Division of Materials Science, Nara Institute of Science and Technology, Nara 630-0192, Japan; School of Engineering, Macquarie University, Sydney 2122, Australia.
School of Engineering, Macquarie University, Sydney 2122, Australia.
Biotechnol Adv. 2020 Dec;45:107648. doi: 10.1016/j.biotechadv.2020.107648. Epub 2020 Oct 17.
Cell mechanical properties, e.g. elastic and shear modulus, play vital roles in cell activities and functions, such as cell growth, cell division, cell motion, and cell adhesion. Measurement of single-cell mechanical properties has attracted great interest from both academia and industry, due to its importance in a variety of applications, such as cell separation, disease diagnostics, immune status analysis and drug screening. Therefore, accurate, robust and sensitive methods for measuring the mechanical properties of single cells are highly desired. In this review, we classify ten most commonly used methods for measuring single-cell mechanical properties into three main categories based on measurement locations, (1) cell surface (2) cell interior and (3) whole cell, and discuss their utilizations with examples. In addition, we discuss directions for future research, such as improving throughput, automating the probing of cell mechanical properties and integrating different methods to achieve simultaneous measurements of mechanical properties of both cell surface and interior. The above are all necessary to overcome the limitations of current technologies in the mechanical characterization of single cells.
细胞的力学特性,例如弹性和剪切模量,在细胞活动和功能中起着至关重要的作用,例如细胞生长、细胞分裂、细胞运动和细胞黏附。由于其在多种应用中的重要性,例如细胞分离、疾病诊断、免疫状态分析和药物筛选,单细胞力学特性的测量引起了学术界和工业界的极大兴趣。因此,需要能够准确、稳健和灵敏地测量单细胞力学特性的方法。在这篇综述中,我们根据测量位置将十种最常用的单细胞力学特性测量方法分为三类:(1)细胞表面,(2)细胞内部和(3)整个细胞,并通过实例讨论它们的应用。此外,我们还讨论了未来的研究方向,例如提高吞吐量、自动探测细胞力学特性以及整合不同方法以实现细胞表面和内部力学特性的同时测量。所有这些都是克服当前单细胞力学特性表征技术的局限性所必需的。