Pharmacological Induction of mesenchymal-epithelial transition chemosensitizes breast cancer cells and prevents metastatic progression
Bagheri, M.; Mohamed, G. A.; Mohamed Saleem, M. A.; Ognjenovic, N. B.; Lu, H.; Kolling, F. W.; Wilkins, O. M.; Das, S.; LaCroix, I. S.; Nagaraj, S. H.; Muller, K. E.; Gerber, S. A.; Miller, T. W.; Pattabiraman, D. R.
Show abstract
The epithelial-mesenchymal transition (EMT) is a developmental program co-opted by tumor cells that aids the initiation of the metastatic cascade. Tumor cells that undergo EMT are relatively chemoresistant, and there are currently no therapeutic avenues specifically targeting cells that have acquired mesenchymal traits. We show that treatment of mesenchymal-like triple-negative breast cancer (TNBC) cells with the microtubule-destabilizing chemotherapeutic eribulin, which is FDA-approved for the treatment of advanced breast cancer, leads to a mesenchymal-epithelial transition (MET). This MET is accompanied by loss of metastatic propensity and sensitization to subsequent treatment with other FDA-approved chemotherapeutics. We uncover a novel epigenetic mechanism of action that supports eribulin pretreatment as a path to MET induction that curtails metastatic progression and the evolution of therapy resistance. SummaryWhile the advent of targeted therapy has led to vast improvements in outcomes for certain types of breast cancer, a mainstay for triple-negative breast cancer (TNBC) remains cytotoxic chemotherapy. A major clinical hurdle in successfully managing this disease is the eventual development of therapeutic resistance and disease relapse in more aggressive forms. Our data reveal that epigenetic modulation of EMT state using the FDA-approved therapeutic eribulin curtails metastatic propensity of breast tumors and, when administered in the treatment-naive setting, sensitizes to subsequent treatment with other chemotherapeutics.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Resistance to targeted therapies as a multifactorial, gradual adaptation to inhibitor specific selective pressures 97%
- A focal adhesion kinase-YAP signaling axis drives drug tolerant persister cells and residual disease in lung cancer 97%
- Multiplexed RNA-FISH-guided Laser Capture Microdissection RNA Sequencing Improves Breast Cancer Molecular Subtyping, Prognostic Classification, and Predicts Response to Antibody Drug Conjugates 96%
Similar papers in this journal
- Cancer-associated fibroblast compositions change with breast cancer progression linking S100A4 and PDPN ratios with clinical outcome 96%
- Combined KRASG12C and SOS1 inhibition enhances and extends the anti-tumor response in KRASG12C-driven cancers by addressing intrinsic and acquired resistance 96%
- Glutamine mimicry suppresses tumor progression through asparagine metabolism in pancreatic ductal adenocarcinoma 95%
Similar papers in this journal
- CIP2A interacts with TopBP1 and is selectively essential for DNA damage-induced basal-like breast cancer tumorigenesis 97%
- Neoplastic immune mimicry potentiates breast tumor progression 96%
- A targetable PREX2/RAC1/PI3Kβ signalling axis confers resistance to clinically relevant therapeutic approaches in melanoma 96%
Similar papers in this journal
- Glutaminase as a metabolic target of choice to counter acquired resistance to Palbociclib by colorectal cancer cells 95%
- EWS::FLI1-DHX9 interaction promotes Ewing sarcoma sensitivity to DNA topoisomerase 1 poisons by altering R-loop metabolism 95%
- Mapping the breast tumor microenvironment: proximity analysis reveals spatial relationships between macrophage subtypes and metastasis-initiating cancer cells 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.