During placenta development, trophoblasts dynamically adapt to hypoxic microenvironments to orchestrate physiological functions and morphogenesis.
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trophoblast adaptation to hypoxia
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Trophoblasts adapt to hypoxic microenvironments during placental development to support physiological functions and morphogenesis.
Quoted textsource-backed
During placenta development, trophoblasts dynamically adapt to hypoxic microenvironments to orchestrate physiological functions and morphogenesis.
Physiological reoxygenation after uterine spiral artery remodeling during gestational weeks 10 to 12 establishes a spatiotemporal oxygen gradient critical for placental development.
Quoted textsource-backed
This niche undergoes a transition to physiological reoxygenation following the remodeling of uterine spiral arteries during gestational weeks 10 to 12, establishing a spatiotemporal oxygen gradient critical for placental development.
Hypoxia-centered signaling cascades, epigenetic reprogramming, and metabolic plasticity are pivotal regulators of trophoblast adaptation.
Quoted textsource-backed
Emerging evidence highlights hypoxia-centered signaling cascades, epigenetic reprogramming, and metabolic plasticity as pivotal regulators of trophoblast adaptation.
Deciphering molecular networks of trophoblast hypoxia adaptation may enable therapies to restore placental homeostasis.
Quoted textsource-backed
Deciphering these molecular networks not only elucidates the pathogenesis of gestational complications but also holds potential for efficient therapies to restore placental homeostasis.