Precision delivery for the therapies of tomorrow.

Our Science

Precision Targeting

Many delivery systems rely on untargeted nanoparticles to find their target, which is why over 90% of untargeted systems end up in the liver instead of the diseased tissue they're meant to reach.

KuriBio's nanoparticles use a multi-biomarker targeting system: each ligand plays a role in homing the nanoparticle to the target cell and delivering the payload while avoiding the healthy cells around it. Our multi-target approach is already outperforming untargeted and single-marker targeted systems in preclinical testing.

Beyond RNA

Most lipid nanoparticle (LNP) platforms in the market today are only built to carry RNA or small molecules.

KuriBio's platform is engineered to encapsulate and deliver a broader range of payloads, including DNA and proteins, with high encapsulation efficiency confirmed across therapeutic types. This flexibility means the same delivery infrastructure can support gene therapies, protein therapies, and next-generation modalities as they emerge.

A chart displaying progress stages for three KuriBio programs, with details about target discovery, candidate selection, and validation, and partners such as emerging biotech and mid-sized biotech.

Our Pipeline

Multiple therapeutic targets enabled by KuriBio’s platform.

Our Team

  • Dr. Judee Sharon's headshot.

    JUDEE SHARON, Ph.D.

    CEO & Co-Founder

    Expert in liposomal nanoparticles & encapsulating large payloads

    Entrepreneurial Fellow at Innovative Genomics Institute, UC Berkeley

    Minnesota ARCS Foundation Scholar

  • Neal Shah's headshot.

    NEAL SHAH

    CSO & Co-Founder

    Expert in genetic engineering and synthetic biology

    > 18 years of industry experience moving scientific breakthroughs from 0 —> 1

Precision medicine only works if delivery is precise.

We're building the “last mile” delivery platform to get novel therapies to the cells that need them — and we're looking for partners and investors who want to build it with us.