top of page

Publications

Double power-law viscoelastic relaxation of living cells encodes motility trends

J. S. de Sousa, R. S. Freire, F. D. Sousa, M. Radmacher, A. F. B. Silva, M. V. Ramos, A. C. O. Monteiro-Moreira, F. P. Mesquita, M. E. A. Moraes, R. C. Montenegro, and C. L. N. Oliveira

Scientific Reports volume 10, 4749 (2020).

2020

arXiv.org
Acess article

Abstract

Living cells are constantly exchanging momentum with their surroundings. So far, there is no consensus regarding how cells respond to such external stimuli, although it reveals much about their internal structures, motility as well as the emergence of disorders. Here, we report that twelve cell lines, ranging from healthy fbroblasts to cancer cells, hold a ubiquitous double power-law viscoelastic relaxation compatible with the fractional Kelvin-Voigt viscoelastic model. Atomic Force Microscopy measurements in time domain were employed to determine the mechanical parameters, namely, the fast and slow relaxation exponents, the crossover timescale between power law regimes, and the cell stifness. These cell-dependent quantities show strong correlation with their collective migration and invasiveness properties. Beyond that, the crossover timescale sets the fastest timescale for cells to perform their biological functions.

logo.png

Physics | Federal University of Ceará

Department of Physics

Pici Campus - Block 922
60.455-970 Fortaleza (CE) Brazil

Physics Graduate Program

Telephone: +55 (85) 3366 9906
email: posgrad@fisica.ufc.br

Bachelor's degree in Physics

Telephone: +55 (85) 3366 9485

email: coordenacaobacharelado@fisica.ufc.br
 

Licentiate degree in Physics

Telephone: +55 (85) 3366 9485

email: coordenacao-licenciatura@fisica.ufc.br

  © 2020 Condensed Matter Theory Group - Department of Physics of Federal University of Ceará

Useful Links

Brasao4_vertical_cor_300dpi.png
capes-72012-RGB-1024x939.png
cnpq-logo-7.png
funcap.png

For Members

bottom of page