A human induced pluripotent stem (hiPS) cell model for the holistic study of epithelial to mesenchymal transitions (EMTs)
Hookway, C.; Borensztejn, A.; Harris, L. K.; Carlson, S.; Dalgin, G.; Mishra, S.; Nivedita, N.; Adams, E. M.; Barszczewski, T.; Dixon, J. C.; Edmonds, J. H.; Ehlers, E. A.; Ferrante, A. J.; Fuqua, M. A.; Garrison, P.; Gopalan, J.; Gregor, B. W.; Hedayati, M. J.; Klein, K. N.; Leveille, C. L.; Meharry, S. L.; Morris, H. S.; Nadarajan, G.; Oluoch, S. A.; Parent, S. E.; Phan, A.; Roberts, B.; Sanchez, E. E.; Sluzewski, M. F.; Snyder, L. S.; Thirstrup, D. J.; Thottam, J. P.; Torvi, J. R.; Turman, G.; Viana, M. P.; Wilhelm, L.; Wijesooriya, C. S.; Yao, J.; Theriot, J. A.; Rafelski, S. M.; Gunawarda
Show abstract
The epithelial to mesenchymal transition (EMT) is a widely studied but poorly defined state change due to the variety of ways in which it has been characterized in cells. There is a need for reproducible cell model systems that enable the integration and comparison of different types of measured observations of cells across many distinct cellular contexts. We present human induced pluripotent stem (hiPS) cells as such a model system by demonstrating its utility through a comparative analysis of hiPS cell-EMT in 2D and 3D cell culture geometries. We developed live-imaging-based assays to directly compare examples of changes in cell function (via migration timing), molecular components (via expression of marker proteins), organization (via reorganization of cell junctions), and environment (via dynamics of basement membrane) in the same experimental system. The EMT-related changes we measured occurred earlier in 2D colonies than in 3D lumenoids, likely due to differences in the basement membrane environments associated with 2D vs. 3D initial hiPS cell culture geometries. We have made the 449 60-hour-long 3D time-lapse movies and the associated tools used for analysis and visualization open-source and easily accessible as a resource for future work in this field.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A sheath of motile cells supports collective migration of the Zebrafish posterior lateral line primordium under the skin 94%
- Rho-ROCK liberates sequestered claudin for rapid de novo tight junction formation 94%
- Cell-state transitions and collective cell movement generate an endoderm-like region in gastruloids 94%
Similar papers in this journal
- Modelling variability and heterogeneity of EMT scenarios highlights nuclear positioning and protrusions as main drivers of extrusion 94%
- Occurrence of non-apical mitoses at the primitive streak, induced by relaxation of actomyosin and acceleration of the cell cycle, contributes to cell delamination during mouse gastrulation. 94%
- Filopodia-based contact stimulated collective migration drives tissue morphogenesis 94%
Similar papers in this journal
Similar papers in this journal
- Tumor microtubes connect pancreatic cancer cells in an Arp2/3 complex-dependent manner 95%
- Optogenetic stimulation of Lbc GEF-mediated Rho activity dynamics promotes cell invasion 93%
- Matrix obstructions cause multiscale disruption in collective epithelial migration by suppressing physical function of leader cells 93%
Similar papers in this journal
- Coordination between endoderm progression and gastruloid elongation controls endodermal morphotype choice 94%
- Dynamic remodelling of cadherin contacts in embryonic mesenchymal cells during differential cell migration 93%
- Collective ERK/Akt activity waves orchestrate epithelial homeostasis by driving apoptosis-induced survival 93%
"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.