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PMID: 26099045 已发表 · ppublish 英语

Subclonal diversification of primary breast cancer revealed by multiregion sequencing.

Nature medicine ·第 21 卷 ·第 7 期 ·2015-09-28

Yates Lucy R, Gerstung Moritz, Knappskog Stian, Desmedt Christine, Gundem Gunes, Van Loo Peter, Aas Turid, Alexandrov Ludmil B, Larsimont Denis, Davies Helen, Li Yilong, Ju Young Seok, Ramakrishna Manasa, Haugland Hans Kristian, Lilleng Peer Kaare, Nik-Zainal Serena, McLaren Stuart, Butler Adam, Martin Sancha, Glodzik Dominic, Menzies Andrew, Raine Keiran, Hinton Jonathan, Jones David, Mudie Laura J, Jiang Bing, Vincent Delphine, Greene-Colozzi April, Adnet Pierre-Yves, Fatima Aquila, Maetens Marion, Ignatiadis Michail, Stratton Michael R, Sotiriou Christos, Richardson Andrea L, Lønning Per Eystein, Wedge David C, Campbell Peter J

摘要

The sequencing of cancer genomes may enable tailoring of therapeutics to the underlying biological abnormalities driving a particular patient's tumor. However, sequencing-based strategies rely heavily on representative sampling of tumors. To understand the subclonal structure of primary breast cancer, we applied whole-genome and targeted sequencing to multiple samples from each of 50 patients' tumors (303 samples in total). The extent of subclonal diversification varied among cases and followed spatial patterns. No strict temporal order was evident, with point mutations and rearrangements affecting the most common breast cancer genes, including PIK3CA, TP53, PTEN, BRCA2 and MYC, occurring early in some tumors and late in others. In 13 out of 50 cancers, potentially targetable mutations were subclonal. Landmarks of disease progression, such as resistance to chemotherapy and the acquisition of invasive or metastatic potential, arose within detectable subclones of antecedent lesions. These findings highlight the importance of including analyses of subclonal structure and tumor evolution in clinical trials of primary breast cancer.

文献信息
期刊
Nature medicine
期刊简称
Nat Med
发表日期
2015-09-28
收录日期
2015-07-08
更新日期
2016-11-22
语言
英语
国家/地区
United States
NLM ID
9502015
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