SCC301
Human iPSC Derived AFE Progenitors
Cryopreserved human iPSC derived anterior foregut endoderm (AFE) progenitor cells that express Sox2, Pax9 and EpCAM.
About This Item
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technique(s)
cell culture | stem cell: suitable
application(s)
cell analysis
General description
The human iPSC derived AFE progenitors are a component of the 3dGRO® Human Lung Organoid Culture System which can be used to differentiate human iPS cells into mature lung organoids that structurally resemble the <italic>in vivo</italic> branching airway and early alveolar structures. The 3dGRO® Human Lung Organoid Culture System includes (all sold separately):
- Definitive Endoderm Induction Medium (SCM302)
- Anterior Foregut Endoderm Induction Medium I (SCM305)
- Anterior Foregut Endoderm Induction Medium II (SCM306)
- 3dGRO® Lung Organoid Branching Medium (SCM307)
- 3dGRO® Lung Organoid Maturation Medium (SCM308)
- Human iPSC Derived AFE Progenitors (SCC301)
Research Category:
- Cell Culture
- Stem Cell Research
Cell Line Origin
Packaging
Storage and Stability
Legal Information
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Storage Class
10 - Combustible liquids
wgk_germany
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
Certificados de análisis (COA)
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Artículos
Lung organoids are valuable 3D models for human lung development and respiratory diseases. The 3dGRO™ differentiation protocol generates organoids from human iPSCs in 4 steps.
Lung organoids are valuable 3D models for human lung development and respiratory diseases. The 3dGRO™ differentiation protocol generates organoids from human iPSCs in 4 steps.
Lung organoids are valuable 3D models for human lung development and respiratory diseases. The 3dGRO™ differentiation protocol generates organoids from human iPSCs in 4 steps.
Lung organoids are valuable 3D models for human lung development and respiratory diseases. The 3dGRO™ differentiation protocol generates organoids from human iPSCs in 4 steps.
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