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VEGF Maintains Maternal Vascular Space Homeostasis in the Mouse Placenta through Modulation of Trophoblast Giant Cell Functions

机译:VEGF通过调制滋养板巨型细胞功能在小鼠胎盘中维持母体血管空间稳态

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摘要

Vascular endothelial growth factor (VEGF) is an angiogenic growth factor that acts primarily on endothelial cells, but numerous studies suggest that VEGF also acts on non-endothelial cells, including trophoblast cells. Inhibition of VEGF signaling by excess production of the endogenous soluble VEGF receptor sFlt1 in trophoblast cells has been implicated in several pregnancy complications. Our previous studies and other reports have shown that VEGF directly regulates placental vascular development and functions and that excess VEGF production adversely affects placental vascular development. Trophoblast giant cells (TGCs) line the maternal side of the placental vasculature in mice and function like endothelial cells. In this study, we specifically examined the effect of excess VEGF signaling on TGC development associated with defective placental vascular development using two mouse models an endometrial VEGF overexpression model and a placenta-specific sFlt1 knockdown model. Placentas of endometrial VEGF-overexpressing dams at embryonic days (E) 11.5 and 14.5 showed dramatic enlargement of the venous maternal spaces in junctional zones. The size and number of the parietal TGCs that line these venous spaces in the placenta were also significantly increased. Although junctional zone venous blood spaces from control and VEGF-overexpressing dams were not markedly different in size at E17.5, the number and size of P-TGCs were both significantly increased in the placentas from VEGF-overexpressing dams. In sFlt1 knockdown placentas, however, there was a significant increase in the size of the sinusoidal TGC-lined, alkaline phosphatase-positive maternal blood spaces in the labyrinth. These results suggest that VEGF signaling plays an important role in maintaining the homeostasis of the maternal vascular space in the mouse placenta through modulation of TGC development and differentiation, similar to the effect of VEGF on endothelial cells in other vascular beds.
机译:血管内皮生长因子(VEGF)是一种血管生成生长因子,其主要用于内皮细胞,但许多研究表明VEGF也作用于非内皮细胞,包括滋养细胞。通过过量生产的VEGF信号传导的抑制在滋养细胞中的内源性可溶性VEGF受体SFLT1含有涉及的几种妊娠并发症。我们以前的研究和其他报告表明,VEGF直接调节胎盘血管开发和功能,并且过剩的VEGF产量对胎盘血管开发产生不利影响。滋养管巨细胞(TGCs)在小鼠中胎盘脉管系统的母体侧和诸如内皮细胞的功能。在这项研究中,我们专门研究了使用两只小鼠模型的子宫内膜VEGF过表达模型和胎盘特异性SFLT1敲低模型与胎盘血管发育有缺陷胎盘血管发育的TGC发育的影响。胚胎天(e)11.5和14.5在胚胎天(e)11.5和14.5中的子宫内膜VEGF过表达坝体的胎盘显示出在连接区中的静脉母体空间的显着扩大。在胎盘中这些静脉空间线的视网膜的大小和数量也显着增加。虽然来自对照和VEGF过表达坝的连接区静脉血液空间在E17.5的尺寸上没有明显不同,但是P-TGC的数量和尺寸在VEGF过表达坝中的胎盘均显着增加。然而,在SFLT1敲低位胎盘中,迷宫中的正弦TGC衬里碱性磷酸酶正母体血液空间的大小显着增加。这些结果表明,VEGF信号传导在维持小鼠胎盘中的母体血管空间的稳态发挥着重要作用,通过调节TGC发育和分化,类似于VEGF对其他血管床的内皮细胞的影响。

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