Microscopic Cell Background
REDEFINING PRECLINICAL RESEARCH

Biomaterial 3D Printing Technology
for Advanced Research

We cultivate human tissues in 3D microfluidics to recreate the complex functions and behaviors of native human organs — all at incredible throughput.

Scroll to Explore

Future-proofing the next century

We cultivate human tissues in 3D microfluidics to recreate the complex functions and behaviors of native human organs — all at incredible throughput. Our platform bridges the gap between preclinical studies and clinical trials.

3D Heart Model
Organ Model 01

Lung Airway Model

Our large and small airway models replicate the hallmark features of the bronchi and bronchioles within the lung, comprising beating ciliated cells, mucus producing goblet cells, mature epithelial basal cells and protective club cells. Lung cell differentiation and mucociliary beating is achieved via culture with an air-liquid interface.

RespiratoryInfectionCOPDToxicity
Lung Airway Model
● LIVE ANALYSIS
Cell Count: 2077
Viability: 98.4%
Mag: 400x
FOV: 200μm
Organ Model 02

Liver Model

Our liver-on-a-chip enables deep analysis of native liver functions such as drug metabolism, protein synthesis, waste clearance and blood glucose regulation. The fully vascularized liver model supports urea synthesis and albumin production, the formation of robust bile canaliculi, and quantification of drug-induced liver toxicity (DILI).

MetabolismToxicityFibrosisHepatitis
Liver Model
● LIVE ANALYSIS
Cell Count: 1889
Viability: 98.4%
Mag: 400x
FOV: 200μm
Organ Model 03

Blood-Brain Barrier

The blood-brain barrier (BBB)-on-a-chip comprises specialized microvascular networks, mural cells, and astrocytes that together mimic the barrier function of the human BBB. This platform can be leveraged to screen the transport of drugs targeted to the brain for neurological and psychiatric diseases.

NeurologyTransportInflammationOncology
Blood-Brain Barrier
● LIVE ANALYSIS
Cell Count: 5022
Viability: 98.4%
Mag: 400x
FOV: 200μm
Organ Model 04

Intestine Model

Our intestine-on-a-chip encompasses villi-like structures and the major intestinal cell types including enterocytes, enteroendocrine cells, goblet cells, and paneth cells. The model reproduces key functions of the intestine, pathological features of IBD and innate immune responses.

DigestionMicrobiomeAbsorptionImmunity
Intestine Model
● LIVE ANALYSIS
Cell Count: 571
Viability: 98.4%
Mag: 400x
FOV: 200μm
Data Visualization

Interactive Data Reporting

Our platform doesn't just generate tissues; it generates deep, actionable insights. We provide comprehensive interactive reports that allow you to:

Intuitive Exploration

Navigate complex datasets with ease using our interactive dashboards.

Trend Analysis

Visualize longitudinal data to better understand biological trends and drug responses.

Easy Sharing

Save reports and share findings instantly with your team or stakeholders.

DAY 01DAY 07DAY 14
Viability Score98.4%