Collective Alignment of Cells in Planar Cell Polarity: Insights from a Spin Model
Talagadadeevi Nirupamateja (1), Siva Sai Himakar Sreerangam (1, 2),, Biplab Bose (1) ((1) Department of Biosciences, Bioengineering, Indian, Institute of Technology Guwahati, Guwahati, India 781039, (2) American, Express, Gurugram, India)

TL;DR
This paper models how cells in tissues align their polarity collectively through local interactions and global cues, revealing a percolation transition and conditions for robust tissue polarization.
Contribution
It introduces a lattice-based equilibrium spin model to analyze collective cell alignment, highlighting the threshold of local interactions needed for global polarization.
Findings
System undergoes a percolation transition in alignment behavior.
Weak global cues can effectively align cells if local interactions exceed a threshold.
Strong local interactions confer robustness against local signaling aberrations.
Abstract
In metazoans, cells collectively polarize and align along the tissue plane. This phenomenon is called Planar cell polarity (PCP). Polarization means asymmetric segregation of molecules and sub-cellular structures within a cell. In PCP, cells collectively align in a particular direction along the tissue plane through identical polarization. PCP in the Drosophila wing requires local cell-cell interactions in the presence of some global cue. We used a lattice-based equilibrium model and investigated the collective alignment of cells through local interactions and a global cue. This system undergoes a percolation transition and belongs to the universality class of 2D random percolation. We show that the local interaction should be beyond a threshold to trigger system-level coordinated polarization of cells. Under this condition, even a weak global cue can align all cells in the correct…
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Taxonomy
TopicsDiffusion and Search Dynamics · Mathematical Biology Tumor Growth · stochastic dynamics and bifurcation
