nCage Therapeutics is developing a novel synthetic protein cage based on the bacterial TRAP protein
The platform
What are TRAP-cages?
TRAP-cages are protein cages formed from rings of the bacterial TRAP protein. They act like a virus — displaying biological material on their surface, or transporting nucleic acids and proteins into the cell — without carrying any genetic material of their own.

Synthetic virus-like particles
- Formed by multiple copies of modified or de novo protein components, designed to assemble into stable, hollow shapes.
- Built on the bacterial TRAP protein.
- Akin to synthetic viral particles, but without nucleic material.
- The exterior carries mounted protein or other biological material.
- Proteins can be mounted in repeating arrays, mimicking the patterns found in nature.
Programmable opening
- Programmable opening and closing is unique to the TRAP-cage platform.
- Cargo is loaded into the interior of the cage and released inside cells.
- Cargo can be proteins, peptides, nucleic acids or small molecule drugs.
What makes it different
Loaded shut. Opened on cue.
- 01
Closed
Gold(I) links hold the protein rings together. The cargo is sealed inside and protected in circulation.
- 02
Triggered
Inside the cell, a reducing agent breaks the gold links. Nothing else about the cage has to change.
- 03
Released
The cage falls apart and delivers its payload where it is needed — not on the way there.
Hover the cage to open it
Tap inside the circle to see how nCage works
Where we apply it
Two segments of focus
One platform, two therapeutic problems it is unusually well suited to.
Synthetic VLP Vaccines
Stronger and more durable vaccines against respiratory disease, with antigens mounted on both the outside and the inside of the cage.
Read the scienceAntibody Drug Conjugates
A safer profile for blockbuster anti-cancer drugs, by holding the payload shut until the cage reaches the target cell.
See delivery systemsWorking on vaccines or targeted delivery?
We partner with pharmaceutical companies and research groups on programmes where antigen density, payload protection or controlled release is the bottleneck.
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