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Updated: Oct 29, 2025

Ex vivo Expansion of Tumor-reactive T Cells by Means of Bryostatin 1/Ionomycin and the Common Gamma Chain Cytokines Formulation
Published on: January 14, 2011
Anti-tumor effects of RTX-240: an engineered red blood cell expressing 4-1BB ligand and interleukin-15
Shannon L McArdel1, Anne-Sophie Dugast1, Maegan E Hoover1
1Rubius Therapeutics® Inc., Cambridge, MA, USA.
Abstract:
Recombinant agonists that activate co-stimulatory and cytokine receptors have shown limited clinical anticancer utility, potentially due to narrow therapeutic windows, the need for coordinated activation of co-stimulatory and cytokine pathways and the failure of agonistic antibodies to recapitulate signaling by endogenous ligands. RTX-240 is a genetically engineered red blood cell expressing 4-1BBL and IL-15/IL-15Rα fusion (IL-15TP). RTX-240 is designed to potently and simultaneously stimulate the 4-1BB and IL-15 pathways, thereby activating and expanding T cells and NK cells, while potentially offering an improved safety profile through restricted biodistribution. We assessed the ability of RTX-240 to expand and activate T cells and NK cells and evaluated the in vivo efficacy, pharmacodynamics and tolerability using murine models. Treatment of PBMCs with RTX-240 induced T cell and NK cell activation and proliferation. In vivo studies using mRBC-240, a mouse surrogate for RTX-240, revealed biodistribution predominantly to the red pulp of the spleen, leading to CD8 + T cell and NK cell expansion. mRBC-240 was efficacious in a B16-F10 melanoma model and led to increased NK cell infiltration into the lungs. mRBC-240 significantly inhibited CT26 tumor growth, in association with an increase in tumor-infiltrating proliferating and cytotoxic CD8 + T cells. mRBC-240 was tolerated and showed no evidence of hepatic injury at the highest feasible dose, compared with a 4-1BB agonistic antibody. RTX-240 promotes T cell and NK cell activity in preclinical models and shows efficacy and an improved safety profile. Based on these data, RTX-240 is now being evaluated in a clinical trial.
Insights
RTX-240, a novel immunotherapy, effectively expands and activates T cells and NK cells. Preclinical studies show RTX-240 demonstrates anticancer efficacy and an improved safety profile compared to existing treatments.
Area of Science:
- Immunology
- Oncology
- Biotechnology
Background:
- Recombinant agonists for co-stimulatory and cytokine receptors have limited anticancer utility due to narrow therapeutic windows and signaling limitations.
- Agonistic antibodies often fail to replicate endogenous ligand signaling, impacting clinical efficacy.
Purpose of the Study:
- To assess RTX-240, a genetically engineered red blood cell expressing 4-1BBL and IL-15/IL-15Rα fusion, for its ability to activate T cells and NK cells.
- To evaluate the in vivo efficacy, pharmacodynamics, and tolerability of RTX-240 in preclinical cancer models.
Main Methods:
- Treatment of peripheral blood mononuclear cells (PBMCs) with RTX-240 to assess T cell and NK cell activation and proliferation.
- In vivo studies using mRBC-240 (mouse surrogate) in murine models to evaluate biodistribution, efficacy, and safety.
Main Results:
- RTX-240 induced T cell and NK cell activation and proliferation in PBMCs.
- mRBC-240 showed preferential biodistribution to the spleen, expanding CD8+ T cells and NK cells.
- mRBC-240 demonstrated efficacy in B16-F10 melanoma and CT26 tumor models, increasing tumor-infiltrating lymphocytes and inhibiting tumor growth.
- mRBC-240 was well-tolerated, with no observed hepatic injury at the highest dose.
Conclusions:
- RTX-240 effectively promotes T cell and NK cell activity in preclinical settings.
- RTX-240 exhibits promising anticancer efficacy and an improved safety profile, warranting clinical evaluation.
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