Yu Zhuonan, Liu Kuo-Kang
School of Engineering, University of Warwick, Coventry CV4 7AL, UK.
Polymers (Basel). 2021 Aug 10;13(16):2672. doi: 10.3390/polym13162672.
Soft polymers have emerged as a vital type of material adopted in biomedical engineering to perform various biomechanical characterisations such as sensing cellular forces. Distinct advantages of these materials used in cellular force sensing include maintaining normal functions of cells, resembling in vivo mechanical characteristics, and adapting to the customised functionality demanded in individual applications. A wide range of techniques has been developed with various designs and fabrication processes for the desired soft polymeric structures, as well as measurement methodologies in sensing cellular forces. This review highlights the merits and demerits of these soft polymer-based techniques for measuring cellular contraction force with emphasis on their quantitativeness and cell-friendliness. Moreover, how the viscoelastic properties of soft polymers influence the force measurement is addressed. More importantly, the future trends and advancements of soft polymer-based techniques, such as new designs and fabrication processes for cellular force sensing, are also addressed in this review.
软聚合物已成为生物医学工程中采用的一种重要材料类型,用于执行各种生物力学表征,如感知细胞力。这些用于细胞力传感的材料的显著优点包括维持细胞的正常功能、类似于体内机械特性以及适应个别应用中所需的定制功能。针对所需的软聚合物结构,已经开发了一系列具有各种设计和制造工艺的技术,以及用于传感细胞力的测量方法。本综述重点介绍了这些基于软聚合物的测量细胞收缩力技术的优缺点,强调了它们的定量性和细胞友好性。此外,还讨论了软聚合物的粘弹性特性如何影响力的测量。更重要的是,本综述还探讨了基于软聚合物的技术的未来趋势和进展,如用于细胞力传感的新设计和制造工艺。