A comparison of isolated circulating tumor cells and tissue biopsies using whole-genome sequencing in prostate cancer

Runze Jiang;Yi Tsung Lu;Hao Ho;Bo Li;Jie Fu Chen;Millicent Lin;Fuqiang Li;Kui Wu;Hanjie Wu;Jake Lichterman;Haolei Wan;Chia Lun Lu;William OuYang;Ming Ni;Linlin Wang;Guibo Li;Tom Lee;Xiuqing Zhang;Jonathan Yang;Matthew Rettig;Leland W.K. Chung;焕明 杨;Ker Chau Li;Yong Hou;Hsian Rong Tseng;Shuang Hou;Xun Xu;军 王;Edwin M. Posadas

Beijing Genome Institute-Shenzhen;Cedars-Sinai Medical Center;University of California at Los Angeles;Academia Sinica - Institute of Statistical Science;The Guangdong Enterprise Key Laboratory of Human Disease Genomics;Department of Veterans Affairs;China Association for Science and Technology

发表时间:2015

期 刊:Oncotarget

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=84953439230&partnerID=8YFLogxK

摘要

Previous studies have demonstrated focal but limited molecular similarities between circulating tumor cells (CTCs) and biopsies using isolated genetic assays. We hypothesized that molecular similarity between CTCs and tissue exists at the single cell level when characterized by whole genome sequencing (WGS). By combining the NanoVelcro CTC Chip with laser capture microdissection (LCM), we developed a platform for single-CTC WGS. We performed this procedure on CTCs and tissue samples from a patient with advanced prostate cancer who had serial biopsies over the course of his clinical history. We achieved 30X depth and ≥ 95% coverage. Twenty-nine percent of the somatic single nucleotide variations (SSNVs) identified were founder mutations that were also identified in CTCs. In addition, 86% of the clonal mutations identified in CTCs could be traced back to either the primary or metastatic tumors. In this patient, we identified structural variations (SVs) including an intrachromosomal rearrangement in chr3 and an interchromosomal rearrangement between chr13 and chr15. These rearrangements were shared between tumor tissues and CTCs. At the same time, highly heterogeneous short structural variants were discovered in PTEN, RB1, and BRCA2 in all tumor and CTC samples. Using high-quality WGS on single-CTCs, we identified the shared genomic alterations between CTCs and tumor tissues. This approach yielded insight into the heterogeneity of the mutational landscape of SSNVs and SVs. It may be possible to use this approach to study heterogeneity and characterize the biological evolution of a cancer during the course of its natural history.

关键词

Cancer heterogeneity
Circulating tumor cell
Liquid biopsy
Prostate cancer
Whole genome sequencing

相关科学

医学
肿瘤学

文献指纹

医学与生命科学

Circulating Neoplastic Cells

Whole Genome Sequencing

Prostatic Neoplasms

Biopsy

Neoplasms

Nucleotides

Biological Evolution

Laser Capture Microdissection

Mutation

Natural History

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999
2000
2001
2002
2003
2004
2005
2006
2007
2008
2009
2010
2011 2.8 1.505 0.488
2012 6.5 2.512 1.043
2013 8.3 3.061 1.261
2014 4.6 2.551 1.292
2015 3 2.26 1.123
2016 3.6 1.994 1.074
2017 4.9 1.942 1.05
2018 7.1 1.575 0.939
2019 9.2 1.513 1.015
2020 9.3

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