Single-cell biophysical study reveals deformability and internal ordering relationship in T cells

Gonzalez-Bermudez, Blanca; Kobayashi, Hikaru; Navarrete, Alvaro; Nyblad, Cesar; Gonzalez-Sanchez, Monica; de la Fuente, Monica; Fuentes, Gonzalo; Guinea, Gustavo V.; Garcia, Claudio; Plaza, Gustavo R.

Abstract

Deformability and internal ordering are key features related to cell function, particularly critical for cells that routinely undergo large deformations, like T cells during extravasation and migration. In the measurement of cell deformability, a considerable variability is typically obtained, masking the identification of possible interrelationships between deformability, internal ordering and cell function. We report the development of a single-cell methodology that combines measurements of living-cell deformability, using micropipette aspiration, and three-dimensional confocal analysis of the nucleus and cytoskeleton. We show that this single-cell approach can serve as a powerful tool to identify appropriate parameters that characterize deformability within a population of cells, not readably discernable in population-averaged data. By applying this single-cell methodology to mouse CD4(+)T cells, our results demonstrate that the relative size of the nucleus, better than other geometrical or cytoskeletal features, effectively determines the overall deformability of the cells within the population.

Más información

Título según WOS: Single-cell biophysical study reveals deformability and internal ordering relationship in T cells
Título de la Revista: SOFT MATTER
Volumen: 16
Número: 24
Editorial: ROYAL SOC CHEMISTRY
Fecha de publicación: 2020
Página de inicio: 5669
Página final: 5678
DOI:

10.1039/d0sm00648c

Notas: ISI