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Updated: Jan 24, 2026

Traction Force Microscopy to Study B Lymphocyte Activation
Published on: July 23, 2020
Quantifying cellular forces and biomechanical properties by correlative micropillar traction force and Brillouin
Stefano Coppola1,2, Thomas Schmidt1, Giancarlo Ruocco3
1Physics of Life Processes - Kamerlingh Onnes-Huygens Laboratory, Leiden Institute of Physics, Leiden University, Leiden, The Netherlands.
Abstract:
Cells sense and respond to external physical forces and substrate rigidity by regulating their cell shape, internal cytoskeletal tension, and stiffness. Here we show that the combination of micropillar traction force and noncontact Brillouin microscopy provides access to cell-generated forces and intracellular mechanical properties at optical resolution. Actin-rich cytoplasmic domains of 3T3 fibroblasts showed significantly higher Brillouin shifts, indicating a potential increase in stiffness when adhering on fibronectin-coated glass compared to soft PDMS micropillars. Our findings demonstrate the complementarity of micropillar traction force and Brillouin microscopy to better understand the relation between cell force generation and the intracellular mechanical properties.
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