Scott Charles A, Eckstrum Kirsten S, Bany Brent M
Departments of Physiology, Southern Illinois University School of Medicine, Carbondale, Illinois, USA.
Departments of Physiology, Southern Illinois University School of Medicine, Carbondale, Illinois, USA; Departments of Obstetrics & Gynecology, Southern Illinois University School of Medicine, Carbondale, Illinois, USA.
Reprod Syst Sex Disord. 2012;Suppl 1:003. doi: 10.4172/2161-038X.S1-003. Epub 2012 Jan 25.
The purpose of this study was to characterize the localization of mRNA in the mouse uterus during embryo implantation. Strong mRNA hybridization signals were seen in the primary decidual zone just after the onset of implantation from Days 4.5-6.5. On Day 7.5, this expression continued around the concept us, but in addition we observed high expression of mRNA in the endothelial cells that line the forming vascular sinusoids in the lateral me some trial decidua. Interestingly, on Days 8.5 this high expression continued in the endothelial cells of sinusoids in the lateral me some trial decidual tissue but not in the decidual cells surrounding the concept us. As implantation and placental development finished, mRNA expression remained in the endothelial cells of the sinusoids and spiral arterioles of the decidua basalis. Interestingly, mRNA was localized to the endothelial cells lining the sinusoids that form during implantation. Since the endothelial cells of the me some trial sinusoids exhibit a high level of proliferation, we speculate that FIGF-FLT4 signaling may play a role in their formation and function during implantation. This work will provide a basis for further research on the potential role of FIGF-FLT4 signaling in endometrial angiogenesis during implantation in mice.
本研究的目的是表征胚胎植入期间小鼠子宫中mRNA的定位。在植入开始后的第4.5 - 6.5天,在初级蜕膜区可见强烈的mRNA杂交信号。在第7.5天,这种表达在胚泡周围持续存在,但此外,我们在侧中膜蜕膜中形成血管窦状隙的内皮细胞中观察到mRNA的高表达。有趣的是,在第8.5天,这种高表达在侧中膜蜕膜组织中窦状隙的内皮细胞中持续存在,但在胚泡周围的蜕膜细胞中不存在。随着植入和胎盘发育完成,mRNA表达保留在基蜕膜窦状隙和螺旋小动脉的内皮细胞中。有趣的是,mRNA定位于植入期间形成的窦状隙的内皮细胞。由于中膜窦状隙的内皮细胞表现出高水平的增殖,我们推测FIGF - FLT4信号可能在植入期间它们的形成和功能中起作用。这项工作将为进一步研究FIGF - FLT4信号在小鼠植入期间子宫内膜血管生成中的潜在作用提供基础。