Fujimura Taishi, Tamura Isao, Yoshimura Azumi, Yoneda Toshihide, Takasaki Hitomi, Shiroshita Amon, Shirafuta Yuichiro, Sato Shun, Sugino Norihiro
Department of Obstetrics and Gynecology, Yamaguchi University Graduate School of Medicine, Minamikogushi 1-1-1, Ube 755-8505, Japan.
Yamaguchi University Graduate School of Medicine, Minamikogushi 1-1-1, Ube 755-8505, Japan.
Development. 2025 May 1;152(9). doi: 10.1242/dev.204461. Epub 2025 May 14.
Implantation failure is a major cause of infertility, but its mechanisms remain unclear due to the lack of techniques for constructing organized endometrial structures and recapitulating the implantation process in vitro. Endometrial organoids have recently been developed, but they consist of only epithelial cells, and their apical surface faces inward, preventing blastocyst attachment. We developed an apical-out mouse endometrial organoid incorporating epithelial and stromal cells, and examined its ability to recapitulate implantation with mouse blastocysts. Mouse uteri were digested with collagenase and cultured in monolayers. The resulting aggregates were then transferred to low-attachment plates for 3D culture. After 7 days, self-organized aggregates contained E-cadherin-positive epithelial cells outside and vimentin-positive stromal cells inside. Mucin 1 signals were observed on the apical side of epithelial cells, confirming the apical-out orientation. Organoids were stimulated with sex steroid hormones and co-cultured with blastocysts. Time-lapse imaging revealed the four implantation steps: blastocyst attachment, epithelial invagination, entosis and invasion. Invaded cells expressed proliferin while surrounding stromal cells expressed cyclooxygenase 2, indicating trophoblast differentiation and decidualization. This novel organoid closely recapitulates the mouse endometrium and implantation process in vitro.
着床失败是不孕的主要原因,但由于缺乏构建有组织的子宫内膜结构和在体外重现着床过程的技术,其机制仍不清楚。子宫内膜类器官最近已被开发出来,但它们仅由上皮细胞组成,且其顶端表面朝内,阻碍了囊胚附着。我们开发了一种包含上皮细胞和基质细胞的顶端向外的小鼠子宫内膜类器官,并研究了其与小鼠囊胚重现着床的能力。用胶原酶消化小鼠子宫并单层培养。然后将所得聚集体转移到低附着板上进行三维培养。7天后,自组织聚集体外部含有E-钙黏蛋白阳性上皮细胞,内部含有波形蛋白阳性基质细胞。在上皮细胞顶端侧观察到黏蛋白1信号,证实了顶端向外的方向。用性类固醇激素刺激类器官并与囊胚共培养。延时成像揭示了四个着床步骤:囊胚附着、上皮内陷、细胞内吞和侵入。侵入的细胞表达增殖蛋白,而周围的基质细胞表达环氧化酶2,表明滋养层细胞分化和蜕膜化。这种新型类器官在体外紧密重现了小鼠子宫内膜和着床过程。