Chemogenomic profiling of breast cancer patient-derived xenografts reveals targetable vulnerabilities for difficult-to-treat tumors Journal Article


Authors: Savage, P.; Pacis, A.; Kuasne, H.; Liu, L.; Lai, D.; Wan, A.; Dankner, M.; Martinez, C.; Muñoz-Ramos, V.; Pilon, V.; Monast, A.; Zhao, H.; Souleimanova, M.; Annis, M. G.; Aguilar-Mahecha, A.; Lafleur, J.; Bertos, N. R.; Asselah, J.; Bouganim, N.; Petrecca, K.; Siegel, P. M.; Omeroglu, A.; Shah, S. P.; Aparicio, S.; Basik, M.; Meterissian, S.; Park, M.
Article Title: Chemogenomic profiling of breast cancer patient-derived xenografts reveals targetable vulnerabilities for difficult-to-treat tumors
Abstract: Subsets of breast tumors present major clinical challenges, including triple-negative, metastatic/recurrent disease and rare histologies. Here, we developed 37 patient-derived xenografts (PDX) from these difficult-to-treat cancers to interrogate their molecular composition and functional biology. Whole-genome and transcriptome sequencing and reverse-phase protein arrays revealed that PDXs conserve the molecular landscape of their corresponding patient tumors. Metastatic potential varied between PDXs, where low-penetrance lung micrometastases were most common, though a subset of models displayed high rates of dissemination in organotropic or diffuse patterns consistent with what was observed clinically. Chemosensitivity profiling was performed in vivo with standard-of-care agents, where multi-drug chemoresistance was retained upon xenotransplantation. Consolidating chemogenomic data identified actionable features in the majority of PDXs, and marked regressions were observed in a subset that was evaluated in vivo. Together, this clinically-annotated PDX library with comprehensive molecular and phenotypic profiling serves as a resource for preclinical studies on difficult-to-treat breast tumors. © 2020, The Author(s).
Journal Title: Communications Biology
Volume: 3
ISSN: 2399-3642
Publisher: Springer Nature  
Date Published: 2020-06-16
Start Page: 310
Language: English
DOI: 10.1038/s42003-020-1042-x
PUBMED: 32546838
PROVIDER: scopus
PMCID: PMC7298048
DOI/URL:
Notes: Article -- Export Date: 1 July 2020 -- Source: Scopus
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  1. Sohrab Prakash Shah
    86 Shah