ZFP281 drives a mesenchymal-like dormancy program in early disseminated breast cancer cells that prevents metastatic outgrowth in the lung

AR Nobre, E Dalla, J Yang, X Huang, L Wullkopf… - Nature Cancer, 2022 - nature.com
Increasing evidence shows that cancer cells can disseminate from early evolved primary
lesions much earlier than the classical metastasis models predicted. Here, we reveal at a …

ZFP281 drives a mesenchymal-like dormancy program in early disseminated breast cancer cells that prevents metastatic outgrowth in the lung.

AR Nobre, E Dalla, J Yang, X Huang, L Wullkopf… - Nature Cancer, 2022 - europepmc.org
Increasing evidence shows that cancer cells can disseminate from early evolved primary
lesions much earlier than the classical metastasis models predicted. Here, we reveal at a …

ZFP281 drives a mesenchymal-like dormancy program in early disseminated breast cancer cells that prevents metastatic outgrowth in the lung

AR Nobre, E Dalla, J Yang, X Huang… - Nature …, 2022 - einstein.elsevierpure.com
Increasing evidence shows that cancer cells can disseminate from early evolved primary
lesions much earlier than the classical metastasis models predicted. Here, we reveal at a …

[PDF][PDF] ZFP281 drives a mesenchymal-like dormancy program in early disseminated breast cancer cells that prevents metastatic outgrowth in the lung

AR Nobre, E Dalla, J Yang, X Huang, L Wullkopf… - researchgate.net
Increasing evidence shows that cancer cells can disseminate from early evolved primary
lesions much earlier than the classical metastasis models predicted. Here, we reveal at a …

ZFP281 drives a mesenchymal-like dormancy program in early disseminated breast cancer cells that prevents metastatic outgrowth in the lung

AR Nobre, E Dalla, J Yang, X Huang… - Nature …, 2022 - pubmed.ncbi.nlm.nih.gov
Increasing evidence shows that cancer cells can disseminate from early evolved primary
lesions much earlier than the classical metastasis models predicted. Here, we reveal at a …