Ovarian cancer cells exhibit diverse migration strategies on stiff collagenous substrata
S, M.; Bhat, R.
Show abstract
In homoeostasis, the shape of epithelial cells and their sessility, i.e. lack of movement are intricately linked together. Alterations in this relationship as a result of malignant transformation and variations, thereof by the mechanical microenvironments that cancer cells encounter as they migrate are as yet ill-understood. Here we explore the interdependency of such traits in two morphologically distinct but invasive ovarian cancer cell lines (OVCAR-3 and SK-OV-3) under mechanically variant contexts. To do so, we came up with a minimal metric toolkit consisting of velocity, local and global turning angles, persistence of migration, major axis dynamics, morphomigrational angle, and elongation dynamics, and rigorously measured their variation using a Shannon entropic distribution to map heterogeneity in behavior between, and across, trajectories of migration. Two stiffness conditions on polymerized Collagen I with Youngs moduli of 0.5 (soft) and 20 (stiff) kPa were chosen. Both the epithelioid OVCAR-3 and mesenchymal SK-OV-3 cells on soft substrata migrated slowly and in an undirected manner. On stiff substrata, SK-OV-3 showed a persistent directed motion with higher velocity. Surprisingly, OVCAR-3 cells on higher stiffness moved at a velocity higher than SK-OV-3 cells and showed a distinct angular motion. The polarity of SK-OV-3 cells on stiff substrata was well-correlated with their movement, whereas for OVCAR-3, we observed an unusual slip behavior, where the axes of cell shape and movement were poorly correlated. An examination of their deformability showed that OVCAR-3 and SKOV-3 on softer substrata were relatively rigid but showed greater shape variation (especially OVCAR-3) on stiffer substrata. Therefore, a rigorous quantification using the above metric toolkit reveals how an interplay between intrinsic deformability and the mechanical microenvironment on pathotypic matrix substrata allow distinct migratory dynamics of epithelioid and mesenchymal ovarian cancer cells.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Towards a More Objective and High-throughput Spheroid Invasion Assay Quantification Method 97%
- Unique Cancer Motility Behaviors in Confined Spaces of Microgroove Topography with Acute Wall Angles 95%
- Drug resistant pancreatic cancer cells exhibit altered biophysical interactions with stromal fibroblasts in imaging studies of 3D co-culture models 95%
Similar papers in this journal
- Quasi-periodic migration of single cells on short microlanes 94%
- Topological defects govern mesenchymal condensations, offering a morphology-based tool to predict cartilage differentiation 94%
- Human endothelial cells display a rapid and fluid flow dependent tensional stress increase in response to tumor necrosis factor-α 93%
Similar papers in this journal
- Optimization of H9c2 differentiation leads to calcium-active and striated cardiac cells without addition of retinoic acid. 93%
- Involvement of mechanical cues in the migration of Cajal-Retzius cells in the marginal zone during neocortical development 93%
- Nanotopographic Control of Actin Waves and Growth Cone Navigation in Developing Neurons 93%
Similar papers in this journal
- Formins and Arp2/3 Reciprocally Regulate Contact Guidance on Aligned Collagen Fibrils 96%
- Empowering High Throughput Screening of 3D Models: Automated Dispensing of Cervical and Endometrial Cancer Cells 94%
- Multicompartmentalized microvascularized tumor-on-a-chip to study tumor-stroma interactions and drug resistance in ovarian cancer 93%
Similar papers in this journal
"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.