Genetic heterogeneity and clonal evolution during metastasis in breast cancer patient-derived tumor xenograft models

被引:21
作者
Sprouffske, Kathleen [1 ]
Kerr, Grainne [1 ]
Li, Cheng [1 ,5 ,6 ]
Prahallad, Anirudh [1 ,4 ]
Rebmann, Ramona [1 ]
Waehle, Verena [1 ,7 ,8 ]
Naumann, Ulrike [2 ]
Bitter, Hans [3 ,9 ]
Jensen, Michael R. [1 ]
Hofmann, Francesco [1 ]
Brachmann, Saskia M. [1 ]
Ferretti, Stephane [1 ]
Kauffmann, Audrey [1 ]
机构
[1] Novartis Inst BioMed Res, Dis Area Oncol, Basel, Switzerland
[2] Novartis Inst BioMed Res, Biotherapeut & Analyt Technol, Basel, Switzerland
[3] Novartis Inst BioMed Res, Dis Area Oncol, Cambridge, MA USA
[4] Novartis Pharma AG, Oncol Global Drug Dev, Basel, Switzerland
[5] Univ Basel, ETH Zurich, Computat Biol & Bioinformat Program, Basel, Switzerland
[6] Univ Zurich, Zurich, Switzerland
[7] Friedrich Miescher Inst Biomed Res, Basel, Switzerland
[8] Univ Basel, Fac Sci, Basel, Switzerland
[9] Bluebird Bio, Cambridge, MA USA
关键词
Heterogeneity; Clonal evolution; Breast cancer; Metastasis; Patient derived xenograft models; DYNAMICS; DIVERSE; GROWTH;
D O I
10.1016/j.csbj.2020.01.008
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Genetic heterogeneity within a tumor arises by clonal evolution, and patients with highly heterogeneous tumors are more likely to be resistant to therapy and have reduced survival. Clonal evolution also occurs when a subset of cells leave the primary tumor to form metastases, which leads to reduced genetic heterogeneity at the metastatic site. Although this process has been observed in human cancer, experimental models which recapitulate this process are lacking. Patient-derived tumor xenografts (PDX) have been shown to recapitulate the patient's original tumor's intra-tumor genetic heterogeneity, as well as its genomics and response to treatment, but whether they can be used to model clonal evolution in the metastatic process is currently unknown. Here, we address this question by following genetic changes in two breast cancer PDX models during metastasis. First, we discovered that mouse stroma can be a confounding factor in assessing intra-tumor heterogeneity by whole exome sequencing, thus we developed a new bioinformatic approach to correct for this. Finally, in a spontaneous, but not experimental (tail-vein) metastasis model we observed a loss of heterogeneity in PDX metastases compared to their orthotopic "primary" tumors, confirming that PDX models can faithfully mimic the clonal evolution process undergone in human patients during metastatic spreading. (C) 2020 The Authors. Published by Elsevier B.V. on behalf of Research Network of Computational and Structural Biotechnology.
引用
收藏
页码:323 / 331
页数:9
相关论文
共 73 条
[41]   Clonal Heterogeneity and Tumor Evolution: Past, Present, and the Future [J].
McGranahan, Nicholas ;
Swanton, Charles .
CELL, 2017, 168 (04) :613-628
[42]   Divergent modes of clonal spread and intraperitoneal mixing in high-grade serous ovarian cancer [J].
McPherson, Andrew ;
Roth, Andrew ;
Laks, Emma ;
Masud, Tehmina ;
Bashashati, Ali ;
Zhang, Allen W. ;
Ha, Gavin ;
Biele, Justina ;
Yap, Damian ;
Wan, Adrian ;
Prentice, Leah M. ;
Khattra, Jaswinder ;
Smith, Maia A. ;
Nielsen, Cydney B. ;
Mullaly, Sarah C. ;
Kalloger, Steve ;
Karnezis, Anthony ;
Shumansky, Karey ;
Siu, Celia ;
Rosner, Jamie ;
Chan, Hector Li ;
Ho, Julie ;
Melnyk, Nataliya ;
Senz, Janine ;
Yang, Winnie ;
Moore, Richard ;
Mungall, Andrew J. ;
Marra, Marco A. ;
Bouchard-Cote, Alexandre ;
Gilks, C. Blake ;
Huntsman, David G. ;
McAlpine, Jessica N. ;
Aparicio, Samuel ;
Shah, Sohrab P. .
NATURE GENETICS, 2016, 48 (07) :758-+
[43]   Barcoding reveals complex clonal behavior in patient-derived xenografts of metastatic triple negative breast cancer [J].
Merino, D. ;
Weber, T. S. ;
Serrano, A. ;
Vaillant, F. ;
Liu, K. ;
Pal, B. ;
Di Stefano, L. ;
Schreuder, J. ;
Lin, D. ;
Chen, Y. ;
Asselin-Labat, M. L. ;
Schumacher, T. N. ;
Cameron, D. ;
Smyth, G. K. ;
Papenfuss, A. T. ;
Lindeman, G. J. ;
Visvader, J. E. ;
Naik, S. H. .
NATURE COMMUNICATIONS, 2019, 10 (1)
[44]   Cancer as an evolutionary and ecological process [J].
Merlo, Lauren M. F. ;
Pepper, John W. ;
Reid, Brian J. ;
Maley, Carlo C. .
NATURE REVIEWS CANCER, 2006, 6 (12) :924-935
[45]   The role of genetic diversity in cancer [J].
Merlo, Lauren M. F. ;
Maley, Carlo C. .
JOURNAL OF CLINICAL INVESTIGATION, 2010, 120 (02) :401-403
[46]   Intra-tumor Genetic Heterogeneity and Mortality in Head and Neck Cancer: Analysis of Data from The Cancer Genome Atlas [J].
Mroz, Edmund A. ;
Tward, Aaron M. ;
Hammon, Rebecca J. ;
Ren, Yin ;
Rocco, James W. .
PLOS MEDICINE, 2015, 12 (02)
[47]   Patient-Derived Xenograft Models of Breast Cancer and Their Application [J].
Murayama, Takahiko ;
Gotoh, Noriko .
CELLS, 2019, 8 (06)
[48]   Tumour evolution inferred by single-cell sequencing [J].
Navin, Nicholas ;
Kendall, Jude ;
Troge, Jennifer ;
Andrews, Peter ;
Rodgers, Linda ;
McIndoo, Jeanne ;
Cook, Kerry ;
Stepansky, Asya ;
Levy, Dan ;
Esposito, Diane ;
Muthuswamy, Lakshmi ;
Krasnitz, Alex ;
McCombie, W. Richard ;
Hicks, James ;
Wigler, Michael .
NATURE, 2011, 472 (7341) :90-U119
[49]   Inferring tumor progression from genomic heterogeneity [J].
Navin, Nicholas ;
Krasnitz, Alexander ;
Rodgers, Linda ;
Cook, Kerry ;
Meth, Jennifer ;
Kendall, Jude ;
Riggs, Michael ;
Eberling, Yvonne ;
Troge, Jennifer ;
Grubor, Vladimir ;
Levy, Dan ;
Lundin, Par ;
Maner, Susanne ;
Zetterberg, Anders ;
Hicks, James ;
Wigler, Michael .
GENOME RESEARCH, 2010, 20 (01) :68-80
[50]   Metastasis: from dissemination to organ-specific colonization [J].
Nguyen, Don X. ;
Bos, Paula D. ;
Massague, Joan .
NATURE REVIEWS CANCER, 2009, 9 (04) :274-U65