Real-Time Biology,
Real-World Impact

Accessible Science & Transformative Research

Explore Our Systems

We’ve engineered three organ-specific platforms to reflect the unique structure, function, and microbiome of key tissues.
Intestinal Chip

Supports anaerobic microbiome co-culture and nutrient absorption studies.

Lung Chip

Models airway epithelium under air–liquid interface with pollutant exposure.

Gynae Chip

Dynamics across gynaecological environments.

Who We Empower

Researchers

Study complex tissue and microbiome dynamics in real time, bridging the gap between in vitro and in vivo.

Clinicians

Build personalised models to identify biomarkers and test therapies with patient-specific relevance.

Pharma

Run high-throughput, animal-free drug screening in predictive, human-relevant systems.

Regulators & Policymakers

Align with the 3Rs using reproducible, ethical platforms.

Innovators & SMEs

Integrate advanced modelling into bespoke pipelines. No specialist infrastructure required.

From cells to systems, see biology as it happens..

Why are we still relying on oversimplified models and animal systems to study human biology?

Our organ-on-a-chip platform was developed to address the limitations of traditional 2D cultures and animal models, which struggle to replicate the complexity of living human tissues. After three years of development, our team combined expertise in microfluidics, microscopy, and host–microbiome biology to create a modular, low-cost system that mimics vascularised tissue under realistic flow conditions. Designed for dynamic imaging and biological fidelity, it offers researchers a “living histology” that brings human-relevant science to life.

The Breakthrough

InViFlo recreates living tissue with realistic flow, allowing real-time, high-resolution imaging of disease, treatment response, and microbiome dynamics. It replaces outdated models with an accessible, human-relevant system built for modern research.

Why InViFlo Stands Apart

Physiological Flow

Vascular-mimicking microfluidics reduce artificial stress and support natural signalling.

Imaging-Ready

Compatible with super-resolution and live-cell microscopy for dynamic tissue visualisation.

Modular & Multi-Organ

Connect systems to study tissue crosstalk and systemic effects.

Accessible & Ethical

Low-cost, animal-free, and designed for widespread adoption.

Tissue-Specific Precision

Tailored platforms for intestines, lungs, and gynaecological tissues—with liver in development.

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