Primitive Endoderm

Primitive endoderm is an extraembryonic cell layer that forms from the inner cell mass of the mammalian blastocyst and supports early embryonic development. During lineage specification, signaling through the FGF–ERK pathway promotes primitive endoderm identity, while cell sorting and epithelial organization position these cells along the blastocyst cavity. The resulting layer develops into the yolk sac endoderm, which contributes to nutrient exchange, signaling, and early support for the embryo. Studying primitive endoderm reveals how cell fate decisions, tissue patterning, and embryo organization arise during early development, with relevance to stem cell models and developmental disease research.

Primitive Endoderm - Related Videos

Research

JoVE Journal - Developmental Biology

A Quick and Efficient Method for the Purification of Endoderm Cells Generated from Human Embryonic Stem Cells

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Cited by 6 •

2016

Here, we describe a method for the purification of differentiated human embryonic stem cells that are committed towards the definitive endoderm for the improvement of downstream applications and further differentiations.

Primary Endodermal Epithelial Cell Culture from the Yolk Sac Membrane of Japanese Quail Embryos

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Cited by 6 •

2016

To study the mechanism of lipid utilization in yolk sac membranes during the late stages of avian embryonic development, we established a primary Japanese quail embryonic endodermal epithelial cell culture system.

Directed Differentiation of Primitive and Definitive Hematopoietic Progenitors from Human Pluripotent Stem Cells

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Cited by 19 •

2017

Here, we present human pluripotent stem cell (hPSC) culture protocols, used to differentiate hPSCs into CD34+ hematopoietic progenitors. This method uses stage-specific manipulation of canonical WNT signaling to specify cells exclusively to either the definitive or primitive hematopoietic program.

Generation of Functional Endodermal Hepatic Organoids

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Cited by 1 •

2025

This protocol describes the generation of fast and reproducible endodermal hepatic organoids (eHEPOs). With this protocol, eHEPOs can be produced within 2 weeks and expand long-term (more than 1 year) without losing their differentiation and functionality.

Assessment of Cellular Bioenergetics in Mouse Hematopoietic Stem and Primitive Progenitor Cells using the Extracellular Flux Analyzer

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Cited by 3 •

2021

The method presented here summarizes optimized protocols for assessing cellular bioenergetics in non-adherent mouse hematopoietic stem and primitive progenitor cells (HSPCs) using the extracellular flux analyzer to measure the extracellular acidification rate (ECAR) and oxygen consumption rate (OCR) of HSPCs in real time.

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