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Discovery of Molecular DNA Methylation-Based Biomarkers through Genome-Wide Analysis of Response Patterns to BCG for Bladder Cancer

Background: Bacillus Calmette-Guérin (BCG) immunotherapy, the standard adjuvant intravesical therapy for some intermediate and most high-risk non-muscle invasive bladder cancers (NMIBCs), suffers from a heterogenous response rate. Molecular markers to help guide responses are scarce and currently no...

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Autores principales: Ilijazi, Dafina, Pulverer, Walter, Ertl, Iris E., Lemberger, Ursula, Kimura, Shoji, Abufaraj, Mohammad, D’Andrea, David, Pradere, Benjamin, Bruchbacher, Andreas, Graf, Anna, Soria, Francesco, Susani, Martin, Haitel, Andrea, Molinaro, Luca, Pycha, Armin, Comploj, Evi, Pabinger, Stephan, Weinhäusel, Andreas, Egger, Gerda, Shariat, Shahrokh F., Hassler, Melanie R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464079/
https://www.ncbi.nlm.nih.gov/pubmed/32764425
http://dx.doi.org/10.3390/cells9081839
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author Ilijazi, Dafina
Pulverer, Walter
Ertl, Iris E.
Lemberger, Ursula
Kimura, Shoji
Abufaraj, Mohammad
D’Andrea, David
Pradere, Benjamin
Bruchbacher, Andreas
Graf, Anna
Soria, Francesco
Susani, Martin
Haitel, Andrea
Molinaro, Luca
Pycha, Armin
Comploj, Evi
Pabinger, Stephan
Weinhäusel, Andreas
Egger, Gerda
Shariat, Shahrokh F.
Hassler, Melanie R.
author_facet Ilijazi, Dafina
Pulverer, Walter
Ertl, Iris E.
Lemberger, Ursula
Kimura, Shoji
Abufaraj, Mohammad
D’Andrea, David
Pradere, Benjamin
Bruchbacher, Andreas
Graf, Anna
Soria, Francesco
Susani, Martin
Haitel, Andrea
Molinaro, Luca
Pycha, Armin
Comploj, Evi
Pabinger, Stephan
Weinhäusel, Andreas
Egger, Gerda
Shariat, Shahrokh F.
Hassler, Melanie R.
author_sort Ilijazi, Dafina
collection PubMed
description Background: Bacillus Calmette-Guérin (BCG) immunotherapy, the standard adjuvant intravesical therapy for some intermediate and most high-risk non-muscle invasive bladder cancers (NMIBCs), suffers from a heterogenous response rate. Molecular markers to help guide responses are scarce and currently not used in the clinical setting. Methods: To identify novel biomarkers and pathways involved in response to BCG immunotherapy, we performed a genome-wide DNA methylation analysis of NMIBCs before BCG therapy. Genome-wide DNA methylation profiles of DNA isolated from tumors of 26 BCG responders and 27 failures were obtained using the Infinium MethylationEPIC BeadChip. Results: Distinct DNA methylation patterns were found by genome-wide analysis in the two groups. Differentially methylated CpG sites were predominantly located in gene promoters and gene bodies associated with bacterial invasion of epithelial cells, chemokine signaling, endocytosis, and focal adhesion. In total, 40 genomic regions with a significant difference in methylation between responders and failures were detected. The differential methylation state of six of these regions, localized in the promoters of the genes GPR158, KLF8, C12orf42, WDR44, FLT1, and CHST11, were internally validated by bisulfite-sequencing. GPR158 promoter hypermethylation was the best predictor of BCG failure with an AUC of 0.809 (p-value < 0.001). Conclusions: Tumors from BCG responders and BCG failures harbor distinct DNA methylation profiles. Differentially methylated DNA regions were detected in genes related to pathways involved in bacterial invasion of cells or focal adhesion. We identified candidate DNA methylation biomarkers that may help to predict patient prognosis after external validation in larger, well-designed cohorts.
