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Updated: Aug 5, 2025

An Orthotopic Bladder Cancer Model for Gene Delivery Studies
Published on: December 1, 2013
New Approaches to Targeting Epigenetic Regulation in Bladder Cancer
Daryl Thompson1, Nathan Lawrentschuk2,3,4, Damien Bolton1,5
1Department of Surgery, Austin Health, The University of Melbourne, Heidelberg, VIC 3084, Australia.
Abstract:
Epigenetics is a growing field and in bladder cancer, it is of particular interest in advanced or metastatic disease. As opposed to genetic mutations in which the nucleotide sequence itself is altered, epigenetic alterations refer to changes to the genome that do not involve nucleotides. This is of great interest in cancer research because epigenetic alterations are reversible, making them a promising target for pharmacological agents. While chemoimmunotherapy is the mainstay for metastatic disease, there are few alternatives for patients who have progressed on first- or second-line treatment. By targeting reversible epigenetic alterations, novel epigenetic therapies are important potential treatment options for these patients. A search of clinical registries was performed in order to identify and collate epigenetic therapies currently in human trials. A literature search was also performed to identify therapies that are currently in preclinical stages, whether this be in vivo or in vitro models. Twenty-five clinical trials were identified that investigated the use of epigenetic inhibitors in patients with bladder cancer, often in combination with another agent, such as platinum-based chemotherapy or pembrolizumab. The main classes of epigenetic inhibitors studied include DNA-methyltransferase (DNMT) inhibitors, histone deacetylase (HDAC) inhibitors, and histone methyltransferase (HMT) inhibitors. At present, no phase 3 clinical trials have been registered. Few trials have published results, though DNMT inhibitors have shown the most promise thus far. Many patients with advanced or metastatic bladder cancer have limited treatment options, particularly when first- or second-line chemoimmunotherapy fails. Epigenetic alterations, which are common in bladder cancer, are potential targets for drug therapies, and these epigenetic agents are already in use for many cancers. While they have shown promise in pre-clinical trials for bladder cancer, more research is needed to assess their benefit in clinical settings.
Insights
Epigenetic therapies, targeting reversible changes in bladder cancer, are being investigated in 25 clinical trials. DNA-methyltransferase inhibitors show early promise for advanced disease when standard treatments fail.
Area of Science:
- Oncology
- Epigenetics
- Pharmacology
Background:
- Epigenetic alterations, distinct from genetic mutations, are crucial in advanced and metastatic bladder cancer.
- These alterations are reversible, presenting opportunities for novel pharmacological interventions.
- Current treatment options for advanced bladder cancer are limited, especially after failure of first- or second-line chemoimmunotherapy.
Purpose of the Study:
- To identify and collate epigenetic therapies currently in human trials for bladder cancer.
- To review epigenetic therapies in preclinical stages (in vivo and in vitro).
- To assess the potential of epigenetic inhibitors as novel treatment options for bladder cancer patients.
Main Methods:
- Searched clinical registries for ongoing epigenetic therapy trials in bladder cancer.
- Conducted a literature search for preclinical epigenetic therapies.
- Identified and categorized epigenetic inhibitors under investigation, including DNMT, HDAC, and HMT inhibitors.
Main Results:
- Twenty-five clinical trials involving epigenetic inhibitors in bladder cancer were identified, often in combination therapies.
- No Phase 3 clinical trials have been registered to date.
- DNA-methyltransferase (DNMT) inhibitors have demonstrated the most promise in early-stage investigations.
Conclusions:
- Epigenetic alterations are prevalent in bladder cancer and represent promising therapeutic targets.
- Epigenetic therapies are under active investigation, with DNMT inhibitors showing early potential.
- Further clinical research is essential to establish the efficacy of epigenetic agents in bladder cancer treatment.
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