Microrheology reveals simultaneous cell-mediated matrix stiffening and fluidization that underlie breast cancer invasion

微观流变学揭示了乳腺癌侵袭过程中细胞介导的基质硬化和流化同时发生

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作者:Brad A Krajina, Bauer L LeSavage, Julien G Roth, Audrey W Zhu, Pamela C Cai, Andrew J Spakowitz, Sarah C Heilshorn

Abstract

Living tissues embody a unique class of hybrid materials in which active and thermal forces are inextricably linked. Mechanical characterization of tissues demands descriptors that respect this hybrid nature. In this work, we develop a microrheology-based force spectrum analysis (FSA) technique to dissect the active and passive fluctuations of the extracellular matrix (ECM) in three-dimensional (3D) cell culture models. In two different stromal models and a 3D breast cancer spheroid model, our FSA reveals emergent hybrid dynamics that involve both high-frequency stress stiffening and low-frequency fluidization of the ECM. We show that this is a general consequence of nonlinear coupling between active forces and the frequency-dependent viscoelasticity of stress-stiffening networks. In 3D breast cancer spheroids, this dual active stiffening and fluidization is tightly connected with invasion. Our results suggest a mechanism whereby breast cancer cells reconcile the seemingly contradictory requirements for both tension and malleability in the ECM during invasion.

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