Microphysiological System (MPS) is a microscale device that replicates the key structure
and function of human organs at the tissue level, enhancing preclinical drug testing
by providing more accurate and human-relevant data compared to traditional in vitro and animal models.

Our MPS replicates a wide range of human tissues and functions.
This enables the development of comprehensive and realistic structure & function of human organ tissues for disease research and accurate drug evaluation.
Utilizing advanced microfabrication technology and high-quality materials, our system ensures high precision and reproducibility.This leads to more accurate experimental results and predictions.
Tailored to meet specific user requirements, our system offers customization options.Users can adjust tissue types, configurations, and fluid flow to optimize experimental conditions.
Our Microphysiological System, applicable in various fields, including drug development, toxicity testing, disease modeling, and personalized medicine, offers broad applications.
With a user-friendly interface and simple operation, our MPS is designed for ease of use. Users can operate the system without complex procedures or specialized knowledge.
MEPS-BBB
Blood-Brain Barrier
MEPS-NVU
Neurovascular Unit
MEPS-BRB
Blood-Retina Barrier
MEPS-CEB
Corneal Epithelial Barrier
MEPS-BPB
Blood-Placenta Barrier
MEPS-SKN
Epidermis-Dermis Interface
MEPS-VEB
Vascular Endothelial Barrier
MEPS-SAW
Small Airways
MEPS-IMB
Intestinal Mucosal Barrier
MEPS-TEB
Tubular Epithelial Barrier
MEPS-TME
3D Tumor Microenvironment
MEPS-ORD
3D Organoid Development