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Updated: Jul 18, 2025

Induction of Invasive Transitional Cell Bladder Carcinoma in Immune Intact Human MUC1 Transgenic Mice: A Model for Immunotherapy Development
Published on: October 30, 2013
IL-15 synergizes with CD40 agonist antibodies to induce durable immunity against bladder cancer
Jeffrey L Wong1,2, Patrick Smith1, Juan Angulo-Lozano1
1Laboratory of Molecular Genetics and Immunology, Rockefeller University, New York, NY 10065.
Abstract:
CD40 is a central costimulatory receptor implicated in productive antitumor immune responses across multiple cancers, including bladder cancer. Despite strong preclinical rationale, systemic administration of therapeutic agonistic antibodies targeting the CD40 pathway has demonstrated dose-limiting toxicities with minimal clinical activity, emphasizing an important need for optimized CD40-targeted approaches, including rational combination therapy strategies. Here, we describe a role for the endogenous IL-15 pathway in contributing to the therapeutic activity of CD40 agonism in orthotopic bladder tumors, with upregulation of transpresented IL-15/IL-15Rα surface complexes, particularly by cross-presenting conventional type 1 DCs (Dendritic Cells), and associated enrichment of activated CD8 T cells. In bladder cancer patient samples, we identify DCs as the primary source of IL-15, although they lack high levels of IL-15Rα at baseline. Using humanized immunocompetent orthotopic bladder tumor models, we demonstrate the ability to therapeutically augment this interaction through combined treatment with anti-CD40 agonist antibodies and exogenous IL-15, including the fully-human Fc-optimized antibody 2141-V11 currently in clinical development for the treatment of bladder cancer. Collectively, these data reveal an important role for IL-15 in mediating antitumor CD40 agonist responses in bladder cancer and provide key proof-of-concept for combined use of Fc-optimized anti-CD40 agonist antibodies and agents targeting the IL-15 pathway. These data support expansion of ongoing clinical studies evaluating anti-CD40 agonist antibodies and IL-15-based approaches to develop combinations of these promising therapeutics for the treatment of patients with bladder cancer.
Insights
Combining CD40 agonists with IL-15 enhances anti-tumor immunity in bladder cancer. This strategy leverages dendritic cells to boost CD8 T cell responses, offering a promising therapeutic approach for patients.
Area of Science:
- Immunology
- Oncology
- Cancer Research
Background:
- CD40 agonists show promise for cancer immunotherapy but face toxicity and efficacy challenges.
- Optimized CD40-targeting strategies, including combination therapies, are crucial for improving clinical outcomes.
- The IL-15 pathway's role in CD40 agonism's efficacy in bladder cancer requires further elucidation.
Purpose of the Study:
- To investigate the role of the endogenous IL-15 pathway in CD40 agonism's therapeutic activity in bladder cancer.
- To explore the potential of combining anti-CD40 agonist antibodies with IL-15 for enhanced anti-tumor immune responses.
- To validate these findings in humanized immunocompetent orthotopic bladder tumor models.
Main Methods:
- Analysis of IL-15 and IL-15Rα expression in bladder cancer patient samples.
- Utilizing orthotopic bladder tumor models in humanized immunocompetent mice.
- Administering combined treatment with anti-CD40 agonist antibodies and exogenous IL-15.
Main Results:
- CD40 agonism upregulates transpresented IL-15/IL-15Rα complexes, particularly by dendritic cells (DCs).
- This upregulation is associated with an increased presence of activated CD8 T cells.
- Combined anti-CD40 and IL-15 treatment therapeutically augmented anti-tumor responses in preclinical models.
Conclusions:
- The IL-15 pathway is integral to mediating anti-tumor CD40 agonist responses in bladder cancer.
- Combination therapy with Fc-optimized anti-CD40 antibodies and IL-15-targeting agents shows significant therapeutic potential.
- These findings support the clinical evaluation of combined anti-CD40 and IL-15-based therapies for bladder cancer treatment.
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