Ciprietti Martina, Bueds Celine, Vankelecom Hugo, Vriens Joris
Implantation, Placentation, Pregnancy and Endometriosis (POPPYe) Research group, Department of Development and Regeneration, KU Leuven, Leuven, Belgium.
Laboratory of Tissue Plasticity in Health and Disease, Cluster of Stem Cell and Developmental Biology, Department of Development and Regeneration, KU Leuven, Leuven, Belgium.
Cell Mol Life Sci. 2025 Jul 7;82(1):272. doi: 10.1007/s00018-025-05807-5.
Organoids have emerged as revolutionary biomimetic systems that offer a physiologically relevant in vitro model to study the specific tissue or organ of origin. In the field of female reproductive biology, endometrial organoids have proven their high value in the exploration of intricate physiological processes of the endometrium such as hormonal differentiation (decidualization) and embryo-receptivity, as well as to understand the pathophysiology of diseases associated with endometrial deficits. Moreover, organoid-based adhesion models have emerged as appropriate in vitro platform that faithfully reproduces the receptive endometrium. These in vitro models offer new tools to explore the molecular mechanisms of the early embryo-endometrium interaction and to bypass the barrier of ethical restrictions. This review highlights recent advances in the endometrial research domain, focusing on endometrial epithelial organoid models that closely replicate the cellular, transcriptomic and functional characteristics of the native tissue. A comprehensive overview of the transcriptomic changes during the menstrual cycle is provided, as well as of the detailed comparison between the different cell populations of the endometrium and the endometrial organoid model. Here, we provide evidence that endometrial organoids mimic the native endometrial tissue and offer relevant tools to advance our understanding of endometrial (patho)biology, enabling us to gain insights into molecular pathways.
类器官已成为具有革命性的仿生系统,为研究特定的起源组织或器官提供了一个生理相关的体外模型。在女性生殖生物学领域,子宫内膜类器官已在探索子宫内膜复杂的生理过程(如激素分化(蜕膜化)和胚胎接受性)以及了解与子宫内膜缺陷相关疾病的病理生理学方面证明了其高价值。此外,基于类器官的黏附模型已成为忠实地再现接受性子宫内膜的合适体外平台。这些体外模型提供了新工具,用于探索早期胚胎与子宫内膜相互作用的分子机制,并绕过伦理限制的障碍。本综述重点介绍了子宫内膜研究领域的最新进展,着重于紧密复制天然组织的细胞、转录组和功能特征的子宫内膜上皮类器官模型。提供了月经周期中转录组变化的全面概述,以及子宫内膜不同细胞群与子宫内膜类器官模型之间的详细比较。在此,我们提供证据表明,子宫内膜类器官模拟天然子宫内膜组织,并提供相关工具来推进我们对子宫内膜(病理)生物学的理解,使我们能够深入了解分子途径。