Local Nonlinear Elastic Response of Extracellular Matrices

ORAL

Abstract

Nonlinear stiffening is a ubiquitous property of major types of biopolymers that make up the extracellular matrices (ECM) including collagen, fibrin, and basement membrane. Within the ECM, many types of cells such as fibroblasts and cancer cells are known to mechanically stretch their surroundings that locally stiffens the matrix. Although the bulk nonlinear elastic behaviors of these biopolymer networks are well studied, their local mechanical responses remain poorly characterized. Here, to understand how a living cell feels the nonlinear mechanical resistance from the ECM, we mimic the cell-applied local force using optical tweezers; we report that the local stiffening responses in highly nonlinear ECM are significantly weaker than responses found in bulk rheology, across two orders of magnitude of the locally applied force since the onset of stiffening. With a minimal model, we show that a local point force application can induce a stiffened region in the matrix, which expands with increasing magnitude of the point force. Furthermore, we show that this stiffened region behaves as an effective probe upon local loading. The local nonlinear elastic response can be attributed to the nonlinear growth of this effective probe that linearly deforms an increasing portion of the matrix.

*We would like to acknowledge the support from the NIH (1R01GM140108), the MathWorks, and the Jeptha H. and Emily V. Wade Award at the Massachusetts Institute of Technology. M.G. acknowledges the Sloan Research Fellowship. E.B. and C.P.B.: This project has received funding from the European Union's Horizon 2020 research and innovation programme under the Marie Sklodowska-Curie grant agreement No 891217 and the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) - Project-ID 201269156 - SFB 1032 (Project B12). P.R. is supported by France 2030, the French National Research Agency (ANR-16-CONV-0001) and the Excellence Initiative of Aix-Marseille University - A*MIDEX.

Publication: Yang, Haiqian, et al. "Local Nonlinear Elastic Response of Extracellular Matrices." arXiv preprint arXiv:2208.06386 (2022).

Presenters

  • Haiqian Yang

    • Massachusetts Institute of Technology MIT

Authors

  • Haiqian Yang

    • Massachusetts Institute of Technology MIT
  • Estelle Berthier

    • Ludwig-Maximilians-Universitaet (LMU-Mun
  • Chenghai Li

    • University of California, San Diego
  • Pierre Ronceray

    • Aix-Marseille University
  • Yulong Han

    • Massachusetts Institute of Technology MIT
  • Chase P Broedersz

    • Vrije Universiteit Amsterdam
    • Ludwig-Maximilians-Universitaet
  • Shengqiang Cai

    • University of California, San Diego
  • Ming Guo

    • Massachusetts Institute of Technology MIT
    • Massachusetts Institute of Technology
    • MIT