Human Small Intestine Organoid
Human Small Intestine Organoid are tthree-dimensional (3D) multicellular structures generated in vitro from adult stem cells or pluripotent stem cells. They exhibit polarity and recapitulate, to a significant extent, the structure and function of real organs. Human Small Intestine Organoids model developed by Cytrix is derived from normal human intestinal stem cells and demonstrates robust self-organization, long-term growth, and renewal capacity. It contains multiple types of mature intestinal epithelial cells. Under light microscopy, the organoids typically appear as cystic or budding structures with a central lumen surrounded by tightly arranged columnar epithelial cells. The lumen and its interface with the external environment are sharply defined, while the cells appear bright and transparent, displaying characteristic morphology. Organoids are rigorously tested for mycoplasma, bacteria, fungi/yeast, and verified for identity, genetic stability, and functional performance.
Specifications
- cat no
- C-004
- disease
- Normal
- organism
- Human
- tissue
- Intestine
- growth properties
- Embedded 3D Culture
- biosafety level
- 1
- growth conditions
- 37℃, 95% Air, 5% CO 2
- size quantity
- 1
- product format
- Frozen
- shipping info
- Dry Ice
- storage conditions
- Liquid Nitrogen
- quality control
- All test negative for mycoplasma, bacteria, yeast, and fungi.
- application
- For research use only. Tissue-derived organoids are widely used in drug screening, disease modeling, mechanism research, personalized medicine, and regenerative medicine. By simulating authentic disease states, these organoids provide an ideal platform to assess patient responses to new drugs and assist in the design of personalized treatment plans. Additionally, they drive the development of new therapeutic approaches, particularly in cancer research and organ regeneration, offering precise experimental tools that greatly enhance the advancement of precision medicine.