Engineering Life is not a separate division. It is the advanced research programme inside
Cavoriongevity that asks how the maintenance, repair and regulatory systems of living organisms
might be understood well enough to preserve function for substantially longer.
The programme connects pharmacology with genetics, epigenetics, regeneration, synthetic biology,
comparative biology and computational modelling. Its central question is not simply how to extend
cellular lifespan, but how to preserve whole-organism function without losing biological control.
Maximum organismal continuity while preserving genomic integrity, control and function.
Geropharmacology
Pharmacological pathways associated with nutrient sensing, autophagy, metabolism, senescence, inflammation and resilience.
Genetics & Genomics
Genome maintenance, growth signalling, stress response, telomere biology and tumour suppression.
Epigenetic Engineering
Age-associated regulatory states, cellular identity and the possibility of carefully controlled biological rejuvenation.
Synthetic Biology
Biological sensing, feedback and control systems designed to detect dysfunction, respond and return living systems toward balance.
Regeneration
Tissue repair, cellular restoration, mitochondrial maintenance, immune rejuvenation and functional recovery.
Comparative Biology
Learning from unusually long-lived, regenerative, radiation-resistant, cancer-resistant and metabolically adaptable organisms.
AI Ageing Models
Integrating longitudinal biological data to model ageing trajectories, compare intervention classes and identify systems most in need of protection.
Space Longevity
Protecting human biology across radiation, altered gravity, isolation, resource constraint and deep-duration missions.