Cat No.C-001
OrganismHuman
TissueIntestinal
DiseaseNormal
Growth PropertiesEmbedded 3D Culture
Biosafety Level1
Growth conditions37℃, 95% Air, 5% CO2
Size/Quantity1
Product formatFrozen
Shipping InfoDry Ice
Storage conditionsLiquid Nitrogen

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Description

Human iPSC-Derived Intestinal Organoid are three-dimensional (3D) cell models generated from human induced pluripotent stem cells (iPSCs) using directed differentiation techniques. These organoids closely mimic the structure and function of human organs, exhibiting self-organizing properties and biological behaviors similar to real tissues. They undergo rigorous quality control to ensure high fidelity, scalability, and genetic stability, making them ideal models for a wide range of biomedical research and applications. These organoids have self-organizing properties and contain multiple cell types, including intestinal epithelial cells, mesenchymal cells, enterocytes, Paneth cells, goblet cells, etc., forming intestinal crypt-like, villus-like and microvillus-like structures. Organoids are rigorously tested for mycoplasma, bacteria, fungi/yeast, and verified for identity, genetic stability, and functional performance.

Specifications & Applications

Growth Properties

Embedded 3D Culture

Quality Control

All test negative for mycoplasma, bacteria, yeast, and fungi.

Application

For research use only. iPSC-derived organoids are used in various research fields, including disease modeling, drug discovery, gene therapy evaluation, and personalized medicine. They can replicate diverse disease states, providing reliable platforms for studying neurodegenerative diseases, cancer, cardiovascular conditions, and more. Additionally, organoids are valuable for drug efficacy and safety testing, tissue regeneration studies, and exploring host-microbe interactions, advancing innovation in biomedical research.

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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