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spelling pubmed-74640792020-09-04 Discovery of Molecular DNA Methylation-Based Biomarkers through Genome-Wide Analysis of Response Patterns to BCG for Bladder Cancer Ilijazi, Dafina Pulverer, Walter Ertl, Iris E. Lemberger, Ursula Kimura, Shoji Abufaraj, Mohammad D’Andrea, David Pradere, Benjamin Bruchbacher, Andreas Graf, Anna Soria, Francesco Susani, Martin Haitel, Andrea Molinaro, Luca Pycha, Armin Comploj, Evi Pabinger, Stephan Weinhäusel, Andreas Egger, Gerda Shariat, Shahrokh F. Hassler, Melanie R. Cells Article Background: Bacillus Calmette-Guérin (BCG) immunotherapy, the standard adjuvant intravesical therapy for some intermediate and most high-risk non-muscle invasive bladder cancers (NMIBCs), suffers from a heterogenous response rate. Molecular markers to help guide responses are scarce and currently not used in the clinical setting. Methods: To identify novel biomarkers and pathways involved in response to BCG immunotherapy, we performed a genome-wide DNA methylation analysis of NMIBCs before BCG therapy. Genome-wide DNA methylation profiles of DNA isolated from tumors of 26 BCG responders and 27 failures were obtained using the Infinium MethylationEPIC BeadChip. Results: Distinct DNA methylation patterns were found by genome-wide analysis in the two groups. Differentially methylated CpG sites were predominantly located in gene promoters and gene bodies associated with bacterial invasion of epithelial cells, chemokine signaling, endocytosis, and focal adhesion. In total, 40 genomic regions with a significant difference in methylation between responders and failures were detected. The differential methylation state of six of these regions, localized in the promoters of the genes GPR158, KLF8, C12orf42, WDR44, FLT1, and CHST11, were internally validated by bisulfite-sequencing. GPR158 promoter hypermethylation was the best predictor of BCG failure with an AUC of 0.809 (p-value < 0.001). Conclusions: Tumors from BCG responders and BCG failures harbor distinct DNA methylation profiles. Differentially methylated DNA regions were detected in genes related to pathways involved in bacterial invasion of cells or focal adhesion. We identified candidate DNA methylation biomarkers that may help to predict patient prognosis after external validation in larger, well-designed cohorts. MDPI 2020-08-05 /pmc/articles/PMC7464079/ /pubmed/32764425 http://dx.doi.org/10.3390/cells9081839 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ilijazi, Dafina
Pulverer, Walter
Ertl, Iris E.
Lemberger, Ursula
Kimura, Shoji
Abufaraj, Mohammad
D’Andrea, David
Pradere, Benjamin
Bruchbacher, Andreas
Graf, Anna
Soria, Francesco
Susani, Martin
Haitel, Andrea
Molinaro, Luca
Pycha, Armin
Comploj, Evi
Pabinger, Stephan
Weinhäusel, Andreas
Egger, Gerda
Shariat, Shahrokh F.
Hassler, Melanie R.
Discovery of Molecular DNA Methylation-Based Biomarkers through Genome-Wide Analysis of Response Patterns to BCG for Bladder Cancer
title Discovery of Molecular DNA Methylation-Based Biomarkers through Genome-Wide Analysis of Response Patterns to BCG for Bladder Cancer
title_full Discovery of Molecular DNA Methylation-Based Biomarkers through Genome-Wide Analysis of Response Patterns to BCG for Bladder Cancer
title_fullStr Discovery of Molecular DNA Methylation-Based Biomarkers through Genome-Wide Analysis of Response Patterns to BCG for Bladder Cancer
title_full_unstemmed Discovery of Molecular DNA Methylation-Based Biomarkers through Genome-Wide Analysis of Response Patterns to BCG for Bladder Cancer
title_short Discovery of Molecular DNA Methylation-Based Biomarkers through Genome-Wide Analysis of Response Patterns to BCG for Bladder Cancer
title_sort discovery of molecular dna methylation-based biomarkers through genome-wide analysis of response patterns to bcg for bladder cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464079/
https://www.ncbi.nlm.nih.gov/pubmed/32764425
http://dx.doi.org/10.3390/cells9081839
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