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Cellulära styvhetsmönster i nanoskala styrda av intracellulära krafter

Nicola Mandriota, Claudia Friedsam, John A Jones-Molina, Kathleen V Tatem, Donald E Ingber, Ozgur Sahin
Nyckelinsikter
  1. 01Utvecklade en högupplöst avbildningsplattform för cellmekanik
  2. 02Fann att stelhetsmönster i nanoskala styrs av intracellulära krafter
  3. 03Skapade en modell för att beräkna inre krafter från stelhetsbilder
  4. 04Ökar förståelsen för mekanisk interaktion mellan celler och deras miljö

En ny avbildningsteknik låter forskare beräkna inre cellkrafter genom att observera cellens stelhetsmönster i nanoskala.

Abstract

Cell stiffness measurements have led to insights into various physiological and pathological processes 1,2. Although many cellular behaviours are influenced by intracellular mechanical forces 3– 6 that also alter the material properties of the cell, the precise mechanistic relationship between intracellular forces and cell stiffness remains unclear. Here we develop a cell mechanical imaging platform with high spatial resolution that reveals the existence of nanoscale stiffness patterns governed by intracellular forces. On the basis of these findings, we develop and validate a cellular mechanical model that quantitatively relates cell stiffness to intracellular forces. This allows us to determine the magnitude of tension within actin bundles, cell cortex and plasma membrane from the cell stiffness patterns across individual cells. These results expand our knowledge on the mechanical interaction between cells and their environments, and offer an alternative approach to determine physiologically relevant intracellular forces from high-resolution cell stiffness images.

Citera denna studie
APA
Nicola Mandriota, Claudia Friedsam, John A Jones-Molina, Kathleen V Tatem, Donald E Ingber, & Ozgur Sahin (2019). Cellulära styvhetsmönster i nanoskala styrda av intracellulära krafter. https://fasciaresearchdatabase.com/cellular-nanoscale-stiffness-patterns-governed-by-intracellular-forces/
MLA
Nicola Mandriota, et al. "Cellulära styvhetsmönster i nanoskala styrda av intracellulära krafter." 2019, https://fasciaresearchdatabase.com/cellular-nanoscale-stiffness-patterns-governed-by-intracellular-forces/.
Chicago
Nicola Mandriota et al. 2019. "Cellulära styvhetsmönster i nanoskala styrda av intracellulära krafter.". https://fasciaresearchdatabase.com/cellular-nanoscale-stiffness-patterns-governed-by-intracellular-forces/