OgCelix: Driving Organoid Research Forward

OgCelix provides a comprehensive portfolio of organoid products designed to advance both basic and translational research. Our 3D-ready organoid models, derived from healthy tissue, Induced Pluripotent Stem Cells (iPSCs), patient samples, and selected animal sources, covering a wide range of organs including liver, lung, brain, colon, pancreas, and breast. These models recapitulate key aspects of native tissue architecture,maintain key genomic features over passages under defined conditions, and patient-derived models retain disease-relevant phenotype, making them powerful systems for studying human development, disease mechanisms, drug response, and precision medicine applications.

To support reliable organoid establishment and long-term growth, we supply a full range of media and reagents, including culture media, basement membranes matrix, growth factors, and culture plates, all support robust expansion and controlled differentiation. Complementing these are organoid-validated antibodies antibodies targeting key lineage, immune, and tumor-associated markers, rigorously validated across applications such as IHC, IF, WB, and flow cytometry to provide high-confidence results.

Beyond models and reagents, OgCelix also delivers a range of services that broaden the possibilities of organoid research. All our products and services are supported by stringent quality control measures to ensure consistency, reliability, and scientific rigor across every stage of research.

With a portfolio that unites organoid models, culture systems, antibodies, and advanced services, OgCelix equips researchers with the tools and confidence to generate reproducible, clinically relevant insights and to accelerate the journey from discovery to therapeutic innovation.

Product Features 

  • Diverse Origins 

    Organoid models derived from ASCs, iPSCs, or tissues, including both healthy and disease-specific samples.

  • Physiological Relevance

    Organoids maintain native tissue architecture and functional properties that closely mimic in vivo conditions.

  • Long-Term Stability

    Demonstrated genetic and phenotypic stability across extended culture periods, ensuring reproducibility.

Showing all 378 results

  • Recombinant Human FGF2-G3 (145 aa) Protein, Tag-Free

    Recombinant Proteins for Organoid Culture |R-062

    Recombinant Human FGF2-G3 (145 aa) Protein, Tag-Free

    Molecular Weight

    16.0 kDa

    Endotoxin

    Less than 0.1 EU per μg by the LAL method / rFC method.

    Expression System

    E. coli cells

  • Recombinant Human FGF2-G3 (154 aa) Protein, Tag-Free

    Recombinant Proteins for Organoid Culture |R-063

    Recombinant Human FGF2-G3 (154 aa) Protein, Tag-Free

    Molecular Weight

    17.0 kDa

    Endotoxin

    Less than 0.1 EU per μg by the LAL method / rFC method.

    Expression System

    E. coli cells

  • Recombinant Human FGF-4 Protein, Tag-Free

    Recombinant Proteins for Organoid Culture |R-064

    Recombinant Human FGF-4 Protein, Tag-Free

    Molecular Weight

    14.0 kDa

    Endotoxin

    Less than 0.1 EU per μg by the LAL method / rFC method.

    Expression System

    E. coli cells

  • Recombinant Human FGF-8a Protein, Tag-Free

    Recombinant Proteins for Organoid Culture |R-065

    Recombinant Human FGF-8a Protein, Tag-Free

    Molecular Weight

    21.3 kDa

    Endotoxin

    Less than 0.1 EU per μg by the LAL method / rFC method.

    Expression System

    E. coli cells

  • Recombinant Human FGF-10 Protein, Tag-Free

    Recombinant Proteins for Organoid Culture |R-066

    Recombinant Human FGF-10 Protein, Tag-Free

    Molecular Weight

    17.0 kDa

    Endotoxin

    Less than 0.1 EU per μg by the LAL method / rFC method.

    Expression System

    E. coli cells

  • Recombinant Human GDNF Protein, Tag-Free

    Recombinant Proteins for Organoid Culture |R-067

    Recombinant Human GDNF Protein, Tag-Free

    Molecular Weight

    30.4 kDa

    Endotoxin

    Less than 0.1 EU per μg by the LAL method / rFC method.

    Expression System

    E. coli cells

  • Recombinant Human HGF NK1 Protein, Tag-Free

    Recombinant Proteins for Organoid Culture |R-068

    Recombinant Human HGF NK1 Protein, Tag-Free

    Molecular Weight

    20.0 kDa

    Endotoxin

    Less than 0.1 EU per μg by the LAL method / rFC method.

    Expression System

    E. coli cells

  • Recombinant Human IGF-1 Protein, Tag-Free

    Recombinant Proteins for Organoid Culture |R-069

    Recombinant Human IGF-1 Protein, Tag-Free

    Molecular Weight

    8.0 kDa

    Endotoxin

    Less than 0.1 EU per μg by the LAL method / rFC method.

    Expression System

    E. coli cells

  • Recombinant Human Noggin Protein, Tag-Free

    Recombinant Proteins for Organoid Culture |R-070

    Recombinant Human Noggin Protein, Tag-Free

    Molecular Weight

    46.0 kDa

    Endotoxin

    Less than 0.1 EU per μg by the LAL method / rFC method.

    Expression System

    E. coli cells

Whether you're exploring disease mechanisms or screening novel therapeutics, OgCelix is your trusted partner.

Let's build the future of translational research together.

Let's Talk Now

Whether you're exploring disease mechanisms or screening novel therapeutics, OgCelix is your trusted partner.

Let's build the future of translational research together.

Let's Talk Now