Reduced Uteroplacental Perfusion Pressure (RUPP) causes altered trophoblast differentiation and pericyte reduction in the mouse placenta labyrinth

滋养层 胎盘 生物 胎盘功能不全 合胞滋养细胞 内分泌学 细胞滋养层 胎盘形成 缺氧(环境) 胎儿 内科学 胎膜 周细胞 表型 细胞生物学 男科 内皮干细胞 医学 化学 怀孕 遗传学 体外 基因 有机化学 氧气
作者
Bryony V. Natale,Prutha Mehta,Priscilla Vu,Christina Schweitzer,Katarina Gustin,Ramie Kotadia,David R.C. Natale
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:8 (1) 被引量:41
标识
DOI:10.1038/s41598-018-35606-x
摘要

Abstract This study characterized the effect of the reduced utero-placental perfusion pressure (RUPP) model of placental insufficiency on placental morphology and trophoblast differentiation at mid-late gestation (E14.5). Altered trophoblast proliferation, reduced syncytiotrophoblast gene expression, increased numbers of sinusoidal trophoblast giant cells, decreased Vegfa and decreased pericyte presence in the labyrinth were observed in addition to changes in maternal blood spaces, the fetal capillary network and reduced fetal weight. Further, the junctional zone was characterized by reduced spongiotrophoblast and glycogen trophoblast with increased trophoblast giant cells. Increased Hif-1α and TGF-β-3 in vivo with supporting hypoxia studies in trophoblast stem (TS) cells in vitro , support hypoxia as a contributing factor to the RUPP placenta phenotype. Together, this study identifies altered cell populations within the placenta that may contribute to the phenotype, and thus support the use of RUPP in the mouse as a model of placenta insufficiency. As such, this model in the mouse provides a valuable tool for understanding the phenotypes resulting from genetic manipulation of isolated cell populations to further understand the etiology of placenta insufficiency and fetal growth restriction. Further this study identifies a novel relationship between placental insufficiency and pericyte depletion in the labyrinth layer.
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