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Cell Reports. Medicine|November 11, 2025
The tumor microenvironment of 14,837 breast cancers is associated with clinical outcome independently of genomic subtypesKevin J Tu, Daniel Guerrero-Romero, Kate Eason, et al.
Nature Communications|September 13, 2012
TGFβ induces the formation of tumour-initiating cells in claudinlow breast cancerAlejandra Bruna, Wendy Greenwood, John Le Quesne, et al.
Cancer Research|April 26, 2018
High USP6NL Levels in Breast Cancer Sustain Chronic AKT Phosphorylation and GLUT1 Stability Fueling Aerobic GlycolysisDaniele Avanzato, Emanuela Pupo, Nadia Ducano, et al.
Nature Cancer|February 5, 2022
Imaging mass cytometry and multiplatform genomics define the phenogenomic landscape of breast cancerH Raza Ali, Hartland W Jackson, Vito R T Zanotelli, et al.
Nucleic Acids Research|August 24, 2018
SOX4 can redirect TGF-β-mediated SMAD3-transcriptional output in a context-dependent manner to promote tumorigenesisStephin J Vervoort, Ana Rita Lourenço, Ana Tufegdzic Vidakovic, et al.
Nature Genetics|April 19, 2022
Breast tumor microenvironment structures are associated with genomic features and clinical outcomeEsther Danenberg, Helen Bardwell, Vito R T Zanotelli, et al.
Nature Communications|September 18, 2013
Master regulators of FGFR2 signalling and breast cancer riskMichael N C Fletcher, Mauro A A Castro, Xin Wang, et al.
Cell Systems|May 1, 2021
Deciphering the signaling network of breast cancer improves drug sensitivity predictionMarco Tognetti, Attila Gabor, Mi Yang, et al.
Clinical Cancer Research : an Official Journal of the American Association for Cancer Research|May 8, 2014
TP53 mutation spectrum in breast cancer is subtype specific and has distinct prognostic relevanceLaxmi Silwal-Pandit, Hans Kristian Moen Vollan, Suet-Feung Chin, et al.
Nature Genetics|August 5, 2020
Landscape of G-quadruplex DNA structural regions in breast cancerRobert Hänsel-Hertsch, Angela Simeone, Abigail Shea, et al.
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