Yoshida Saishu, Nishimura Naoto, Ueharu Hiroki, Kanno Naoko, Higuchi Masashi, Horiguchi Kotaro, Kato Takako, Kato Yukio
Division of Life Science, Graduate School of Agriculture, Meiji University, Kanagawa, Japan; Organization for the Strategic Coordination of Research and Intellectual Property, Meiji University, Kanagawa, Japan; Institute of Reproduction and Endocrinology, Meiji University, Kanagawa, Japan.
Division of Life Science, Graduate School of Agriculture, Meiji University, Kanagawa, Japan.
Stem Cell Res. 2016 Sep;17(2):318-329. doi: 10.1016/j.scr.2016.08.016. Epub 2016 Aug 30.
Recent studies have demonstrated that Sox2-expressing stem/progenitor cells play roles in the pituitary cell turnover. Two types of niches have been proposed for stem/progenitor cells, the marginal cell layer (MCL) and the dense cell clusters in the parenchyma. Among them, the appearance of the parenchymal-niche only after birth indicates that this niche is involved in the cell turnover required for the postnatal pituitary. However, little is known about the roles of the parenchymal-niche and its regulation. The present study aimed to isolate pituitary stem/progenitor cells from the parenchymal-niche in the adult rat pituitary. Cell dispersion by stepwise treatment with proteases allowed the isolation of dense cell clusters. Immunocytochemistry demonstrated that clusters are universally composed of SOX2-positive cells, and most of them are positive for PROP1. Taken together with the anatomical analysis, we concluded that the isolated clusters are the parenchymal stem/progenitor cell (PS)-clusters, not the MCL-one. PS-clusters cultivated by serum-free overlay 3-dimensional culture maintained their stemness, and treatment with bFGF and EGF induced cyst-formation. Moreover, PS-clusters demonstrated some differentiation capacity with GSK3β-inhibitor treatment. Collectively, the present study demonstrates a simple method for isolating stem/progenitor cells from the parenchymal-niche, and provides tools to analyze the factors for regulating the pituitary niches.
最近的研究表明,表达Sox2的干/祖细胞在垂体细胞更新中发挥作用。已提出两种类型的干细胞龛,即边缘细胞层(MCL)和实质内的致密细胞簇。其中,实质龛仅在出生后出现,这表明该龛参与了出生后垂体所需的细胞更新。然而,关于实质龛的作用及其调节知之甚少。本研究旨在从成年大鼠垂体的实质龛中分离垂体干/祖细胞。通过用蛋白酶逐步处理进行细胞分散,从而分离出致密细胞簇。免疫细胞化学表明,这些簇普遍由SOX2阳性细胞组成,并且其中大多数对PROP1呈阳性。结合解剖学分析,我们得出结论,分离出的簇是实质干/祖细胞(PS)簇,而不是MCL簇。通过无血清覆盖三维培养法培养的PS簇保持了它们的干性,并且用bFGF和EGF处理诱导了囊肿形成。此外,用GSK3β抑制剂处理后,PS簇表现出一定的分化能力。总体而言,本研究展示了一种从实质龛中分离干/祖细胞的简单方法,并提供了分析调节垂体龛的因素的工具。