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Published on: October 30, 2013
Inhibiting Immune Checkpoints for the Treatment of Bladder Cancer
S Bidnur1, R Savdie1, P C Black1
1Vancouver Prostate Centre, University of British Columbia , Vancouver, B.C, Canada.
Background:
Increasing evidence supporting the role of immune checkpoint blockade in cancer management has been bolstered by recent reports demonstrating significant and durable clinical responses across multiple tumour types, including metastatic urothelial carcinoma (mUC). The majority of these results are achieved via blockade of the programmed death (PD) axis, which like CTLA-4 blockade permits T-cell activation and immune-mediated anti-tumour activity- essentially harnessing the patient's own immune system to mount an anti-neoplastic response. However, while clinical responses can be striking, our understanding of the biology of immune checkpoint blockade is only beginning to shed light on how to maximize and even improve patient outcomes with immune checkpoint blockade, especially in UC.
Methods:
We performed a literature review for immune checkpoint blockade with a focus on rationale for checkpoint therapy and outcomes in UC. We also highlight the advances made in other tumour types, with a focus on the recent 2015 meeting of the American Society for Clinical Oncology.
Results:
In heavily pre-treated UC, trials are suggesting objective response rates above 30% . These impressive results are seen across multiple different tumour types, especially those with high burden of DNA level mutations. Identification of prognostic biomarkers is currently under investigation, in order to improve patient selection. Interestingly, response to PD-1 directed therapy is seen even in patients with no evidence of PD-1 positivity on immunohistochemistry. This has led to the development of enhanced biomarkers including assessing DNA mutation rates and immune gene signatures, to improve patient selection.
Conclusions:
Immune checkpoint blockade is an exciting cancer treatment modality which is demonstrating impressive clinical results across multiple tumour types. For UC, anti-PD directed therapy represents a much needed treatment in the metastatic, post chemotherapy context. Potential for these agents to have clinical utility in non-metastatic UC is still to be assessed.
Insights
Immune checkpoint blockade, particularly targeting the programmed death (PD) axis, shows promise for metastatic urothelial carcinoma (mUC) treatment. Further research is needed to optimize patient selection and expand its use beyond metastatic settings.
Area of Science:
- Oncology
- Immunology
- Cancer Therapy
Background:
- Immune checkpoint blockade demonstrates significant clinical responses in various cancers, including metastatic urothelial carcinoma (mUC).
- Blockade of the programmed death (PD) axis harnesses the patient's immune system for anti-neoplastic effects.
- Understanding the biology of immune checkpoint blockade is crucial for improving patient outcomes in UC.
Approach:
- A literature review focused on immune checkpoint blockade, its rationale, and outcomes in UC.
- Advances in other tumor types and the 2015 American Society for Clinical Oncology meeting were highlighted.
Key Points:
- Trials in pre-treated UC show objective response rates exceeding 30%.
- High DNA mutation burden correlates with response in multiple tumor types.
- Biomarker development, including DNA mutation rates and immune gene signatures, is essential for patient selection, as response is observed even without PD-1 positivity on immunohistochemistry.
Conclusions:
- Immune checkpoint blockade is a promising cancer treatment modality with impressive results across tumor types.
- Anti-PD therapy offers a vital treatment option for metastatic, post-chemotherapy UC.
- The clinical utility of these agents in non-metastatic UC requires further investigation.
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