De Clercq Katrien, Hennes Aurélie, Vriens Joris
Department of Development and Regeneration, Katholieke Universiteit Leuven (KU Leuven).
Department of Development and Regeneration, Katholieke Universiteit Leuven (KU Leuven);
J Vis Exp. 2017 Mar 2(121):55168. doi: 10.3791/55168.
Decidualization is a progesterone-dependent differentiation process of endometrial stromal cells and is a prerequisite for successful embryo implantation. Although many efforts have been made to reveal the underlying mechanisms of decidualization, the exact signaling between the epithelial cells that are in contact with the embryo and the underlying stromal cells remains poorly understood. Therefore, studying decidualization in a way that takes both the epithelial and stromal cells into account could improve our knowledge about the molecular details of decidualization. For this purpose, in vivo models of artificial decidualization are physiologically the most relevant; however, manipulation of intercellular communication is limited. Currently, in vitro cultures of endometrial stromal cells are being used to investigate the modulation of decidualization by several signaling molecules. Conventionally, human or mouse endometrial stromal cells are used. However, the availability of human samples is very often limited. Furthermore, the use of murine tissues is accompanied with variety in the method of culturing. This study presents a validated and standardized method to obtain pure Endometrial Epithelial Cell (EEC) and Stromal Cell (ESC) cultures using adult intact mice treated with estrogen for three consecutive days. The protocol is optimized to improve the yield, viability, and purity of the cells and was further extended in order to study decidualization in a coculture of EEC and ESC. This model may be suitable to exploit the importance of both cell types in decidualization and to evaluate the contribution of significant signaling molecules secreted by EEC or ESC during the intercellular communication.
蜕膜化是子宫内膜基质细胞的一种依赖孕酮的分化过程,是胚胎成功着床的前提条件。尽管人们已付出诸多努力来揭示蜕膜化的潜在机制,但与胚胎接触的上皮细胞和其下方基质细胞之间的确切信号传导仍知之甚少。因此,从同时考虑上皮细胞和基质细胞的角度研究蜕膜化,可能会增进我们对蜕膜化分子细节的了解。出于这个目的,人工蜕膜化的体内模型在生理上最为相关;然而,对细胞间通讯的操控有限。目前,子宫内膜基质细胞的体外培养正被用于研究几种信号分子对蜕膜化的调节作用。传统上,使用的是人类或小鼠的子宫内膜基质细胞。然而,人类样本的获取往往非常有限。此外,使用小鼠组织伴随着培养方法的多样性。本研究提出了一种经过验证的标准化方法,该方法使用连续三天接受雌激素处理的成年完整小鼠来获得纯净的子宫内膜上皮细胞(EEC)和基质细胞(ESC)培养物。该方案经过优化以提高细胞的产量、活力和纯度,并进一步扩展以研究EEC和ESC共培养中的蜕膜化。该模型可能适合于探究这两种细胞类型在蜕膜化中的重要性,并评估EEC或ESC在细胞间通讯过程中分泌的重要信号分子的作用。