边缘细胞层(MCL)面对Rathke 's裂隙(初级生态位)和AL薄壁(次级生态位)。我们之前在体外证明了il侧MCL中的四跨蛋白超家族CD9和SOX2双阳性(CD9/SOX2阳性)细胞迁移到AL侧并分化为AL实质中的激素产生细胞和内皮细胞。在这里,我们进行了体内研究,以评估il侧CD9/ sox2阳性细胞在妊娠、哺乳期和己烯雌酚(DES;(雌激素类似物),当在大鼠垂体AL中观察到催乳素(PRL)细胞数量增加时。CD9/SOX2-、CD9/Ki67-和PRL/ tunel阳性细胞比例在妊娠和DES治疗期间降低。相比之下,妊娠和DES治疗期间AL侧MCL和AL实质中CD9/ prl阳性细胞数量增加。DES治疗后,AL侧MCL和AL实质中PRL/ ki67阳性细胞比例增加。接下来,我们使用抗cd9抗体从il侧MCL中分离出cd9阳性细胞。在细胞培养过程中,细胞形成自由漂浮的三维簇(垂体)。此外,垂体内CD9阳性细胞分化为PRL细胞,DES可促进其分化潜能。这些发现提示,il侧MCL内CD9/ sox2阳性细胞可能在雌激素的影响下作为AL薄壁成体干细胞供应PRL细胞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differentiation of stem progenitor CD9/SOX2-positive cells is promoted with increased prolactin-producing and endothelial cells in the pituitary
Sex-determining region Y-box 2 (SOX2)-positive cells are stem/progenitor cells in the adenohypophysis, comprising the anterior and intermediate lobes (AL and IL, respectively). The cells are located in the marginal cell layer (MCL) facing Rathke’s cleft (primary niche) and the parenchyma of the AL (secondary niche). We previously demonstrated in vitro that the tetraspanin superfamily CD9 and SOX2 double-positive (CD9/SOX2-positive) cells in the IL-side MCL migrate to the AL side and differentiate into hormone-producing and endothelial cells in the AL parenchyma. Here, we performed in vivo studies to evaluate the role of IL-side CD9/SOX2-positive cells in pregnancy, lactation, and treatment with diethylstilbestrol (DES; an estrogen analog) when an increased population of prolactin (PRL) cells was observed in the AL of the rat pituitary. The proportions of CD9/SOX2-, CD9/Ki67-, and PRL/TUNEL-positive cells decreased in the primary and secondary niches during pregnancy and DES treatment. In contrast, the number of CD9/PRL-positive cells increased in the AL-side MCL and AL parenchyma during pregnancy and during DES treatment. The proportion of PRL/Ki67-positive cells increased in the AL-side MCL and AL parenchyma in response to DES treatment. Next, we isolated CD9-positive cells from the IL-side MCL using an anti-CD9 antibody. During cell culture, the cells formed free-floating three-dimensional clusters (pituispheres). Furthermore, CD9-positive cells in the pituisphere differentiated into PRL cells, and their differentiation potential was promoted by DES. These findings suggest that CD9/SOX2-positive cells in the IL-side MCL may act as adult stem cells in the AL parenchyma that supply PRL cells under the influence of estrogen.
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