Department of Biological Regulation, Weizmann Institute, Rehovot, Israel.
Agricultural Research Organization, Volcani Center, Israel.
JCI Insight. 2020 Nov 19;5(22):135775. doi: 10.1172/jci.insight.135775.
Successful implantation is associated with a unique spatial pattern of vascular remodeling, characterized by profound peripheral neovascularization surrounding a periembryo avascular niche. We hypothesized that hyaluronan controls the formation of this distinctive vascular pattern encompassing the embryo. This hypothesis was evaluated by genetic modification of hyaluronan metabolism, specifically targeted to embryonic trophoblast cells. The outcome of altered hyaluronan deposition on uterine vascular remodeling and postimplantation development were analyzed by MRI, detailed histological examinations, and RNA sequencing of uterine NK cells. Our experiments revealed that disruption of hyaluronan synthesis, as well as its increased cleavage at the embryonic niche, impaired implantation by induction of decidual vascular permeability, defective vascular sinus folds formation, breach of the maternal-embryo barrier, elevated MMP-9 expression, and interrupted uterine NK cell recruitment and function. Conversely, enhanced deposition of hyaluronan resulted in the expansion of the maternal-embryo barrier and increased diffusion distance, leading to compromised implantation. The deposition of hyaluronan at the embryonic niche is regulated by progesterone-progesterone receptor signaling. These results demonstrate a pivotal role for hyaluronan in successful pregnancy by fine-tuning the periembryo avascular niche and maternal vascular morphogenesis.
成功的着床与独特的血管重塑空间模式相关,其特征是胚胎周围有明显的周边新生血管形成,而胚胎周围无血管。我们假设透明质酸控制着包含胚胎的这种独特血管模式的形成。通过对透明质酸代谢的基因修饰,特别是针对胚胎滋养细胞,评估了这一假说。通过 MRI、详细的组织学检查和子宫自然杀伤细胞的 RNA 测序,分析了改变透明质酸沉积对子宫血管重塑和着床后发育的影响。我们的实验表明,透明质酸合成的破坏以及胚胎部位的透明质酸裂解增加,通过诱导蜕膜血管通透性增加、血管窦褶皱形成缺陷、母体-胚胎屏障破裂、MMP-9 表达升高以及中断子宫自然杀伤细胞的募集和功能,从而损害着床。相反,透明质酸的沉积增加导致母体-胚胎屏障扩张和扩散距离增加,从而导致着床失败。胚胎部位透明质酸的沉积受孕激素-孕激素受体信号的调节。这些结果表明,透明质酸通过微调胚胎周围无血管部位和母体血管形态发生,在成功妊娠中起着关键作用。