| Advantages | Due to the physiological similarities between pigs and humans, these organoids are particularly useful for studying respiratory infections, zoonotic diseases, and drug efficacy. They serve as pivotal tools for preclinical research and human-relevant lung disease modeling, supporting translational pulmonary research. |
| 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 | Lung |
| Disease | Normal |
| Format | Frozen |
| Organoid Characterization | They replicate critical aspects of porcine lung structure, including airway- and alveolar-like regions. Each batch is rigorously tested for mycoplasma, bacteria, and fungi/yeast, and verified for identity, genetic stability, and functional performance. |
| Applications | Tissue-derived organoids find extensive use in drug screening, disease modeling, mechanistic research, personalized medicine, and regenerative medicine. By faithfully modeling disease states, they serve as an ideal platform for assessing patient-specific responses to investigational drugs and facilitating personalized treatment planning. These organoids also drive the development of novel therapeutic strategies, particularly in oncology and tissue regeneration, providing precise experimental tools 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.