InfiCorp engineers living cells into functional matter — self-healing structures, carbon-negative composites, and programmable biomaterials that sense, adapt, and regenerate.
Pioneers reprogramming the boundary between living systems and engineered matter.
Ph.D. in Synthetic Biology from MIT. Over two decades pioneering engineered living materials, translating genetic circuit design into scalable, commercially deployed living-composite platforms.
M.S. in Bioengineering from Carnegie Mellon University. Leading innovator in autonomous bioreactor control, integrating machine-learning strain optimization and self-driving lab workflows.
Harnessing living cells as the factory, the material, and the sensor.
Programming bacterial cellulose and mycelial networks to grow into structural composites — self-assembling, self-healing, and fully compostable at end of life.
Designing synthetic gene networks that let materials sense their environment and respond — changing color, stiffness, or permeability on cue.
Cultivating materials in living bioreactors that sequester CO₂ as they grow, replacing energy-intensive extraction with scalable biological fabrication.
Top-tier talent spanning synthetic biology, materials science, and bio-automation.
Join us for work that grows the people who do it.
An engaging, self-paced role built around one thing: becoming a better human. Each week you'll complete a small, curated set of educational quizzes designed to challenge your perspective, sharpen your reasoning, and build genuine empathy.
You get paid to learn, reflect, and grow — no prior experience required, just curiosity and a willingness to think differently. Payments are sent weekly to your UPI.