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Cells in the polyaneuploid cancer cell (PACC) state have increased metastatic potential

Mikaela M. Mallin; Nicholas Kim; Mohammad Ikbal Choudhury; Se Jong Lee; Steven S. An; Sean X. Sun; Konstantinos Konstantopoulos; Kenneth J. Pienta; Sarah R. Amend
Clinical & Experimental Metastasis · Vol. 40, Issue 4 · pp. 321-338 · 2023

Abstract

Although metastasis is the leading cause of cancer deaths, it is quite rare at the cellular level. Only a rare subset of cancer cells (~ 1 in 1.5 billion) can complete the entire metastatic cascade: invasion, intravasation, survival in the circulation, extravasation, and colonization (i.e. are metastasis competent). We propose that cells engaging a Polyaneuploid Cancer Cell (PACC) phenotype are metastasis competent. Cells in the PACC state are enlarged, endocycling (i.e. non-dividing) cells with increased genomic content that form in response to stress. Single-cell tracking using time lapse microscopy reveals that PACC state cells have increased motility. Additionally, cells in the PACC state exhibit increased capacity for environment-sensing and directional migration in chemotactic environments, predicting successful invasion. Magnetic Twisting Cytometry and Atomic Force Microscopy reveal that cells in the PACC state display hyper-elastic properties like increased peripheral deformability and maintained peri-nuclear cortical integrity that predict successful intravasation and extravasation. Furthermore, four orthogonal methods reveal that cells in the PACC state have increased expression of vimentin, a hyper-elastic biomolecule known to modulate biomechanical properties and induce mesenchymal-like motility. Taken together, these data indicate that cells in the PACC state have increased metastatic potential and are worthy of further in vivo analysis.

Bibliographic Information

JournalClinical & Experimental Metastasis
PublisherSpringer
Publication Date2023-08-01
Publication Year2023
Volume40
Issue4
Pages321-338
Document TypeJournal Article
eISSN1573-7276
DOI10.1007/s10585-023-10216-8

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NARA Access Coverage1983-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10585
Publisher PageOpen Publisher Page
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