EpiTrace
– Animal Epigenetics for Livestock Health, Welfare, and Traceability

Decoding animal lives through epigenetics

We help livestock systems maximize productivity, animal welfare, and transparency using advanced epigenetic analysis.

We decode epigenetic biomarkers in animals to deliver actionable insights for livestock management, animal welfare monitoring, and meat traceability across modern livestock systems.

Our technology enables:

Animal welfare assessment using biological data
Meat traceability and origin verification
Health and performance monitoring across livestock systems

We provide solutions across several sectors, from animal welfare assessment to meat traceability, from cell-based meat to equine health.

Meat Traceability, Provenance & Animal Welfare

Verify animal origin, welfare conditions, and authenticity using epigenetic biomarkers.

Cell-Based Meat & Cellular Agriculture

Optimize cell line selection and bioprocesses using epigenetic insights to improve scalability and regulatory readiness.

Equine Performance & Epigenetic Diagnostics

Monitor and improve equine health, performance, welfare, and longevity through advanced epigenetic testing.

How does EpiTrace work?

EpiTrace provices a new layer of biological data for precision livestock farming.

Whether an animal is used for food, work or sports – every experience an animal has leaves an epigenetic mark. These marks impact and record the animal’s health, performance and welfare.

Using high-resolution DNA methylation analysis, we decode these signatures and measure biomarkers that reflect:

Animal health

Stress and welfare conditions

Environmental exposure

Performance potential

Our AI-driven analytics platform translates these biological signals into actionable insights for livestock management, food supply chain transparency, animal welfare, cell-based meat production, and equine health monitoring.

EpiTrace is developed by scientists from leading research institutions and based on years of research in animal epigenetics, epigenetic aging clocks and biomarker discovery.