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基质硬度调节 MCF-7 细胞的黏弹性。

Substrate stiffness modulates the viscoelastic properties of MCF-7 cells.

机构信息

Institute of Biophysics, Department of Nanobiotechnology, University of Natural Resources and Life Sciences Vienna, Muthgasse 11, 1190, Vienna, Austria.

Cancer Heterogeneity Lab, CIC BioGUNE, Basque Research and Technology Alliance, BRTA, Bizkaia Technology Park, 48160, Derio, Spain.

出版信息

J Mech Behav Biomed Mater. 2022 Jan;125:104979. doi: 10.1016/j.jmbbm.2021.104979. Epub 2021 Nov 18.

Abstract

Cells sense stiffness of surrounding tissues and adapt their activity, proliferation, motility and mechanical properties based on such interactions. Cells probe the stiffness of the substrate by anchoring and pulling to their surroundings, transmitting force to the extracellular matrix and other cells, and respond to the resistance they sense, mainly through changes in their cytoskeleton. Cancer and other diseases alter stiffness of tissues, and the response of cancer cells to this stiffness can also be affected. In the present study we show that MCF-7 breast cancer cells seeded on polyacrylamide gels have the ability to detect the stiffness of the substrate and alter their mechanical properties in response. MCF-7 cells plated on soft substrates display lower stiffness and viscosity when compared to those seeded on stiffer gels or glass. These differences can be associated with differences in the morphology and cytoskeleton organisation, since cells seeded on soft substrates have a round morphology, while cells seeded on stiffer substrates acquire a flat and spread morphology with formation of actin filaments, similar to that observed when seeded on glass. These findings show that MCF-7 cells can detect the stiffness of the surrounding microenvironment and thus, modify their mechanical properties.

摘要

细胞感知周围组织的硬度,并根据这种相互作用来调整其活动、增殖、迁移和力学特性。细胞通过锚定和拉动周围组织来探测基质的硬度,将力传递到细胞外基质和其他细胞,并对它们感知到的阻力做出反应,主要是通过改变细胞骨架。癌症和其他疾病会改变组织的硬度,而癌细胞对这种硬度的反应也可能受到影响。在本研究中,我们表明,种植在聚丙烯酰胺凝胶上的 MCF-7 乳腺癌细胞能够检测到基质的硬度,并做出相应的力学特性改变。与种植在更硬的凝胶或玻璃上的细胞相比,种植在软基质上的 MCF-7 细胞表现出较低的刚性和粘性。这些差异可能与形态和细胞骨架组织的差异有关,因为种植在软基质上的细胞呈圆形形态,而种植在较硬基质上的细胞则呈扁平且展开的形态,并形成肌动蛋白丝,类似于种植在玻璃上时观察到的形态。这些发现表明 MCF-7 细胞能够检测周围微环境的硬度,并因此改变其力学特性。

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