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共聚焦显微镜检查与原子力压痕技术的关联研究表明,转移性癌细胞在侵入I型胶原基质过程中会变硬。

Correlating confocal microscopy and atomic force indentation reveals metastatic cancer cells stiffen during invasion into collagen I matrices.

作者信息

Staunton Jack R, Doss Bryant L, Lindsay Stuart, Ros Robert

机构信息

Department of Physics, Arizona State University, Tempe, AZ 85287.

Center for Biological Physics, Arizona State University, Tempe, AZ 85287.

出版信息

Sci Rep. 2016 Jan 27;6:19686. doi: 10.1038/srep19686.

Abstract

Mechanical interactions between cells and their microenvironment dictate cell phenotype and behavior, calling for cell mechanics measurements in three-dimensional (3D) extracellular matrices (ECM). Here we describe a novel technique for quantitative mechanical characterization of soft, heterogeneous samples in 3D. The technique is based on the integration of atomic force microscopy (AFM) based deep indentation, confocal fluorescence microscopy, finite element (FE) simulations and analytical modeling. With this method, the force response of a cell embedded in 3D ECM can be decoupled from that of its surroundings, enabling quantitative determination of the elastic properties of both the cell and the matrix. We applied the technique to the quantification of the elastic properties of metastatic breast adenocarcinoma cells invading into collagen hydrogels. We found that actively invading and fully embedded cells are significantly stiffer than cells remaining on top of the collagen, a clear example of phenotypical change in response to the 3D environment. Treatment with Rho-associated protein kinase (ROCK) inhibitor significantly reduces this stiffening, indicating that actomyosin contractility plays a major role in the initial steps of metastatic invasion.

摘要

细胞与其微环境之间的机械相互作用决定了细胞的表型和行为,这就需要在三维(3D)细胞外基质(ECM)中进行细胞力学测量。在此,我们描述了一种用于对3D中柔软、异质样本进行定量力学表征的新技术。该技术基于基于原子力显微镜(AFM)的深度压痕、共聚焦荧光显微镜、有限元(FE)模拟和分析建模的整合。通过这种方法,嵌入3D ECM中的细胞的力响应可以与其周围环境的力响应解耦,从而能够定量测定细胞和基质的弹性特性。我们将该技术应用于对侵袭胶原水凝胶的转移性乳腺腺癌细胞的弹性特性进行量化。我们发现,积极侵袭和完全嵌入的细胞比留在胶原顶部的细胞明显更硬,这是对3D环境响应的表型变化的一个明显例子。用Rho相关蛋白激酶(ROCK)抑制剂处理可显著降低这种硬化,表明肌动球蛋白收缩性在转移侵袭的初始步骤中起主要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3bf/4728602/f7b3620a1079/srep19686-f1.jpg

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