Hameed Pearlin, Manivasagam Geetha
Centre for Biomaterials Cellular and Molecular Theranostics, Vellore Institute of Technology, Vellore, 632014 India.
Biophys Rev. 2021 May 20;13(3):387-403. doi: 10.1007/s12551-021-00804-x. eCollection 2021 Jun.
Due to their congruity with the native extracellular matrix and their ability to assist in soft tissue repair, hydrogels have been touted as a matrix mimicking biomaterial. Hydrogels are one of the prevalent scaffolds used for 3D cell culture. They can exhibit actuation in response to various stimuli like a magnetic field, electric field, mechanical force, temperature, or pH. In 3D cell culture, the traction exerted by cells on hydrogel can induce non-periodic mechanobiological movements (shrinking or folding) called 'bio-actuation'. Interestingly, this hydrogel 'tropism' phenomenon in 3D cell cultures can be exploited to devise hydrogel-cell-based actuators for tissue engineering. This review briefs about the discrepancies in 2D vs. 3D cell culturing on hydrogels and discusses on different types of cell migration occurring inside the hydrogel matrix. It substantiates the role of mechanical stimuli (such as stiffness) exhibited by the collagen-based hydrogel used for 3D cell culture and its influence in governing the lineage commitment of stem cells. Lastly, the review also audits the cytoskeleton proteins present in cells responsible for influencing the actuation of collagen hydrogel and also elaborates on the cellular signaling pathways responsible for actuation of collagen hydrogels.
由于水凝胶与天然细胞外基质的一致性及其协助软组织修复的能力,它们被吹捧为一种模拟生物材料的基质。水凝胶是用于三维细胞培养的常见支架之一。它们可以响应各种刺激(如磁场、电场、机械力、温度或pH值)而产生驱动作用。在三维细胞培养中,细胞对水凝胶施加的牵引力可诱导称为“生物驱动”的非周期性机械生物学运动(收缩或折叠)。有趣的是,三维细胞培养中的这种水凝胶“嗜性”现象可被利用来设计用于组织工程的基于水凝胶-细胞的致动器。这篇综述简要介绍了在水凝胶上进行二维与三维细胞培养的差异,并讨论了水凝胶基质内发生的不同类型的细胞迁移。它证实了用于三维细胞培养的基于胶原蛋白的水凝胶所表现出的机械刺激(如硬度)的作用及其在控制干细胞谱系定向中的影响。最后,该综述还审查了负责影响胶原蛋白水凝胶驱动的细胞中存在的细胞骨架蛋白,并详细阐述了负责胶原蛋白水凝胶驱动的细胞信号通路。