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Hydrodynamics and multiscale order in confluent epithelia
被引:5
作者:
Armengol-Collado, Josep-Maria
[1
]
Carenza, Livio Nicola
[1
]
Giomi, Luca
[1
]
机构:
[1] Leiden Univ, Inst Lorentz, Leiden, Netherlands
来源:
基金:
欧洲研究理事会;
关键词:
epithelia;
liquid crystals;
multiscaling;
hexatic;
nematic;
None;
REARRANGING DISORDERED PATTERNS;
TILTED HEXATIC PHASES;
CELL;
DYNAMICS;
TRANSITION;
MODEL;
FLOW;
D O I:
10.7554/eLife.86400
中图分类号:
Q [生物科学];
学科分类号:
07 ;
0710 ;
09 ;
摘要:
We formulate a hydrodynamic theory of confluent epithelia: i.e. monolayers of epithelial cells adhering to each other without gaps. Taking advantage of recent progresses toward establishing a general hydrodynamic theory of p-atic liquid crystals, we demonstrate that collectively migrating epithelia feature both nematic (i.e. p = 2) and hexatic (i.e. p = 6) orders, with the former being dominant at large and the latter at small length scales. Such a remarkable multiscale liquid crystal order leaves a distinct signature in the system's structure factor, which exhibits two different power-law scaling regimes, reflecting both the hexagonal geometry of small cells clusters and the uniaxial structure of the global cellular flow. We support these analytical predictions with two different cell-resolved models of epithelia - i.e. the self-propelled Voronoi model and the multiphase field model - and highlight how momentum dissipation and noise influence the range of fluctuations at small length scales, thereby affecting the degree of cooperativity between cells. Our construction provides a theoretical framework to conceptualize the recent observation of multiscale order in layers of Madin-Darby canine kidney cells and pave the way for further theoretical developments.
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页数:24
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