In vivo CAR-T gen 1.0 is unlikely to overcome solid tumors without a way to safely boost potency.
Armoring can increase activity, but without tunability toxicity is likely (e.g. PSMA CAR-T/tgfbr2)
Our Solution
Tunable armored in vivo CAR-T that is extremely efficient to transduce and manufacture
Naturally this can also be applied to heme oncology and I&I
Our Team
World-class team developing the next generation of in vivo CAR-T cell therapeutics
RheoCAR-T™ Platform
A proprietary platform enabling Cell Therapy 3.0
Scalable
Novel T cell targeting to enable safe and efficient in vivo CAR-T engineering with a single dose
Powerful
Modular platform for integrating diverse potency-enhancing payloads enabling deep and durable responses
Controllable
Tight CAR and payload control with low dose of FDA-approved small molecule
RheoBrick™ ON-switch
Tuning system to enable armoring
Proprietary degron functional in vivo at sub clinical doses of lenalidomide
IL-15 armoring
More potent and tunable CAR-Ts
Our publications
Patent families
1) WO2021080427A1: CHIMERIC POLYPEPTIDE FOR REGULATING IMMUNE CELLS
2) WO2023177296A1: Zinc finger degron sequences
3) WO2024117904A1: Receptor- and drug-dependent regulated on-site production of biologicals.
4) WO2025248464A3: Loop reinforcement expression system for improved cell therapy products.
Papers
1) CRASH-IT switch enables reversible and dose-dependent control of TCR and CAR T-cell function. Cancer Immunology Research
2) Multimodular Optimization of Chemically Regulated T Cell Switches Demonstrates Flexible and Interchangeable Nature of Immune Cell Signaling Domains. Human Gene Therapy
3) Safety switches for adoptive cell therapy. Current Opinion in Immunology