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单细胞球体的机械性能。

The mechanical properties of individual cell spheroids.

机构信息

Department of Chemistry, Maynooth University, Maynooth, Co. Kildare, Ireland.

出版信息

Sci Rep. 2017 Aug 4;7(1):7346. doi: 10.1038/s41598-017-07813-5.

Abstract

The overall physical properties of tissues emerge in a complex manner from the properties of the component cells and other constituent materials from which the tissue is formed, across multiple length scales ranging from nanometres to millimetres. Recent studies have suggested that interfacial tension between cells contributes significantly to the mechanical properties of tissues and that the overall surface tension is determined by the ratio of adhesion tension to cortical tension. Using cavitation rheology (CR), we have measured the interfacial properties and the elastic modulus of spheroids formed from HEK cells. By comparing the work of bubble formation with deformation of the cell spheroid at different length scales, we have estimated the cortical tension for HEK cells. This innovative approach to understanding the fundamental physical properties associated with tissue mechanics may guide new approaches for the generation of materials to replace or regenerate damaged or diseased tissues.

摘要

组织的整体物理特性以复杂的方式从组成细胞的特性以及组织形成的其他组成材料的特性中涌现出来,跨越从纳米到毫米的多个长度尺度。最近的研究表明,细胞之间的界面张力对组织的力学性质有重要贡献,并且总表面张力由粘附张力与皮质张力的比值决定。我们使用空穴流变法(CR)测量了由 HEK 细胞形成的球体的界面特性和弹性模量。通过比较不同长度尺度下气泡形成与细胞球体变形的功,我们估计了 HEK 细胞的皮质张力。这种理解与组织力学相关的基本物理性质的创新方法可能为生成替代或再生受损或患病组织的材料提供新的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/973f/5544704/ce3a4f3f05c1/41598_2017_7813_Fig1_HTML.jpg

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