Placental Hypoxia

Placental hypoxia is a state in which the placenta receives or delivers insufficient oxygen, disrupting its essential roles in maternal-fetal exchange, hormone production, and pregnancy maintenance. Reduced uteroplacental blood flow can limit oxygen diffusion and activate hypoxia-inducible factors, which alter gene expression, vascular signaling, trophoblast function, and inflammatory responses. Persistent or severe hypoxia may contribute to placental dysfunction, preeclampsia, fetal growth restriction, and adverse pregnancy outcomes. Studying this process helps researchers clarify how abnormal placental development and maternal vascular disease affect fetal health, while supporting the development of biomarkers and therapeutic strategies in maternal-fetal medicine.

Placental Hypoxia - Related Videos

Research

JoVE Journal - Medicine

Modeling Encephalopathy of Prematurity Using Prenatal Hypoxia-ischemia with Intra-amniotic Lipopolysaccharide in Rats

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Cited by 20 •

2015

Encephalopathy of prematurity encompasses the central nervous system abnormalities associated with injury from preterm birth. This report describes a clinically relevant rat model of in utero transient systemic hypoxia-ischemia and intra-amniotic lipopolysaccharide administration (LPS) that mimics chorioamnionitis, and the related impact of infectious stimuli and placental underperfusion on CNS development.

Research

JoVE Journal - Biology
Free Sample

Induction and Testing of Hypoxia in Cell Culture

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Cited by 247 •

2011

Here we propose simple methods to induce hypoxia in cell cultures and simple tests to evaluate the hypoxic status of the cultures.

Human Primary Trophoblast Cell Culture Model to Study the Protective Effects of Melatonin Against Hypoxia/reoxygenation-induced Disruption

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Cited by 35 •

2016

This manuscript presents a unique in vitro model of immunopurified human villous cytotrophoblast cells cultured under hypoxia/reoxygenation. This model is suitable to study the protective effects of promising treatments, such as melatonin, on pregnancy complications associated with increased oxidative stress and altered placental function.

The 4-vessel Sampling Approach to Integrative Studies of Human Placental Physiology In Vivo

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Cited by 18 •

2017

We present a detailed method to study human placental physiology in vivo at term. The method combines blood sampling from the incoming and outgoing vessels on the maternal and fetal sides of the placenta with ultrasound measurements of volume blood flow and placental tissue sampling.

Induction of Hypoxia in Living Frog and Zebrafish Embryos

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Cited by 5 •

2017

We introduce a novel hypoxic chamber system for use with aquatic organisms such as frog and zebrafish embryos. Our system is simple, robust, cost-effective and allows the induction and sustainment of hypoxia in vivo and for up to 48 h. We present 2 reproducible methods to monitor the effectiveness of hypoxia.

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