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Regulation of vascular growth and function in the human placenta

Reproduction · 2009 · Vol. 138(6) · pp. 895–902
G J BurtonD. Stephen Charnock‐JonesE. Jauniaux

Abstract

During the course of 9 months, the human placenta develops into a highly vascular organ. Vasculogenesis starts during the third week post-conception. Hemangioblastic cell cords differentiate in situ from mesenchymal cells in the villous cores, most probably under the influence of vascular endothelial growth factor (VEGFA) secreted by the overlying trophoblast. The cords elongate through proliferation and cell recruitment, and connect with the vasculature of the developing fetus. A feto-placental circulation starts around 8 weeks of gestation. Elongation of the capillaries outstrips that of the containing villi, leading to looping of the vessels. The obtrusion of both capillary loops and new sprouts results in the formation of terminal villi. Branching and non-branching angiogenesis therefore play key roles in villous morphogenesis throughout pregnancy. Maternal circulating levels of VEGFA and placental growth factor vary across normal pregnancy, and in complicated pregnancies. Determining the impact of these changes on placental angiogenesis is difficult, as the relationship between levels of factors in the maternal circulation and their effects on fetal vessels within the placenta remains unclear. Furthermore, the trophoblast secretes large quantities of soluble receptors capable of binding both growth factors, influencing their bioavailability. Villous endothelial cells are prone to oxidative stress, which activates the apoptotic cascade. Oxidative stress associated with onset of the maternal circulation, and with incomplete conversion of the spiral arteries in pathological pregnancies, plays an important role in sculpting the villous tree. Suppression of placental angiogenesis results in impoverished development of the placenta, leading ultimately to fetal growth restriction.

Pregnancy and preeclampsia studiesAngiogenesis and VEGF in CancerRenal and related cancersAngiogenesisTrophoblastPlacentaVasculogenesisBiologyFetusVascular endothelial growth factorPlacental growth factorVascular endothelial growth factor ACell biology

MeSH terms

AnimalsBlood VesselsFemaleHumansModels, BiologicalPlacentaPlacentationPregnancyNeovascularization, PhysiologicPlacental CirculationVascular Endothelial Growth Factor A

Funding

  • Wellcome Trust
Citations
365
FWCI
11.03
field-weighted impact
References
35
Percentile
98%
vs. same field & year
Citations per year
Cited by
Human placenta and trophoblast development: key molecular mechanisms and model systems
Cellular and Molecular Life Sciences · 2019 · 731 citations
References
Onset of Maternal Arterial Blood Flow and Placental Oxidative Stress
American Journal Of Pathology · 2000 · 1,059 citations
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