Yousef Mohamed Samy, Imakawa Kazuhiko
Research Institute of Agriculture, Tokai University, Kumamoto 862-8652, Japan.
Department of Theriogenology, Faculty of Veterinary Medicine, Assiut University, Assiut 71515, Egypt.
Int J Mol Sci. 2025 Apr 16;26(8):3772. doi: 10.3390/ijms26083772.
Trophoblast-endometrium interactions play a critical role in the processes of conceptus elongation, attachment, and adhesion, followed by placental development during early pregnancy in ruminants. The attachment between uterine epithelium and trophoblast cells, which is epithelial in nature, requires epithelial to mesenchymal transition (EMT), where the fetal trophoblasts come into contact with maternal epithelial cells without fully invading the maternal tissues. Understanding the early developmental period driving EMT processes in utero in ruminants is fundamental to improving fertility through the prevention of early pregnancy failure and enhancing overall reproductive efficiency in livestock. This review highlights the key events necessary for the early conceptus to progress properly towards firm adhesion with the endometrium, focusing on trophoblast-endometrium interactions. This field holds the potential to elucidate molecular and cellular mechanisms associated with trophoblast and endometrium attachment and adhesion, leading to reduced early embryonic losses and enhanced economic sustainability by developing effective reproductive management strategies.
滋养层与子宫内膜的相互作用在反刍动物妊娠早期的胚胎伸长、着床和黏附过程中起着关键作用,随后是胎盘发育。子宫上皮细胞与滋养层细胞之间的附着本质上是上皮性的,需要上皮-间质转化(EMT),在此过程中,胎儿滋养层细胞与母体上皮细胞接触,但不会完全侵入母体组织。了解反刍动物子宫内驱动EMT过程的早期发育阶段对于通过预防早期妊娠失败来提高生育能力以及提高家畜的整体繁殖效率至关重要。本综述重点介绍了早期胚胎与子宫内膜实现牢固黏附所需的关键事件,着重探讨滋养层与子宫内膜的相互作用。该领域有潜力阐明与滋养层和子宫内膜附着及黏附相关的分子和细胞机制,通过制定有效的生殖管理策略减少早期胚胎损失并提高经济可持续性。