iTissue · InfiniTissue

Human tissue,
printed with light.

A multi-material light-based bioprinting platform building research-grade human tissue models for preclinical research and regenerative medicine.

Sustainable Animal-free Reproducible
// What we do

A platform for printing human tissue.

We design, build, and operate a light-based bioprinting platform, and we use it to print human tissue that scientists can run experiments on.

A platform, not just a printer

Our system integrates multi-material light-based printing, materials science, and tissue engineering into one repeatable pipeline.

Research-grade tissue

Constructs designed for reproducibility. Ones you can publish on, defend in a paper, or use in a regulatory submission.

Built around your work

Standard catalog tissues for routine use, custom builds when your protocol needs something specific.

// Technology

Light-based bioprinting at the resolution biology needs.

Three pillars sit underneath everything we ship: precision, multi-material capability, and reproducibility.

Precision

Digital Light Projection at the micron scale. Enough resolution to capture the architectures that matter for cell behaviour.

50 µm layers · 4K projection

Multi-material

Layered constructs with stiffness gradients and biochemical cues, printed in a single, automated build.

Up to 4 distinct bioinks per build

Reproducibility

Engineered for low coefficient of variation across operators, runs, and builds.

Designed for ISO 13485 readiness
// Applications

Two product lines today. More on the way.

We start where the science is mature and scale into where it is most needed.

01 / Skin

Reconstructed human skin

Standardised skin constructs for cosmetic, dermatology, and pharmaceutical research. An animal-free alternative for irritation, sensitisation, and wound-healing assays.

02 / Musculoskeletal

Cartilage & articular tissues

Layered cartilage constructs for orthopedic research and, longer term, regenerative medicine. Designed to capture the stiffness gradients real cartilage demands.

03 / Horizon

What's next

Hormone-responsive tissues for women's health research; vascularised constructs for organ-on-a-chip integration. Talk to us if your science needs a model that doesn't yet exist.

// Why this matters

Better preclinical models. Faster therapies. More honest science.

Most preclinical biology still relies on animal models that, kindly, do not predict human outcomes very well, and at worst do harm. The alternative, running studies on humans first, is neither ethical nor efficient. The middle path is human-relevant tissue engineered to behave like the real thing.

That is what we build. Tissues that replicate human physiology closely enough that researchers can trust the read-out. Systems that scale from a single replicate to a 30-construct study without losing fidelity. Manufacturing discipline that makes the next batch look like the last one.

We do this because better preclinical models mean fewer animal studies, faster therapy timelines, and more honest science.
A multi-layered translucent tissue construct illuminated from within, showing distinct horizontal layers in violet, magenta and cyan.
// Connect

If your work involves printing, characterising, or using human tissue, we want to hear about it.

We respond personally. No auto-replies. Usually within 5 business days.

By submitting you agree to be contacted by iTissue. We don't share or sell contact details.