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The Science of Precision Engineering

Our research philosophy is rooted in the rigorous application of molecular engineering to solve global health challenges. We believe in turning complex biological systems into predictable, therapeutic tools.

Nanocage Engineering

We engineer synthetic protein nanocages that mimic the architecture of viral capsids. These molecular structures are designed with atomic-level precision to serve as programmable containers for genetic cargo, protecting delicate blueprints from degradation while navigating complex biological barriers.

Our cargo encapsulation technology enables the targeted delivery of genetic blueprints directly to specific cells. By optimizing surface properties and release kinetics, we turn the patient's cells into localized bio-factories, offering a versatile and sustainable approach to personalized preventive therapeutics.

Viral Restriction Research

We explore the discovery of antiviral electron transfer and the engineering of viral restrictions factors that block viral replication cycles at the molecular level.

Antiviral Electron Transfer

Viral Restriction Factors

Scientific Publications

Discovery of an Antiviral Electron Transfer Process to Create Catalytically Self‐Sufficient Viral Restriction Factors, (2026) Angewandte Chemie e5423408

A VERSATILE VIRUS-MIMETIC ENGINEERING APPROACH FOR CONCURRENT PROTEIN NANOCAGE SURFACE-FUNCTIONALISATION AND CARGO ENCAPSULATION, (2024) SMALL 20, 2310913. 

CONTROLLING NANOCAGE ASSEMBLY, TOWARDS DEVELOPING A ONE-HEALTH "PLUG & PLAY" PLATFORM FOR TARGETED THERAPY, (2025) CHEMICAL COMMUNICATIONS 61: 13221–13235

Let’s Bridge the Gap from Lab to Bench.

We are actively seeking scientific partnerships, research inquiries, and media contacts to accelerate the impact of engineering viral restriction factors and nanocage engineering.

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