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Association of TNFRSF10D DNA-Methylation with the Survival of Melanoma Patients

In this retrospective pilot study, the DNA-methylation status of genes that have been demonstrated to be involved in melanoma carcinogenesis was analyzed in order to identify novel biomarkers for the risk assessment of melanoma patients. We analyzed DNA extracted from punch-biopsies from 68 formalin...

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Autores principales: Ratzinger, Gudrun, Mitteregger, Simone, Wolf, Barbara, Berger, Regina, Zelger, Bernhard, Weinlich, Georg, Fritsch, Peter, Goebel, Georg, Fiegl, Heidelinde
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4139825/
https://www.ncbi.nlm.nih.gov/pubmed/25003639
http://dx.doi.org/10.3390/ijms150711984
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author Ratzinger, Gudrun
Mitteregger, Simone
Wolf, Barbara
Berger, Regina
Zelger, Bernhard
Weinlich, Georg
Fritsch, Peter
Goebel, Georg
Fiegl, Heidelinde
author_facet Ratzinger, Gudrun
Mitteregger, Simone
Wolf, Barbara
Berger, Regina
Zelger, Bernhard
Weinlich, Georg
Fritsch, Peter
Goebel, Georg
Fiegl, Heidelinde
author_sort Ratzinger, Gudrun
collection PubMed
description In this retrospective pilot study, the DNA-methylation status of genes that have been demonstrated to be involved in melanoma carcinogenesis was analyzed in order to identify novel biomarkers for the risk assessment of melanoma patients. We analyzed DNA extracted from punch-biopsies from 68 formalin-fixed paraffin-embedded (FFPE) melanoma specimens. Using MethyLight PCR, we examined 20 genes in specimens from a training set comprising 36 melanoma patients. Selected candidate genes were validated in a test set using FFPE tissue samples from 32 melanoma patients. First, we identified the TNFRSF10D DNA-methylation status (TNFRSF10D methylated vs. unmethylated) as a prognostic marker for overall (p = 0.001) and for relapse-free survival (p = 0.008) in the training set. This finding was confirmed in the independent test set (n = 32; overall survival p = 0.041; relapse-free survival p = 0.012). In a multivariate Cox-regression analysis including all patients, the TNFRSF10D DNA-methylation status remained as the most significant prognostic parameter for overall and relapse-free survival (relative-risk (RR) of death, 4.6 (95% CI: 2.0–11.0; p < 0.001), RR of relapse, 7.2 (95% CI: 2.8–18.3; p < 0.001)). In this study, we demonstrate that TNFRSF10D DNA-methylation analysis of a small tissue-punch from archival FFPE melanoma tissue is a promising approach to provide prognostic information in patients with melanoma.
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spelling pubmed-41398252014-08-21 Association of TNFRSF10D DNA-Methylation with the Survival of Melanoma Patients Ratzinger, Gudrun Mitteregger, Simone Wolf, Barbara Berger, Regina Zelger, Bernhard Weinlich, Georg Fritsch, Peter Goebel, Georg Fiegl, Heidelinde Int J Mol Sci Communication In this retrospective pilot study, the DNA-methylation status of genes that have been demonstrated to be involved in melanoma carcinogenesis was analyzed in order to identify novel biomarkers for the risk assessment of melanoma patients. We analyzed DNA extracted from punch-biopsies from 68 formalin-fixed paraffin-embedded (FFPE) melanoma specimens. Using MethyLight PCR, we examined 20 genes in specimens from a training set comprising 36 melanoma patients. Selected candidate genes were validated in a test set using FFPE tissue samples from 32 melanoma patients. First, we identified the TNFRSF10D DNA-methylation status (TNFRSF10D methylated vs. unmethylated) as a prognostic marker for overall (p = 0.001) and for relapse-free survival (p = 0.008) in the training set. This finding was confirmed in the independent test set (n = 32; overall survival p = 0.041; relapse-free survival p = 0.012). In a multivariate Cox-regression analysis including all patients, the TNFRSF10D DNA-methylation status remained as the most significant prognostic parameter for overall and relapse-free survival (relative-risk (RR) of death, 4.6 (95% CI: 2.0–11.0; p < 0.001), RR of relapse, 7.2 (95% CI: 2.8–18.3; p < 0.001)). In this study, we demonstrate that TNFRSF10D DNA-methylation analysis of a small tissue-punch from archival FFPE melanoma tissue is a promising approach to provide prognostic information in patients with melanoma. MDPI 2014-07-07 /pmc/articles/PMC4139825/ /pubmed/25003639 http://dx.doi.org/10.3390/ijms150711984 Text en © 2014 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 license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Communication
Ratzinger, Gudrun
Mitteregger, Simone
Wolf, Barbara
Berger, Regina
Zelger, Bernhard
Weinlich, Georg
Fritsch, Peter
Goebel, Georg
Fiegl, Heidelinde
Association of TNFRSF10D DNA-Methylation with the Survival of Melanoma Patients
title Association of TNFRSF10D DNA-Methylation with the Survival of Melanoma Patients
title_full Association of TNFRSF10D DNA-Methylation with the Survival of Melanoma Patients
title_fullStr Association of TNFRSF10D DNA-Methylation with the Survival of Melanoma Patients
title_full_unstemmed Association of TNFRSF10D DNA-Methylation with the Survival of Melanoma Patients
title_short Association of TNFRSF10D DNA-Methylation with the Survival of Melanoma Patients
title_sort association of tnfrsf10d dna-methylation with the survival of melanoma patients
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4139825/
https://www.ncbi.nlm.nih.gov/pubmed/25003639
http://dx.doi.org/10.3390/ijms150711984
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