| Advantages | They preserve traits of their segment of origin, encompass the full spectrum of hepatocyte and cholangiocyte lineages, and reconstitute key hepatic functions. Due to the physiological proximity between pigs and humans, these organoids are particularly valuable for translational pharmacology/toxicology, DMPK assessments, and modeling hepatic infection or toxin exposure. |
| Species | Porcine |
| Product Type | Tissue-derived Organoid |
| Growth Properties | Embedded 3D Culture |
| Growth Conditions | Cultured at 37°C under 95% air and 5% CO2. |
| Quality Control | Negative for mycoplasma, bacteria, yeast, and fungi. |
| Tissue | Liver |
| Disease | Normal |
| Format | Frozen |
| Organoid Characterization | They are amenable to long-term cryopreservation in medium with robust post-thaw recovery, and undergo comprehensive QC for mycoplasma, bacteria, fungi/yeast, identity, genetic stability, and functional performance. |
| Applications | Tissue-derived organoids are extensively utilized in drug screening, disease modeling, mechanistic research, personalized medicine, and regenerative medicine. By recapitulating authentic disease states, they provide a robust platform for evaluating patient-specific drug responses and supporting individualized treatment design. Moreover, these organoids enable the development of innovative therapeutic strategies, especially in cancer research and organ regeneration, delivering precise experimental systems that significantly advance precision medicine. |
| Storage | Liquid Nitrogen |
| Shipping Information | Dry Ice |
For preclinical research and development use only; not intended for therapeutic or other applications.