We develop living, biological alternatives to the chemicals agriculture and industry have relied on for decades — nematodes that hunt pests, cultures that build healthier soil and livestock, microorganisms that break down waste. No synthetic residues. No resistance building up over time. Just biology, put to work.
Every product starts from the same question: what would a living organism do here, if we simply gave it the right conditions?
Long before synthetic chemistry, agriculture managed pests and soil health through biology. We study those practices — alongside modern microbiology — to build products that work with an ecosystem instead of against it.
Pesticides sprayed on a schedule, whether or not the pest is even present yet. Treatments that leave residues in the fruit and the soil. Contact-kill that stops working the moment it washes off, or the pest develops resistance to it.
Nematodes that actively seek out pests hidden inside a trunk or root system, rather than waiting on contact. Living systems that reproduce, adapt, and keep doing the job long after we've left the field.
The same microbial toolkit — effective microorganisms, entomopathogenic nematodes, biological composting cultures — gets applied differently depending on the problem in front of us.
Nature's intelligent alternative to chemical pesticides.
Our EPN (entomopathogenic nematode) programme uses juveniles carrying naturally occurring symbiotic bacteria. Unlike a contact pesticide, they actively move through soil and plant tissue seeking out pest larvae — including ones hidden deep inside a trunk, like the Red Palm Weevil.
Career built across major Indian industrial groups, including a long tenure with Reliance Industries leading supply-chain and modernisation initiatives across packaging, logistics, and cold-chain movement — experience that now shapes how we think about scaling biological products reliably.
Physician with a Master's in Public Health from Purdue University, majoring in epidemiology and community medicine. Having seen the health impact of pesticide exposure first-hand in critical care, he leads our research into residue-free, organic alternatives.