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Induction of Invasive Transitional Cell Bladder Carcinoma in Immune Intact Human MUC1 Transgenic Mice: A Model for Immunotherapy Development
Published on: October 30, 2013
ARID1A mutation plus CXCL13 expression act as combinatorial biomarkers to predict responses to immune checkpoint
Sangeeta Goswami1, Yulong Chen1, Swetha Anandhan1
1Department of Genitourinary Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Abstract:
Immune checkpoint therapy (ICT) can produce durable antitumor responses in metastatic urothelial carcinoma (mUCC); however, the responses are not universal. Despite multiple approvals of ICT in mUCC, we lack predictive biomarkers to guide patient selection. The identification of biomarkers may require interrogation of both the tumor mutational status and the immune microenvironment. Through multi-platform immuno-genomic analyses of baseline tumor tissues, we identified the mutation of AT-rich interactive domain-containing protein 1A (ARID1A) in tumor cells and expression of immune cytokine CXCL13 in the baseline tumor tissues as two predictors of clinical responses in a discovery cohort (n = 31). Further, reverse translational studies revealed that CXCL13-/- tumor-bearing mice were resistant to ICT, whereas ARID1A knockdown enhanced sensitivity to ICT in a murine model of bladder cancer. Next, we tested the clinical relevance of ARID1A mutation and baseline CXCL13 expression in two independent confirmatory cohorts (CheckMate275 and IMvigor210). We found that ARID1A mutation and expression of CXCL13 in the baseline tumor tissues correlated with improved overall survival (OS) in both confirmatory cohorts (CheckMate275, CXCL13 data, n = 217; ARID1A data, n = 139, and IMvigor210, CXCL13 data, n = 348; ARID1A data, n = 275). We then interrogated CXCL13 expression plus ARID1A mutation as a combination biomarker in predicting response to ICT in CheckMate275 and IMvigor210. Combination of the two biomarkers in baseline tumor tissues suggested improved OS compared to either single biomarker. Cumulatively, this study revealed that the combination of CXCL13 plus ARID1A may improve prediction capability for patients receiving ICT.
Insights
Biomarkers AT-rich interactive domain-containing protein 1A (ARID1A) mutation and CXCL13 cytokine expression predict response to immune checkpoint therapy in metastatic urothelial carcinoma. Combining these biomarkers improves prediction of overall survival.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Immune checkpoint therapy (ICT) shows promise for metastatic urothelial carcinoma (mUCC) but lacks predictive biomarkers for patient selection.
- Understanding the tumor microenvironment and mutational status is crucial for identifying effective biomarkers.
Purpose of the Study:
- To identify and validate biomarkers predicting response to ICT in mUCC.
- To evaluate the combined predictive value of ARID1A mutation and CXCL13 expression.
Main Methods:
- Multi-platform immuno-genomic analyses of tumor tissues from discovery and validation cohorts.
- Reverse translational studies in murine bladder cancer models.
- Correlation analysis of ARID1A mutation and CXCL13 expression with overall survival (OS) in patients treated with ICT.
Main Results:
- ARID1A mutation and CXCL13 expression were identified as predictors of ICT response in a discovery cohort.
- Experimental models supported the roles of ARID1A and CXCL13 in ICT sensitivity.
- Both biomarkers correlated with improved OS in independent validation cohorts (CheckMate275, IMvigor210).
- Combining ARID1A mutation and CXCL13 expression demonstrated superior prediction of OS compared to single biomarkers.
Conclusions:
- ARID1A mutation and CXCL13 expression are significant predictors of ICT response in mUCC.
- The combination of ARID1A and CXCL13 offers enhanced predictive capability for patient selection in ICT.
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