The decision-maker
A single cell reads its environment and acts on it — dividing, repairing, specializing, or shutting down. That's a lot of computation happening without a brain.
Biology · Molecular Biology · Biotech
Interested in the machinery of life — from the folding of a single protein to the systems built on top of it.
I'm interested in biology at every scale — from whole organisms down to the molecules that keep them running. Molecular biology draws most of my attention: how DNA becomes function, how cells make decisions, and how small changes ripple into large effects.
That curiosity extends to biotech — where research turns into tools, therapies, and systems that people can actually use.
The broad view: how living systems are organized, from single cells to entire ecosystems, and how they stay in balance.
The mechanics underneath — DNA, RNA, and proteins, and how information moves through a cell to become a working system.
Where the science turns into something built: tools, diagnostics, and therapies grounded in molecular biology.
A single cell reads its environment and acts on it — dividing, repairing, specializing, or shutting down. That's a lot of computation happening without a brain.
DNA, RNA, and proteins are the working parts underneath every cellular decision — a code that gets read, copied, and translated into action.
Biotech is what happens when that understanding turns outward — into diagnostics, therapies, and tools people can actually use.