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Updated: Jan 20, 2026

Culture of Bladder Cancer Organoids as Precision Medicine Tools
Published on: December 28, 2021
Oncolytic Immunotherapy for Bladder Cancer Using Coxsackie A21 Virus: Using a Bladder Tumor Precision-Cut Slice Model
Kate Relph1, Nicola Annels1, Chris Smith1
1Targeted Cancer Therapy, Department of Clinical and Experimental Medicine, Faculty of Health and Medical Science, University of Surrey, Guildford, Surrey, UK.
Abstract:
Oncolytic viruses are anticancer agents that selectively target and kill cancer cells by direct lysis, while at the same time stimulating a tumor antigen-specific adaptive immune response. These promising therapeutic agents target multiple cancers and have already proven to be an effective treatment option for solid malignancies. One such agent, T-Vec (Talimogene laherparepvec) has been licensed and is in routine clinical use for treatment of malignant melanoma.Non-muscle invasive bladder cancer (NMIBC) is an ideal potential target for oncolytic immunotherapy as locally instilled live biological therapy using Bacille Calmette-Guerin (BCG) is already well established in the clinical setting. Coxsackievirus A21 (CVA21) is a novel intercellular adhesion molecule-1 (ICAM-1)-targeted immunotherapeutic virus. We have investigated CVA21-induced cytotoxicity in a panel of human bladder cancer cell lines, revealing a range of sensitivities largely correlating with expression of the viral receptor ICAM-1. CVA21 in combination with low doses of mitomycin-C enhanced CVA21 viral replication and oncolysis by increasing surface expression levels of ICAM-1. In addition to cell lines and an animal model a key component of our studies into oncolytic immunotherapy for bladder cancer was the use of a bladder tumor precision slice preclinical model system which represents tumor architecture, heterogeneity, and the complexity of a tumor in vitro. Results seen in cell lines were reflected in the tumor slice model whereby levels of virus protein expression and induction of apoptosis were enhanced with prior exposure to mitomycin-C. In this chapter we demonstrate the utility of the precision cut tumor slice model as a unique organotypic model to test oncolytic viruses. We will describe how to prepare and slice the tumor using a vibrating microtome together with the optimum culture and conditions for treatment.
Insights
Oncolytic virus therapy using Coxsackievirus A21 shows promise for bladder cancer. Combining it with mitomycin-C enhances viral replication and cancer cell killing, particularly in a novel tumor slice model.
Area of Science:
- Oncolytic virotherapy
- Cancer immunotherapy
- Bladder cancer research
Background:
- Oncolytic viruses selectively destroy cancer cells and stimulate anti-tumor immunity.
- Talimogene laherparepvec is an approved oncolytic virus for melanoma.
- Non-muscle invasive bladder cancer (NMIBC) is a potential candidate for oncolytic immunotherapy.
Purpose of the Study:
- To investigate the efficacy of Coxsackievirus A21 (CVA21) as an oncolytic immunotherapy for bladder cancer.
- To evaluate CVA21's effectiveness in combination with mitomycin-C.
- To demonstrate the utility of a precision cut tumor slice model for testing oncolytic viruses.
Main Methods:
- Assessed CVA21 cytotoxicity in human bladder cancer cell lines.
- Examined CVA21 replication and oncolysis in combination with mitomycin-C.
- Utilized a precision cut bladder tumor slice model to mimic in vivo tumor conditions.
Main Results:
- CVA21 sensitivity varied among cell lines, correlating with ICAM-1 receptor expression.
- Mitomycin-C increased CVA21 replication and oncolysis by upregulating ICAM-1.
- Results in cell lines were corroborated in the tumor slice model, showing enhanced viral protein expression and apoptosis.
Conclusions:
- CVA21 demonstrates oncolytic potential against bladder cancer.
- Combination therapy with mitomycin-C enhances CVA21 efficacy.
- The precision cut tumor slice model is a valuable tool for evaluating oncolytic viruses in a relevant tumor microenvironment.
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