Cargando…

SNiPER: a novel hypermethylation biomarker panel for liquid biopsy based early breast cancer detection

INTRODUCTION: Mammography is the gold standard for early breast cancer detection, but shows important limitations. Blood-based approaches on basis of cell-free DNA (cfDNA) provide minimally invasive screening tools to characterize epigenetic alterations of tumor suppressor genes and could serve as a...

Descripción completa

Detalles Bibliográficos
Autores principales: Mijnes, Jolein, Tiedemann, Janina, Eschenbruch, Julian, Gasthaus, Janina, Bringezu, Sarah, Bauerschlag, Dirk, Maass, Nicolai, Arnold, Norbert, Weimer, Jörg, Anzeneder, Tobias, Fasching, Peter A., Rübner, Matthias, Bruno, Benjamin, Heindrichs, Uwe, Freres, Jennifer, Schulz, Hanna, Hilgers, Ralf-Dieter, Ortiz-Brüchle, Nadina, von Serenyi, Sonja, Knüchel, Ruth, Kloten, Vera, Dahl, Edgar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6849652/
https://www.ncbi.nlm.nih.gov/pubmed/31741713
http://dx.doi.org/10.18632/oncotarget.27303
_version_ 1783469253465210880
author Mijnes, Jolein
Tiedemann, Janina
Eschenbruch, Julian
Gasthaus, Janina
Bringezu, Sarah
Bauerschlag, Dirk
Maass, Nicolai
Arnold, Norbert
Weimer, Jörg
Anzeneder, Tobias
Fasching, Peter A.
Rübner, Matthias
Bruno, Benjamin
Heindrichs, Uwe
Freres, Jennifer
Schulz, Hanna
Hilgers, Ralf-Dieter
Ortiz-Brüchle, Nadina
von Serenyi, Sonja
Knüchel, Ruth
Kloten, Vera
Dahl, Edgar
author_facet Mijnes, Jolein
Tiedemann, Janina
Eschenbruch, Julian
Gasthaus, Janina
Bringezu, Sarah
Bauerschlag, Dirk
Maass, Nicolai
Arnold, Norbert
Weimer, Jörg
Anzeneder, Tobias
Fasching, Peter A.
Rübner, Matthias
Bruno, Benjamin
Heindrichs, Uwe
Freres, Jennifer
Schulz, Hanna
Hilgers, Ralf-Dieter
Ortiz-Brüchle, Nadina
von Serenyi, Sonja
Knüchel, Ruth
Kloten, Vera
Dahl, Edgar
author_sort Mijnes, Jolein
collection PubMed
description INTRODUCTION: Mammography is the gold standard for early breast cancer detection, but shows important limitations. Blood-based approaches on basis of cell-free DNA (cfDNA) provide minimally invasive screening tools to characterize epigenetic alterations of tumor suppressor genes and could serve as a liquid biopsy, complementing mammography. METHODS: Potential biomarkers were identified from The Cancer Genome Atlas (TCGA), using HumanMethylation450-BeadChip data. Promoter methylation status was evaluated quantitatively by pyrosequencing in a serum test cohort (n = 103), a serum validation cohort (n = 368) and a plasma cohort (n = 125). RESULTS: SPAG6, NKX2-6 and PER1 were identified as novel biomarker candidates. ITIH5 was included on basis of our previous work. In the serum test cohort, a panel of SPAG6 and ITIH5 showed 63% sensitivity for DCIS and 51% sensitivity for early invasive tumor (pT1, pN0) detection at 80% specificity. The serum validation cohort revealed 50% sensitivity for DCIS detection on basis of NKX2-6 and ITIH5. Furthermore, an inverse correlation between methylation frequency and cfDNA concentration was uncovered. Therefore, markers were tested in a plasma cohort, achieving a 64% sensitivity for breast cancer detection using SPAG6, PER1 and ITIH5. CONCLUSIONS: Although liquid biopsy remains challenging, a combination of SPAG6, NKX2-6, ITIH5 and PER1 (SNiPER) provides a promising tool for blood-based breast cancer detection.
format Online
Article
Text
id pubmed-6849652
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-68496522019-11-18 SNiPER: a novel hypermethylation biomarker panel for liquid biopsy based early breast cancer detection Mijnes, Jolein Tiedemann, Janina Eschenbruch, Julian Gasthaus, Janina Bringezu, Sarah Bauerschlag, Dirk Maass, Nicolai Arnold, Norbert Weimer, Jörg Anzeneder, Tobias Fasching, Peter A. Rübner, Matthias Bruno, Benjamin Heindrichs, Uwe Freres, Jennifer Schulz, Hanna Hilgers, Ralf-Dieter Ortiz-Brüchle, Nadina von Serenyi, Sonja Knüchel, Ruth Kloten, Vera Dahl, Edgar Oncotarget Research Paper INTRODUCTION: Mammography is the gold standard for early breast cancer detection, but shows important limitations. Blood-based approaches on basis of cell-free DNA (cfDNA) provide minimally invasive screening tools to characterize epigenetic alterations of tumor suppressor genes and could serve as a liquid biopsy, complementing mammography. METHODS: