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.

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.

Related Concept Videos

Culture of Bladder Cancer Organoids as Precision Medicine Tools08:39

Culture of Bladder Cancer Organoids as Precision Medicine Tools

Patient-derived organoids (PDOs) are a powerful tool in translational cancer research, reflecting both the genetic and phenotypic heterogeneity of the disease and response to personalized anti-cancer therapies. Here, a consolidated protocol to generate human primary bladder cancer PDOs in preparation for the evaluation of phenotypic analyses and drug responses is detailed.
5.4K
Bladder Tumor Organoid Model: A Method for Orthotopic Transplantation of Bladder Organoids into Recipient Murine Bladder04:15

Bladder Tumor Organoid Model: A Method for Orthotopic Transplantation of Bladder Organoids into Recipient Murine Bladder

In this video, we describe the orthotopic transplantation of cultured bladder tumor organoids into the murine bladder to study the role of the organ environment on developing...
3.0K
Magnetic Resonance Imaging Assessment of Carcinogen-induced Murine Bladder Tumors05:19

Magnetic Resonance Imaging Assessment of Carcinogen-induced Murine Bladder Tumors

Murine bladder tumors are induced with the N-butyl-N-(4-hydroxybutyl) nitrosamine carcinogen (BBN). Bladder tumor generation is heterogeneous; therefore, an accurate assessment of tumor burden is needed before randomization to experimental treatment. Here we present a fast, reliable MRI protocol to assess tumor size and...
10.8K
Modeling Orthotopic Bladder Tumor in Mouse Model: A Procedure for Intravesical Administration of Cancer Cells into Murine Bladder04:28

Modeling Orthotopic Bladder Tumor in Mouse Model: A Procedure for Intravesical Administration of Cancer Cells into Murine Bladder

In this video, we describe the intravesical procedure of delivering cancer cells into the bladder of a mouse model. This procedure helps generate an orthotopic bladder tumor model that can be used to develop therapeutic...
3.4K
An Orthotopic Bladder Cancer Model for Gene Delivery Studies07:48

An Orthotopic Bladder Cancer Model for Gene Delivery Studies

Implantation of cancer cells into the organ of origin can serve as a useful preclinical model to evaluate novel therapies. MB49 bladder carcinoma cells can be grown within the bladder following intravesical instillation. This protocol demonstrates catheterization of the mouse bladder for the purpose of tumor implantation and adenoviral...
13.0K
A Murine Orthotopic Bladder Tumor Model and Tumor Detection System06:23

A Murine Orthotopic Bladder Tumor Model and Tumor Detection System

This protocol describes the generation of murine orthotopic bladder tumors in female C57BL/6J mice and the monitoring of tumor...
15.5K