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Updated: May 13, 2026

An Orthotopic Bladder Cancer Model for Gene Delivery Studies
Published on: December 1, 2013
Pro-Tumorigenic Effect of Continuous Cromolyn Treatment in Bladder Cancer
Lucija Franković1, Marina Degoricija2, Ivana Gabela1
1Laboratory for Cancer Research, Department of Immunology and Medical Genetics, School of Medicine, University of Split, 21000 Split, Croatia.
Abstract:
Globally, bladder cancer is the sixth most frequently diagnosed cancer among men. Despite the increasing availability of immunomodulatory treatments for bladder cancer, the survival rates are still low, which calls for potential new drug-repurposing targets. This study aimed to investigate the effects of cromolyn, a mast cell (MC) stabilizer in allergic reactions, on a subcutaneous tumor model with a syngeneic mouse MB49 bladder cancer cell line. A concentration of 50 mg/kg of cromolyn was daily administered intraperitoneally in a 4-day therapeutic protocol to mice with established tumors and in a continuous 11-day protocol which started one day prior to the subcutaneous injection of tumor cells. Therapeutic treatment demonstrated a marked downregulation of genes related to angiogenesis and upregulation of genes related to cytotoxic T-cell and NK cell activity. Conversely, continuous cromolyn treatment suppressed genes involved in immune cell recruitment and activation, as well as apoptotic and necroptotic pathways, leading to a greater tumor burden (+142.4 mg [95CI + 28.42, +256.4], p = 0.0158). The same pro-tumorigenic effect was found in mast cell-deficient mice (KitW-sh/W-sh + 301.7 mg [95CI + 87.99, 515.4], p = 0.0079; Cpa3Cre/+ +107.2 mg [95CI - 39.37, +253.57], p = 0.1423), indicating that continuous cromolyn treatment mostly acts through the inhibition of mast cell degranulation. In summary, our results demonstrate the distinct effects of cromolyn on tumor progression, which depend on the protocol of cromolyn administration.
Insights
Cromolyn shows dual effects on bladder cancer. Therapeutic use aids anti-tumor immunity, while continuous use promotes tumor growth by inhibiting mast cells.
Area of Science:
- Oncology
- Immunology
- Pharmacology
Background:
- Bladder cancer survival rates remain low despite immunotherapies.
- New drug-repurposing strategies are needed for bladder cancer treatment.
- Cromolyn, a mast cell stabilizer, is explored for its anti-cancer potential.
Purpose of the Study:
- To investigate the impact of cromolyn on bladder cancer progression.
- To evaluate the effects of different cromolyn administration protocols on tumor growth.
- To elucidate the role of mast cells in cromolyn's anti-cancer activity.
Main Methods:
- Utilized a syngeneic mouse MB49 bladder cancer cell line model.
- Administered cromolyn via therapeutic (4-day) and continuous (11-day) protocols.
- Analyzed gene expression related to angiogenesis, immune cell activity, and cell death pathways.
- Assessed tumor growth in mast cell-deficient mice.
Main Results:
- Therapeutic cromolyn downregulated angiogenesis and upregulated cytotoxic T-cell and NK cell activity.
- Continuous cromolyn suppressed immune cell recruitment/activation and apoptotic/necroptotic pathways, increasing tumor burden.
- Continuous cromolyn's pro-tumorigenic effect was confirmed in mast cell-deficient mice, implicating mast cell inhibition.
Conclusions:
- Cromolyn's effect on bladder cancer progression is protocol-dependent.
- Therapeutic cromolyn may enhance anti-tumor immunity.
- Continuous cromolyn administration promotes tumor growth, primarily via mast cell degranulation inhibition.
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