Potential biomarkers were identified from The Cancer Genome Atlas (TCGA), using HumanMethylation450-BeadChip data. Promoter methylation status was evaluated quantitatively by pyrosequencing in a serum test cohort (n = 103), a serum validation cohort (n = 368) and a plasma cohort (n = 125). RESULTS: SPAG6, NKX2-6 and PER1 were identified as novel biomarker candidates. ITIH5 was included on basis of our previous work. In the serum test cohort, a panel of SPAG6 and ITIH5 showed 63% sensitivity for DCIS and 51% sensitivity for early invasive tumor (pT1, pN0) detection at 80% specificity. The serum validation cohort revealed 50% sensitivity for DCIS detection on basis of NKX2-6 and ITIH5. Furthermore, an inverse correlation between methylation frequency and cfDNA concentration was uncovered. Therefore, markers were tested in a plasma cohort, achieving a 64% sensitivity for breast cancer detection using SPAG6, PER1 and ITIH5. CONCLUSIONS: Although liquid biopsy remains challenging, a combination of SPAG6, NKX2-6, ITIH5 and PER1 (SNiPER) provides a promising tool for blood-based breast cancer detection. Impact Journals LLC 2019-11-05 /pmc/articles/PMC6849652/ /pubmed/31741713 http://dx.doi.org/10.18632/oncotarget.27303 Text en http://creativecommons.org/licenses/by/3.0/ Copyright: Mijnes et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Mijnes, Jolein
Tiedemann, Janina
Eschenbruch, Julian
Gasthaus, Janina
Bringezu, Sarah
Bauerschlag, Dirk
Maass, Nicolai
Arnold, Norbert
Weimer, Jörg
Anzeneder, Tobias
Fasching, Peter A.
Rübner, Matthias
Bruno, Benjamin
Heindrichs, Uwe
Freres, Jennifer
Schulz, Hanna
Hilgers, Ralf-Dieter
Ortiz-Brüchle, Nadina
von Serenyi, Sonja
Knüchel, Ruth
Kloten, Vera
Dahl, Edgar
SNiPER: a novel hypermethylation biomarker panel for liquid biopsy based early breast cancer detection
title SNiPER: a novel hypermethylation biomarker panel for liquid biopsy based early breast cancer detection
title_full SNiPER: a novel hypermethylation biomarker panel for liquid biopsy based early breast cancer detection
title_fullStr SNiPER: a novel hypermethylation biomarker panel for liquid biopsy based early breast cancer detection
title_full_unstemmed SNiPER: a novel hypermethylation biomarker panel for liquid biopsy based early breast cancer detection
title_short SNiPER: a novel hypermethylation biomarker panel for liquid biopsy based early breast cancer detection
title_sort sniper: a novel hypermethylation biomarker panel for liquid biopsy based early breast cancer detection
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6849652/
https://www.ncbi.nlm.nih.gov/pubmed/31741713
http://dx.doi.org/10.18632/oncotarget.27303
work_keys_str_mv AT mijnesjolein sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT tiedemannjanina sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT eschenbruchjulian sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT gasthausjanina sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT bringezusarah sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT bauerschlagdirk sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT maassnicolai sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT arnoldnorbert sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT weimerjorg sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT anzenedertobias sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT faschingpetera sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT rubnermatthias sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT brunobenjamin sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT heindrichsuwe sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT freresjennifer sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT schulzhanna sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT hilgersralfdieter sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT ortizbruchlenadina sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT vonserenyisonja sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT knuchelruth sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT klotenvera sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection
AT dahledgar sniperanovelhypermethylationbiomarkerpanelforliquidbiopsybasedearlybreastcancerdetection