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Biophysical and biochemical attributes of hybrid epithelial/mesenchymal phenotypes

Ayalur Raghu Subbalakshmi, Bazella Ashraf, Mohit Kumar Jolly

2022Physical Biology19 citationsDOI

Abstract

The epithelial-mesenchymal transition (EMT) is a biological phenomenon associated with explicit phenotypic and molecular changes in cellular traits. Unlike the earlier-held popular belief of it being a binary process, EMT is now thought of as a landscape including diverse hybrid E/M phenotypes manifested by varying degrees of the transition. These hybrid cells can co-express both epithelial and mesenchymal markers and/or functional traits, and can possess the property of collective cell migration, enhanced tumor-initiating ability, and immune/targeted therapy-evasive features, all of which are often associated with worse patient outcomes. These characteristics of the hybrid E/M cells have led to a surge in studies that map their biophysical and biochemical hallmarks that can be helpful in exploiting their therapeutic vulnerabilities. This review discusses recent advances made in investigating hybrid E/M phenotype(s) from diverse biophysical and biochemical aspects by integrating live cell-imaging, cellular morphology quantification and mathematical modeling, and highlights a set of questions that remain unanswered about the dynamics of hybrid E/M states.

Topics & Concepts

PhenotypeMesenchymal stem cellBiologyComputational biologyEpithelial–mesenchymal transitionCellImmune systemCell biologyGeneTransition (genetics)GeneticsCancer Cells and MetastasisCancer Genomics and DiagnosticsCellular Mechanics and Interactions
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