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Cytokines and Growth Factors for Organoid Culture |
Organoid culture is a cutting-edge technique that allows researchers to recreate miniature organs in a controlled laboratory environment. This innovative approach offers numerous advantages, including the ability to study organ development, disease progression, and drug efficacy in a highly accurate and reproducible manner. To achieve a successful organoid model, it is crucial to utilize consistent culture components. Regardless of the specific cell type or research objective, the use of high-quality cytokines and growth factors is essential to ensure reproducibility and maintain consistency throughout the organoid culture process.
Thermo Fisher Scientific manufactures Peprotech recombinant cytokines and growth factors to support your organoid culture and organoid/tumoroid model development.
An organoid is a three-dimensional cell culture model that mimics the structure and function of a specific organ by differentiation and self-assembly of multiple relevant cell types. It is typically derived from stem cells or tissue samples and can be used to study organ development, disease modeling, drug screening, and personalized medicine. Organoid models provide a valuable tool for researchers to better understand the complexity of human organs and their interactions within the body.
Many organoid cultures require soluble factors such as bioactive growth factors and cytokines. By providing specific signals to cells, recombinant growth factors can stimulate proliferation, differentiation, and self-organization, leading to the generation of organoids with improved functionality. Below are key organoid growth factors arranged by tissue type.
The PeproTech "Reagents for Organoid Research” poster is designed to help you navigate the specific growth factors and cytokines required for organoid cell cultures. A detailed list of specific recombinant proteins needed for each type of organoid including stomach epithelial, brain, ear, retina, mammary, kidney, lung, liver, and pancreas enables rapid understanding of the precise reagents needed to produce your organoid culture.
These functional data illustrate the utility of Gibco recombinant growth factors for developing specific organoid models with appropriate protein expression levels and phenotype.
Figure 1. Human FGF-4 recombinant protein and WNT3A act in synergy to differentiate human episomal iPSCs into mid- and hindgut endoderm and promote a gut tube-like morphogenesis, resulting in the formation of 3D mid- and hindgut-like spheroids. The major components present in the differentiation media are human Noggin recombinant protein and EGF recombinant human protein. Panels A and B represent the merged fluorescence images of SOX9 recombinant rabbit monoclonal antibody (7H13L8) (green) with DAPI (blue) and F-actin (red) staining for iPSC control cells (A) and intestinal organoid (B). The images were captured at 60X magnification.
Figure 2. Differentiation of human episomal iPSCs (A) into kidney organoid (B) is initiated with human Noggin recombinant protein and a GSK-3 inhibitor. Cells are later treated with human Activin A recombinant protein and human FGF-9 recombinant protein to induce nephron progenitor cells. Panels A and B represent the merged fluorescence images of PODXL monoclonal antibody 3D3 (green) with DAPI (blue) and F-actin (red) staining for iPSC control cells and differentiated kidney organoid. The images were captured at 60X magnification.
Article: Organoid history and models review
Downloadable list of recombinant proteins by organoid type
Learn what recombinant proteins are, what they are used for, and what types are available
Learn about the PeproTech brand of recombinant proteins
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See which recombinant proteins are used to generate organoids
Procedures and buffers for performing western blots
Explore the role of proteins and cytokines in various signaling pathways
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Intended use of the products mentioned on this page vary. For specific intended use statements please refer to the product label.
For Research Use Only. Not for use in diagnostic procedures.