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Embryonic Structure

Embryonic structures include specialized tissues that develop during pregnancy, such as the amnion and chorion (fetal membranes), placenta, and umbilical cord. These tissues form the critical interface between the mother and the developing fetus and are essential for fetal protection, growth, and survival. The amnion provides a fluid-filled environment that cushions the fetus and prevents mechanical injury, while the chorion contributes to placental formation and mediates maternal–fetal exchange. The placenta functions as a highly specialized organ responsible for nutrient and oxygen transfer, waste removal, hormone secretion, and immune regulation. The umbilical cord connects the fetus to the placenta and contains blood vessels that transport oxygenated blood, nutrients, and metabolic waste between fetal and maternal circulations.

Cells derived from these embryonic structures perform diverse biological functions. Placental cells, including trophoblasts and stromal cells, regulate implantation, vascular remodeling, hormone production, and immune tolerance during pregnancy. Amniotic epithelial cells exhibit stem-like properties, secrete growth factors, and play roles in tissue repair and anti-inflammatory responses. Umbilical cord–derived cells, such as mesenchymal stromal cells and umbilical vein endothelial cells, support vascular development, angiogenesis, and regenerative processes. Chorion cells contribute to placental structure and signaling, while embryonic fibroblasts are widely used as supportive feeder layers and model systems for developmental and cellular biology studies.

Because of their developmental origin and functional plasticity, cells derived from embryonic structures are valuable tools for investigating fetal development, placental biology, stem cell regulation, immunology, and regenerative medicine applications. They are also increasingly used in tissue engineering, cell therapy research, and translational studies focused on pregnancy-related disorders and developmental diseases.

Showing 12 of 27 results

Mouse Umbilical Vein Endothelial Cells

Research on the Mouse Umbilical Vein Endothelial Cells is essential to the study of preeclampsia, intrauterine growth restriction (IUGR), gestational diabetes-related endothelial dysfunction, umbilical vein…
Cat. No. ARP0660

Mouse Embryonic Fibroblasts

Research on the Mouse Embryonic Fibroblasts is essential to the study of cellular reprogramming studies, teratoma formation models, extracellular matrix research, and developmental biology. The…
Cat. No. ARP0659

Rat Placental Chorionic Trophoblast Cells

Research on the Rat Placental Chorionic Trophoblast Cells is essential to the study of trophoblast invasion defects, placental insufficiency, fetal resorption models, pregnancy-induced hypertension, and…
Cat. No. ARP0417

Rat Umbilical Vein Endothelial Cells

Research on the Rat Umbilical Vein Endothelial Cells is essential to the study of preeclampsia, intrauterine growth restriction (IUGR), gestational diabetes-related endothelial dysfunction, umbilical vein…
Cat. No. ARP0416

Rat Embryonic Fibroblasts

Research on the Rat Embryonic Fibroblasts is essential to the study of cellular reprogramming studies, teratoma formation models, extracellular matrix research, and developmental biology. The…
Cat. No. ARP0415

Human Umbilical Artery Smooth Muscle Cells

Research on the Human Umbilical Artery Smooth Muscle Cells is essential to the study of umbilical artery contractility disorders, persistent fetal circulation, and hypoxia-induced vascular…
Cat. No. ARP0175

Human Umbilical Vein Smooth Muscle Cells

Research on the Human Umbilical Vein Smooth Muscle Cells is essential to the study of umbilical vein wall remodeling, venous stiffness in preeclampsia, and vascular…
Cat. No. ARP0174

Human Umbilical Artery Endothelial Cells

Research on the Human Umbilical Artery Endothelial Cells is essential to the study of preeclampsia, intrauterine growth restriction (IUGR), gestational diabetes-related endothelial dysfunction, umbilical vein…
Cat. No. ARP0173

Human Umbilical Vein Endothelial Cells

Research on the Human Umbilical Vein Endothelial Cells is essential to the study of preeclampsia, intrauterine growth restriction (IUGR), gestational diabetes-related endothelial dysfunction, umbilical vein…
Cat. No. ARP0172

Human Villous Mesenchymal Fibroblasts

Research on the Human Villous Mesenchymal Fibroblasts is essential to the study of placental fibrosis, gestational diabetes mellitus-related stromal dysfunction, villitis of unknown etiology (VUE),…
Cat. No. ARP0131

Human Villous Trophoblasts

Research on the Human Villous Trophoblasts is essential to the study of preeclampsia, intrauterine growth restriction (IUGR), placental abruption, recurrent spontaneous abortion, and chorioamnionitis. The…
Cat. No. ARP0130

Human Amniotic Epithelial Cells

Research on the Human Amniotic Epithelial Cells is essential to the study of lysosomal diseases, neonatal hypoxic-ischemic encephalopathy, lung/brain developmental disorders, autoimmune conditions (e.g., multiple…
Cat. No. ARP0129

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