Epigenetic profiling for the molecular classification of metastatic brain tumors
The treatment of brain metastases is often limited by the ability to diagnose their origins. Here the authors generate DNA methylomes from the three most frequent types of brain metastases, identify epigenetic signatures specific to each type of metastasis and construct a DNA methylation-based class...
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Nature Portfolio
2018
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oai:doaj.org-article:48d7f470aacb41c6b7ae96cfd01961692021-12-02T15:34:42ZEpigenetic profiling for the molecular classification of metastatic brain tumors10.1038/s41467-018-06715-y2041-1723https://doaj.org/article/48d7f470aacb41c6b7ae96cfd01961692018-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06715-yhttps://doaj.org/toc/2041-1723The treatment of brain metastases is often limited by the ability to diagnose their origins. Here the authors generate DNA methylomes from the three most frequent types of brain metastases, identify epigenetic signatures specific to each type of metastasis and construct a DNA methylation-based classifier (BrainMETH) to advance brain metastasis diagnosis.Javier I. J. OrozcoTheo A. KnijnenburgAyla O. Manughian-PeterMatthew P. SalomonGarni BarkhoudarianJohn R. JalasJames S. WilmottParvinder HothiXiaowen WangYuki TakasumiMichael E. BucklandJohn F. ThompsonGeorgina V. LongCharles S. CobbsIlya ShmulevichDaniel F. KellyRichard A. ScolyerDave S. B. HoonDiego M. MarzeseNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-14 (2018) |
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Science Q Javier I. J. Orozco Theo A. Knijnenburg Ayla O. Manughian-Peter Matthew P. Salomon Garni Barkhoudarian John R. Jalas James S. Wilmott Parvinder Hothi Xiaowen Wang Yuki Takasumi Michael E. Buckland John F. Thompson Georgina V. Long Charles S. Cobbs Ilya Shmulevich Daniel F. Kelly Richard A. Scolyer Dave S. B. Hoon Diego M. Marzese Epigenetic profiling for the molecular classification of metastatic brain tumors |
description |
The treatment of brain metastases is often limited by the ability to diagnose their origins. Here the authors generate DNA methylomes from the three most frequent types of brain metastases, identify epigenetic signatures specific to each type of metastasis and construct a DNA methylation-based classifier (BrainMETH) to advance brain metastasis diagnosis. |
format |
article |
author |
Javier I. J. Orozco Theo A. Knijnenburg Ayla O. Manughian-Peter Matthew P. Salomon Garni Barkhoudarian John R. Jalas James S. Wilmott Parvinder Hothi Xiaowen Wang Yuki Takasumi Michael E. Buckland John F. Thompson Georgina V. Long Charles S. Cobbs Ilya Shmulevich Daniel F. Kelly Richard A. Scolyer Dave S. B. Hoon Diego M. Marzese |
author_facet |
Javier I. J. Orozco Theo A. Knijnenburg Ayla O. Manughian-Peter Matthew P. Salomon Garni Barkhoudarian John R. Jalas James S. Wilmott Parvinder Hothi Xiaowen Wang Yuki Takasumi Michael E. Buckland John F. Thompson Georgina V. Long Charles S. Cobbs Ilya Shmulevich Daniel F. Kelly Richard A. Scolyer Dave S. B. Hoon Diego M. Marzese |
author_sort |
Javier I. J. Orozco |
title |
Epigenetic profiling for the molecular classification of metastatic brain tumors |
title_short |
Epigenetic profiling for the molecular classification of metastatic brain tumors |
title_full |
Epigenetic profiling for the molecular classification of metastatic brain tumors |
title_fullStr |
Epigenetic profiling for the molecular classification of metastatic brain tumors |
title_full_unstemmed |
Epigenetic profiling for the molecular classification of metastatic brain tumors |
title_sort |
epigenetic profiling for the molecular classification of metastatic brain tumors |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/48d7f470aacb41c6b7ae96cfd0196169 |
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